张强强 教授/博导
个人简介
职 称:教授(三级)、博士生导师
职 务:兰州大学科学技术发展研究院副院长、土木工程与力学学院土木工程系主任
所在系所:土木工程系、结构工程研究所
通讯地址:甘肃省兰州市天水南路222号兰州大学土木工程与力学学院,730000
联系电话:+86-13659417036
职 务:兰州大学科学技术发展研究院副院长、土木工程与力学学院土木工程系主任
所在系所:土木工程系、结构工程研究所
通讯地址:甘肃省兰州市天水南路222号兰州大学土木工程与力学学院,730000
联系电话:+86-13659417036
主要学历
2006.08-2010.07: 哈尔滨工业大学土木工程 工学学士
2010.08-2012.07: 哈尔滨工业大学结构工程 工学硕士
2012.08-2016.04: 哈尔滨工业大学工程力学 工学博士
2014.09-2015.12:美国普渡大学材料科学 CSC联合培养博士
2010.08-2012.07: 哈尔滨工业大学结构工程 工学硕士
2012.08-2016.04: 哈尔滨工业大学工程力学 工学博士
2014.09-2015.12:美国普渡大学材料科学 CSC联合培养博士
主要学术经历
2023.03-现在:兰州大学科学技术发展研究院,副院长
2021.03-2023.03:国家自然科学基金委员会,流动编制项目主任
2021.01-现在:兰州大学“萃英学者”特聘教授(三级)
2018.07-现在:兰州大学土木工程与力学学院,教授(三级),系主任,党支部书记
2016.07-2018.06:兰州大学土木工程与力学学院,副教授
2021.03-2023.03:国家自然科学基金委员会,流动编制项目主任
2021.01-现在:兰州大学“萃英学者”特聘教授(三级)
2018.07-现在:兰州大学土木工程与力学学院,教授(三级),系主任,党支部书记
2016.07-2018.06:兰州大学土木工程与力学学院,副教授
主要研究方向
1. 结构-功能一体化超材料
2. 多功能复合材料3D打印智造
3. 工程材料极端工况损伤智能识别与测量
3. 仿生功能多尺度材料强韧化与机器学习智能设计
2. 多功能复合材料3D打印智造
3. 工程材料极端工况损伤智能识别与测量
3. 仿生功能多尺度材料强韧化与机器学习智能设计
主要讲述课程
《工程材料》、《材料科学前沿》、《大型软件应用》、《智能制造》等
招收专业
招收力学、材料科学、结构工程、机械工程、计算机科学等专业背景硕士研究生、博士研究生以及博士后。
主要学术成就、奖励及荣誉
2024年,入选第五届甘肃省拔尖领军人才,中共甘肃省委组织部
2023年,入选甘肃省领军人才(第二层次),中共甘肃省委组织部
2022年,入选第七届“国家高层次人才特殊支持计划”青年拔尖人才,中共中央组织部
2022年,入选第四批甘肃省“飞天学者”特聘计划青年学者,甘肃省
2019年,获教育部霍英东教育基金会第十七届高等院校青年教师基金,教育部
2018年,获甘肃杰出青年科学基金,甘肃省科技厅
2023年,入选甘肃省领军人才(第二层次),中共甘肃省委组织部
2022年,入选第七届“国家高层次人才特殊支持计划”青年拔尖人才,中共中央组织部
2022年,入选第四批甘肃省“飞天学者”特聘计划青年学者,甘肃省
2019年,获教育部霍英东教育基金会第十七届高等院校青年教师基金,教育部
2018年,获甘肃杰出青年科学基金,甘肃省科技厅
2025年,高性能防护材料创制与多功能导向强化,甘肃省自然科学一等奖,排名1/5,甘肃省人民政府,2025年4月30日,编号:2024-Z1-003-R1
2025年,入选全球前2%顶尖科学家榜单(World's Top 2% Scientists 2025),美国斯坦福大学&爱思唯尔出版社联合发布,材料科学领域
2025年,入选Outstanding Contribution Award,11th Edition of Metallurgical Engineering Awards,2025年12月19日,编号:2627
2024年,高性能陶瓷减摩耐磨复合材料技术与应用,甘肃省技术发明一等奖,排名6/6,甘肃省人民政府,2024年9月15日,编号:2023-F1-001-R6
2024年,入选全国科技大会代表(甘肃省唯一青年科学家代表),科学技术部,编号:0382
2024年,第十一届甘肃青年科技奖,中共甘肃省委组织部等,排名1/1,2024年1月
2023年,大跨度桥梁拉吊索复杂风振理论与控制关键技术及示范应用,中国产学研合作创新成果奖二等奖,排名9/10,中国产学研合作促进会,2023年2月,编号:20226074
2022年,三维石墨烯气凝胶导向构筑与功能化应用,甘肃省材料科学技术一等奖,排名1/9,甘肃省材料学会,2022年,编号:2021-K1-001-R1
2022年,桥梁拉、吊索风雨激振与多模态涡激振动理论及控制关键技术,中国公路学会科学技术奖一等奖,排名6/13,2022年1月24日,编号:B21-1-027-006
2021年,纳米水泥基材料高性能与多功能调控机理,黑龙江省自然科学一等奖,排名3/5,黑龙江省人民政府,2021年12月,编号:2021-Z-010-1-R03
2019年,新型结构-功能一体化气凝胶防护材料项目,甘肃省金控杯“创客中国”甘肃省中小企业创新创业大赛-企业组一等奖,排名1/2,甘肃省工信厅&财政厅,2019年8月
2019年,新型石墨烯气凝胶3D打印结构化制备与隔热应用研究,JKW第二届“源创杯”创新创意大赛-西部赛区复赛优胜奖,中央军委科学技术委员会科技创新局,2019年4月
2018年,三维石墨烯基多功能材料可控制备与性能研究,第20届哈尔滨工业大学优秀博士学位论文,排名1/1,哈尔滨工业大学,2018年7月11日
2016年,The least dense 3D-printed structure is an aerogel made of graphene (a density of 0.5mg/cm3),The Certificate of Guinness World Records,排名3/3,Guinness World Records Committee,2016年2月
2025年,入选全球前2%顶尖科学家榜单(World's Top 2% Scientists 2025),美国斯坦福大学&爱思唯尔出版社联合发布,材料科学领域
2025年,入选Outstanding Contribution Award,11th Edition of Metallurgical Engineering Awards,2025年12月19日,编号:2627
2024年,高性能陶瓷减摩耐磨复合材料技术与应用,甘肃省技术发明一等奖,排名6/6,甘肃省人民政府,2024年9月15日,编号:2023-F1-001-R6
2024年,入选全国科技大会代表(甘肃省唯一青年科学家代表),科学技术部,编号:0382
2024年,第十一届甘肃青年科技奖,中共甘肃省委组织部等,排名1/1,2024年1月
2023年,大跨度桥梁拉吊索复杂风振理论与控制关键技术及示范应用,中国产学研合作创新成果奖二等奖,排名9/10,中国产学研合作促进会,2023年2月,编号:20226074
2022年,三维石墨烯气凝胶导向构筑与功能化应用,甘肃省材料科学技术一等奖,排名1/9,甘肃省材料学会,2022年,编号:2021-K1-001-R1
2022年,桥梁拉、吊索风雨激振与多模态涡激振动理论及控制关键技术,中国公路学会科学技术奖一等奖,排名6/13,2022年1月24日,编号:B21-1-027-006
2021年,纳米水泥基材料高性能与多功能调控机理,黑龙江省自然科学一等奖,排名3/5,黑龙江省人民政府,2021年12月,编号:2021-Z-010-1-R03
2019年,新型结构-功能一体化气凝胶防护材料项目,甘肃省金控杯“创客中国”甘肃省中小企业创新创业大赛-企业组一等奖,排名1/2,甘肃省工信厅&财政厅,2019年8月
2019年,新型石墨烯气凝胶3D打印结构化制备与隔热应用研究,JKW第二届“源创杯”创新创意大赛-西部赛区复赛优胜奖,中央军委科学技术委员会科技创新局,2019年4月
2018年,三维石墨烯基多功能材料可控制备与性能研究,第20届哈尔滨工业大学优秀博士学位论文,排名1/1,哈尔滨工业大学,2018年7月11日
2016年,The least dense 3D-printed structure is an aerogel made of graphene (a density of 0.5mg/cm3),The Certificate of Guinness World Records,排名3/3,Guinness World Records Committee,2016年2月
主要科研项目及角色
主持或参与国家重点研发计划项目、中国科学院B类先导计划、国家自然科学基金(面上、青年)、教育部霍英东教育基金会基金、JW“十四五”装备预先研究项目、甘肃省杰出青年科学基金、中国工程院“中国3D打印材料及应用发展战略研究”咨询项目等20余项。
代表性论著
2026年:
[1] Zhanxiong Ma*, Boran Wang, Xin Jin, Wenlong Guo, Qiangqiang Zhang*. Computer vision-based cross-scale structural displacement estimation using amplitude-phase fusion. Mechanical Systems and Signal Processing, 244(2026): 113738.
[2] Zhanxiong Ma*, Lu Hai, Tongyong Zhang, Boran Wang, Xin Jin, Qiangqiang Zhang*, Hoon Sohn. Accurate structural displacement measurement via enhanced millimeter-wave radar interferometry using multi-chirp-based adaptive phase unwrapping. Measurement, 262(2026): 120029.
[3] Baoping Zhang, Ziyuan Li, Zhidong Zhang, Ying Gao, Yue Xing, Baoquan Fan, Yanjiao Tang, Shushu Xu, Chunfeng Tong, Jingxiang Zhang*, Zhige Li*, Qiangqiang Zhang*, Extracellular matrix-mimetic enhanced porous bioscaffolds for accelerating bone defect repair. Materials & Design, 261(2026): 115301.
[4] 金龙,陈良铭,张强强,李惠. 工程系统人工智能鲁棒性:前沿与展望, 中国科学基金, (2026).
[5] Zhanxiong Ma*, Tongtong Zhang, Yang Zhu, Shuhan Lin, Jigu Lee, Hoon Sohn, Qiangqiang Zhang*. Acceleration-Aided Kalman Filtering for Joint Phase Denoising and Unwrapping in FMCW Radar-based Displacement Monitoring, Mechanical Systems and Signal Processing, (2026).
[6] Zhanxiong Ma*, Tongtong Zhang, Shuhan Lin,Tao Zhang, Peipei Liu, Qiangqiang Zhang*, Hui Li. Simultaneous displacement and rotation estimation for flexible structures through millimeter-wave radar and inertial sensor fusion, Mechanical Systems and Signal Processing, (2026).
[7] Qianqian Zhang#, Lin Qiu#, Ningqi Shao#, Peng He, Junhong Liu, Jiaqi Dong, Xin Wang, Hengzhong Fan*, Yongsheng Zhang, Qiangqiang Zhang*.Biomimetic Hollow Graphene Aerogel Fibers for Thermal Management and Flexible Smart Textiles, Advanced Functional Materials, (2026).
2025年:
[8] Jiaqi Dong, Peng He, Yuansheng Wen, Ying Deng, Yusheng Liang, Hengzhong Fan, Yongsheng Zhang, Qiangqiang Zhang*. Additive-free oil-bath-printing dual-hyperbolic graphene aerogel for smart wearable sensors. Cell Reports Physical Science, 6(2025): 102955.
[9] Ying Gao, Qi Xu, Chen Cao, Huiyang Bian, Danning Wang, Yuanjie Gu, Junhong Liu, Jingxiang Zhang*, Qiangqiang Zhang*, Jizeng Wang*. Gradient oxidation enhanced wood harvester for hydrovoltaic energy. Advanced Functional Materials, (2025): e21733.
[10] Long Gao, Baoquan Xiao, Yanyan Lin, Xidong Fang, Shun He, Mingzhen Bai, Lingen Zhang, Yanni Ma, Ningning Mi, Wenkang Fu, Chongfei Huang, Liang Tian, Jinyu Zhao, Ruyang Zhong, Zhen Liu, Yanxian Ren, Chao Zhang, Ruoshui Wang, Chenjun Tian, Hui Sun, Emmanuel Melloul, Qiangqiang Zhang, Jinqiu Yuan, Ping Yue, Liyun Ding*, Wenbo Meng*. Real-time diagnosis of cholangiocarcinoma by combining digestive endoscopy and optic fiber biosensors based on bile clusterin, Med, (2025):100843.
[11] Xin Jing, Zhanxiong Ma, Tao Zhang, Yu Wang, Ruixian Huang, Yang Xu*, Qiangqiang Zhang*. Geometrically consistent energy-derivative attention CNN for semantic segmentation of multicategory structural damage, Automation in Construction, 176(2025): 106300.
[12] Jian Yuan, Junhong Liu, Jiaqi Zhao, Kunkun Song*, Qiangqiang Zhang*. Coaxially printing of biomimetic self-healing and transparent silicate-epoxy composites, Case Studies in Construction Materials, 22(2025): e04559.
[13] Yongfeng Wei*, Hui Dou, Jiangtao Gao, Qiangqiang Zhang*, Tingting He, Bin Mu, Aiqin Wang*. An exploration of oil shale semi-coke recycling utilization: High temperature activation mechanism and cementitious material precursor preparation, Journal of Building Engineering, 104(2025): 112288.
[14] Kunkun Song, Junhong Liu, Jiaqi Dong, Yusheng Liang, Tao Du, Hengzhong Fan, Qiangqiang Zhang*. Tailorable Nanoconfinement Enables Nacreous Biomimetic Graphene/Silicate Composites with Ultrahigh Strength and Toughness, Carbon, 240(2025): 120364.
[15] Peng He, Junhong Liu, Yuansheng Wen, Ningqi Shao, Qiangqiang Zhang*. Highly Robust 3D rGO Aerogel with Tunable Thermoelectric Effect for Multifunctional Sensing Applications, ACS Applied Materials & Interfaces, 17(2025): 16.
[16] Xiaoke Jiang, Tao Du, Hengzhong Fan*, Junhong Liu, Yunfeng Su, Peng He, Hongxaing Chen, Litian Hu, Yongsheng Zhang*, Qiangqiang Zhang*. Superelastic High-Entropy Oxide Ceramic Aerogels for Thermal Superinsulation and Sealing at Extreme Conditions, Advanced science, (2025): e16840.
[17] Long Jin, Kangying Gu, Peirong Li, Qiangqiang Zhang*, and Wei Chen*. Manipulability Optimization for Multi-manipulator Systems by Coevolutionary Neural Dynamics, IEEE Transactions on Industrial Electronics, (2025).
[18] Yunfeng Su, Shuna Chen, Hengzhong Fan, Junjie Song, Changning Bai, Qiangqiang Zhang, Ming Hu, Yongsheng Zhang, Litian Hu, Weimin Liu. Tough and damage-tolerant composite ceramics enabled by bioinspired multiple architectures, Materials Today, 90(2025): 169-178.
[19] Xin Jing, Yu Wang, Yixuan Huan, Kaiyu Guo, Jiaqi Dong, Zhanxiong Ma, Yang Xu, Qiangqiang Zhang*. Energy-derivative attention enhanced deep learning for multi-phase segmentation of mesoscale heterogeneous material using X-ray computed tomography images, Engineering Applications of Artificial Intelligence, 160(2025): 111768.
[20] Kunkun Song, Junhong Liu, Peng He, Qiangqiang Zhang*. 3D printing graphene lattice enabled smart silicate composites with piezoresistive and thermoelectric effects, Carbon, 234(2025): 120026.
[21] Baoping Zhang*, Huidan Qu, Zhidong Zhang, Xinyu Wang, Zhihao Dou, Xinjie Li, Rui Cao, Kailiang Zhang, Jingxiang Zhang*, Qiangqiang Zhang*.Eu-doped TiO2 coatings via one-step in situ preparation enhance macrophage polarization and osseointegration of implants, ACS Applied Materials & Interfaces, 17(2025): 6.
[22] Tao Du, Zhimin Chen, Sidsel M, Johansen, Qiangqiang Zhang, Yuanzheng Yue, Morten M. Smedskjaer. Predicting stiffness and toughness of aluminosilicate glasses using an interpretable machine learning model, Engineering Fracture Mechanics, 318(2025): 110961.
[23] Baoqiang Zhang, Yantang Zhao, Peng He, Jiaqi Dong, Kunkun Song, Qiangqiang Zhang*. Mechanically tough and superior Joule heating graphene-papers used for deicing and snow-melting of asphalt pavement, Materials and Structures, 58(2025): 84.
[24] Yantang Zhao, Xin Jing, Yongjie Ma, Peng He, Qiangqiang Zhang*, Hui Li. Deep-Learning Enhanced SrAl2O4: (Eu2+, Dy3+, Nd3+) Mechanoluminescence Film for Distributed Perception of Mechanical Deformation and Fracture, Advanced Optical Materials, (2025): 2403516 (入选Advances in Engineering工程科技卓越贡献文章).
2024年:
[25] Jingxiang Zhang, Zhongyang Liu, Jing Wang,Yang Zhang, Jiaqi Dong, Jianpeng Gao, Licheng Zhang, Jizeng Wang*, Peifu Tang*, Qiangqiang Zhang*. 3D Coaxially Printing rGO Aerogel-based Biocompatible Fiber for Peripheral Nerve Regeneration. Advanced Fiber Materials, 6(2024): 713-726.
[26] Yongfeng Wei, Hui Dou, Tingting He, Kunkun Song, Qiangqiang Zhang*, Investigation of shrinkage mechanism of alkali-activated slag, Case Studies in Construction Materials, 21(2024): e03493.
[27] Kunkun Song, Shengda Yang, Ningqi Shao, Yantang Zhao, Peng He, Yongfeng Wei, Hengzhong Fan*, Yongsheng Zhang, Qiangqiang Zhang*. Highly strengthening and toughening biomimetic ceramic structures fabricated via a novel coaxially printing. Journal of Advanced Ceramics, 13(2024): 4.
[28] Kunkun Song, Shengda Yang, Yongfeng Wei, Ningqi Shao, Peng He, Yantang Zhao, Tao Du, Hengzhong Fan, Qiangqiang Zhang. Coaxially printed biomimetic BSPC with high strength and toughness. Materials & Design, 238(2024): 112648.
[29] Yongfeng Wei*, Kunkun Song, Qiangqiang Zhang*, Hui Dou, Huaxin Xu*. Formulation optimization of oil shale semi-coke/lime/cement solidified loess based on ternary nephogram and establishment of elastic-plastic damage model, Construction and Building Materials, 428(2024): 136313.
[30] Tao Du, Xuan Ge, Fengming Cao, Han Liu, Caijuan Shi, Junwei Ding, Daming Sun, Qiangqiang Zhang, Yuanzheng Yue, Morten Smedskjaer*. Structural Origin of the Deformation Propensity of Zeolitic Imidazolate Framework Glasses, Chemistry of Materials, 36(2024): 6167–6179.
[31] Xin Jing, Yixuan Huan, Yu Wang, Ruixian Huang, Yang Xu*, Qiangqiang Zhang*. Complex Crack Segmentation and Quantitative Evaluation of Engineering Materials Based on Deep Learning Methods, IEEE Access, 12(2024): 41396-41412.
[32] Jicheng Li, Hengzhong Fan*, Qiangqiang Zhang, Hongxiang Chen, Yunfeng Su, Junjie Song, Litian Hu, Yongsheng Zhang*. Carbon vacancies enhanced oxidation resistance of high-entropy carbides (Ti0.2V0.2Nb0.2Mo0.2W0.2)Cx, Ceramics International, 50(2024): 6.
2023年:
[33] Peng He, Tao Du, Ke-Ren Zhao, Jia-Qi Dong, Yu-Sheng Liang, Qiang-Qiang Zhang*. Lightweight 3D Graphene Metamaterials with Tunable Negative Thermal Expansion, Advanced Materials, 35 (2023): 2208562.
[34] Peng He, Du Tao, Yuanzun Shen, Yusheng Liang, Jiaqi Dong, Hengzhong Fan, Qiangqiang Zhang*. Superelastic bionic graphene/nanoceramic metamaterials with tunable thermo-mechanical performances, Carbon, 214(2023): 118357.
[35] Yu Wang, Xin Jing, Wen-Li Chen, Hui Li, Yang Xu*, Qiang-Qiang Zhang*. Geometry-informed deep learning-based structural component segmentation of post-earthquake buildings, Mechanical Systems and Signal Processing, 188(2023): 110028.
[36] Yu Wang, Xin Jing, Liangyi Cui, Chenzong Zhang, Yang Xu*, Jian Yuan*, Qiangqiang Zhang*. Geometric Consistency Enhanced Deep Convolutional Encoder-Decoder for Urban Seismic Damage Assessment by UAV Images, Engineering Structures, 286(2023): 116132.
[37] Yu Wang, Xin Jing, Yang Xu*, Liangyi Cui, Hui Li, Qiangqiang Zhang*. Geometry-guided Semantic Segmentation for Post-Earthquake Buildings Using Optical Remote Sensing Images,Earthquake Engineering and Structural Dynamics, 52(2023): 3392-3413.
[38] Yang Xu, Weidong Qiao, Jin Zhao, Qiangqiang Zhang, Hui Li*. Vision-based multi-level synthetical evaluation of seismic damage for RC structural components: A multi-task learning approach, Earthquake Engineering and Engineering Vibration, 22(2023): 1.
[39] Jicheng Li, Shuna Chen, Hengzhong Fan*, Qiangqiang Zhang, Yunfeng Su, Junjie Song, Litian Hu, Yanchun Zhou, Yongsheng Zhang*. High-entropy (Ti0.2V0.2Nb0.2Mo0.2W0.2)Si2 with excellent high-temperature wear resistance, Journal of the American Ceramic Society, 107 (2023): 2750-2764.
[40] Liangyi Cui, Xin Jing, Yu Wang, Yixuan Huan, Yang Xu*. Qiangqiang Zhang*. Improved Swin Transformer-Based Semantic Segmentation of Postearthquake Dense Buildings in Urban Areas Using Remote Sensing Images, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 16(2023): 369-385.(ESI前1%高被引)
[41] Ji-Cheng Li, Qiang-Qiang Zhang, Shu-Na Chen, Heng-Zhong Fan*, Jun-Jie Song, Yong-Sheng Zhang*. Carbon-deficient high-entropy (Zr0.17Nb0.2Ta0.2Mo0.2W0.2)C0.89: A potential high temperature and vacuum wear-resistant material. Materials & Design, 226 (2023): 1-12.
[42] Yang Xu*, Yi Li, Xiaohang Zheng, Xiaodong Zheng, Qiangqiang Zhang. Computer-Vision and Machine-Learning-Based Seismic Damage Assessment of Reinforced Concrete Structures, Buildings, 13(2023): 5.
2022年:
[43] 戴亚飞, 张强强, 吴飞, 彭佳杰, 徐晓宝, 杜全生, 潘庆, 陈拥军. 国家自然科学基金委员会交叉科学部成立、发展与展望, 科学通报,68(2023): 1.
[44] Zai-Shan Lin, Jia-Qi Dong, Xin Wang, Qi-Tao Huang, Xi Shen, Ming-Long Yang, Xian-Xian Sun, Ye Yuan, Sha-Sha Wang, Yuan-Hao Ning, Shuang Yang, Wei-Long Yin, Meng-Lin Li, Yi-Wei Sun, Qiang-Qiang Zhang*, Yi-Bin Li*. Twin‐Structured Graphene Metamaterials with Anomalous Mechanical Properties. Advanced Materials, 34 (2022): 2200444.
[45] Fu-Xiang Song, Na Wang, Qiang-Qiang Zhang*, Wei-Bo Jie, Liu Bin*. 3D printing calcium alginate adsorbents for highly efficient recovery of U (VI) in acidic conditions. Journal of Hazardous Materials, 440(2022): 129774.
[46] Qiang-Qiang Zhang*, Jia-Qi Dong, Yan-Tang Zhao, Yue-Yan Zheng. Three-dimensional Meta-Architecture with Programmable Mechanical Properties. International Journal of Smart and Nano Materials, 13 (2022): 152-165.
[47] Ruixian Huang, Yang Xu, Yu Wang, Tao Zhang, Xin Jing, Qiangqiang Zhang*. Crack segmentation of steel structure based on U-net model, 12th International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering (QR2MSE 2022), Emeishan, China,(2022): 2143-2146.
[48] Tao Zhang, Yang Xu, Yu Wang*, Ruixian Huang, Chenzong Zhang, Liangyi Cui, Qiangqiang Zhang. Complex crack detection of postearthquake building using a optimzied YOLOv4 model, IET Conference Proceedings, (2022): 21.
[49] Yu Wang, Liangyi Cui, Chenzong Zhang, Wenli Chen, Yang Xu, Qiangqiang Zhang*. A Two-Stage Seismic Damage Assessment Method for Small, Dense, and Imbalanced Buildings in Remote Sensing Images, Remote Sensing, 14(2022): 4.
2021年:
[50] Bao-Qiang Zhang#, Qiang-Qiang Zhang#, Peng He, Yan-Bin Ma, Lei Shen, Xing-Yi Zhang, and You-He Zhou, Efficient fabrication of ultralight YBa2Cu3O7−x superconductors with programmable shape and structure. Advanced Functional Materials, 31 (2021): 2100680.
[51] Fu-Xiang Song, Jing-Xiang Zhang, Tao Du, Na Wang, Zhuo-Yue Wang, Zhen Zhang, Bin Liu, Qiang-Qiang Zhang*. Three-dimensional-printed Hierarchical Reduced Graphene Oxide/Ethylenediamine Filter with Super-high Uranyl Ions with Recycling Capacity and Unique Selectivity. Carbon, 182 (2021): 1-10.
2020年:
[52] Zhuo-Yue Wang, Han-Wen Liu, Feng-Juan Chen*, Qiang-Qiang Zhang*. A Three-Dimensional Printed Biomimetic Hierarchical Graphene Architecture with High Solar-Thermal Conversion. Journal of Materials Chemistry A, 8(2020): 19387-19395.
[53] Jingxiang Zhang, Shengqian Zhu, Kunkun Song, Zhuoyue Wang, Zongpu Han, Keren Zhao, Zengjie Fan, Xi Zhou*, Qiangqiang Zhang*. 3D reduced graphene oxide hybrid nano-copper scaffolds with a high antibacterial performance, Materials Letters, 267(2020): 127527.
[54] Liwei Zhang, Peng He, Kunkun Song, Jingxiang Zhang, Baoqiang Zhang, Ruixian Huang, Qiangqiang Zhang*. Three-Dimensional Graphene Hybrid SiO2 Hierarchical Dual-Network Aerogel with Low Thermal Conductivity and High Elasticity, Coatings, 10(2020): 455.
2019年:
[55] Xiang Xu#, Qiang-Qiang Zhang#, Meng-Long Hao#, Hu Yuan, Zhao-Yang Lin, Le-Le Peng, Tao-Wang, Xue-Xin Ren, Chen Wang, Zi-Peng Zhao, Cheng-Zhang Wan, Hui-Long Fei, Lei Wang, Jian Zhu, Hong-Tao Sun, Wen-Li Chen, Tao Du, Bi-Wei Deng, Gary J. Cheng, Imran Shakir, Chris Dames, Timothy S. Fisher, Xiang Zhang, Hui Li*, Yu Huang*, Xiang-Feng Duan*. Double-Negative-Index Ceramic Aerogels for Thermal Superinsulation. Science, 363 (2019): 723–727. (ESI前1%高被引)
[56] Yan-Bin Ma, Qiang-Qiang Zhang, Ke-Ren Zhao, Cong Liu, Bao-Qiang Zhang, Xing-Yi Zhang*, and You-He Zhou, Tunable Negative Thermal Expansion of Ultralight ZrW2O8/Graphene Hybrid Metamaterial. Carbon,153 (2019): 32-39.
[57] Yu Yikang, Wang Zhuoyue, Hou Zhen, Ta Wurui, Wang Wenhui, Zhao Xixia, Li Qian, Zhao Yusheng*, Zhang Qiangqiang*, Quan Zewei*. 3D Printing of Hierarchical Graphene Lattice for Advanced Na Metal Anodes, ACS Applied Energy Materials, 2(2019): 5.
[58] Jun Wang, Qiangqiang Zhang, Cong Liu, Xingyi Zhang*. Improvement of the pinning property in YBa2Cu3O7−x films below 35 K by doping with graphene oxide, AIP Advances, 9(2019): 015118.
2018年:
[59] Qiang-Qiang Zhang*, Feng Zhang, Xu Xiang, Chi Zhou*, Dong Lin*. 3D Printing Polymer Hollow Template-Mediated Graphene Lattice with Tailorable Architectures and Multifunctional Properties, ACS Nano, 12 (2018): 1096–1106.
[60] Qiang-Qiang Zhang*, Yu Wang, Bao-Qiang Zhang, Ke-Ren Zhao, Peng He*, Bo-Yun Huang. 3D Superelastic Graphene Aerogel-Nanosheet Hybrid Hierarchical Nanostructure as High-Performance Supercapacitor Electrode. Carbon, 127(2018): 449-458.
[61] Pingge He*, Boyun Huang, Qun Huang, Tengfei Chen, Qiangqiang Zhang*. Structural evolution of vertically-oriented graphene nanosheet templating Ni-Co hydroxide as pseudocapacitive electrode, Journal of Materials Science, 53(2018): 17.
[62] Pingge He, Qiangqiang Zhang, Qun Huang, Boyun Huang, Tengfei Chen. Vertically-oriented graphene nanosheet as nanobridge for pseudocapacitive electrode with ultrahigh electrochemical stability, RCS Advance, 8(2018): 13891–13897.
[63] Pingge He, Keren Zhao, Boyun Huang, Baoqiang Zhang, Qun Huang, Tengfei Cheng, Qiangqiang Zhang*. Mechanically robust and size-controlled MoS2/graphene hybrid aerogels as high-performance anodes for lithium ion batteries, Journal of Materials Science, 53(2018): 6.
[64] Weibo Xie, Fuxiang Song, Rui Wang, Shenglin Sun, Miao Li, Zengjie Fan, Bin Liu, Qiangqiang Zhang*, Jizeng Wang*. Mechanically robust 3D graphene/hydroxyapatite hybrid bioscaffolds with enhanced osteoconductive and biocompatible performance, Crystals, 8(2018): 2.
[65] 王玉,张靖翔,张宝强,赵可人,王卓越,沈沅樽,张强强*. 3D 打印石墨烯基功能材料的研究进展, 中国材料进展, 37(2018): 8.
2017年:
[66] Qiang-Qiang Zhang*, Dong Lin, Bi-Wei Deng, Xiang Xu, Qiong Nian, Sheng-Yu Jin, Kevin D. Leedy, Hui Li, Gary J. Cheng*. Flyweight, Superelastic, Electrically Conductive, and Flame-Retardant 3D Multi-Nanolayer Graphene/Ceramic Metamaterial. Advanced Materials, 29(2017): 1605506. (Research Highlight on Nature Review Materials “Graphene makes ceramics multifunctional”)
[67] Qiang-Qiang Zhang*, Meng-Long Hao, Xiang Xu, Guo-Ping Xiong, Hui Li, Timothy S. Fisher*. Flyweight 3D Graphene Scaffolds with Microinterface Barrier-Derived Tunable Thermal Insulation and Flame Retardancy. ACS Applied Materials & Interfaces, 9(2017): 14232-14241.
[68] Qiang-Qiang Zhang*, Yi-Yang Yu, Kai-Chun Yang, Bao-Qiang Zhang, Ke-Ren Zhao, Guo-Ping Xiong, Xing-Yi Zhang*, Mechanically Robust and Electrically Conductive Graphene-Paper/ Glass-Fibers/ Epoxy Composites for Stimuli-Responsive Sensors and Joule Heating Deicers. Carbon, 124(2017): 296-307.
[69] Qiangqiang Zhang*, Baoqiang Zhang, Yikang Yu, Keren Zhao, Pingge He*, Boyun Huang. Fluoroalkyl-Silane-Modified 3D Graphene Foam with Improved Joule-heating Effects and High Hydrophobicity-Derived Anti-icing Properties, Journal of Materials Science, 52(2017): 1.
[70] Tao Du, Huigang Xiao, Qiangqiang Zhang, Hui Li. Crystallization of calcium silicate hydrates on the surface of nanomaterials, Journal of the American Ceramic Society, 100(2017): 7.
2016年:
[71] Guo-Ping Xiong, Ping-Ge He, Di-Ni Wang, Qiang-Qiang Zhang, Teng-Fei Chen, Timothy S. Fisher*. Hierarchical Ni-Co Hydroxide Petals on Mechanically Robust Graphene Petal Foam for High-Energy Asymmetric Supercapacitors, Advanced Functional Materials, 26(2016): 5460-5470.
[72] Qiang-Qiang Zhang, Xiang Xu*, Dong Lin, Wen-Li Chen, Guo-Ping Xiong, Yi-Kang Yu, Timothy S. Fisher, Hui Li*. Hyperbolically Patterned 3D Graphene Metamaterial with Negative Poisson's Ratio and Superelasticity. Advanced Materials, 28(2016): 2229-2237. (VIP Publication)
[73] Xiang Xu#*, Qiang-Qiang Zhang#, Yi-Kang Yu, Wen-Li Chen, Hui Hu, Hui Li*. Naturally Dried Graphene Aerogels with Superelasticity and Tunable Poisson's Ratio. Advanced Materials, 28(2016): 9223-9230.
[74] Qiang-Qiang Zhang, Feng Zhang, Sai Pradeep Medarametla, Hui Li, Chi Zhou*, Dong Lin*. Three-Dimensional Printing Graphene Aerogel. Small, 12 (2016): 1702-1708. (2016’s Most accessed paper,2017 Guinness World Record‘The lightest 3D printing graphene aerogel’, ESI前1%高被引)
[75] Qiangqiang Zhang*, Yikang Yu, Weizhe Chen, Tao Chen, Yanchao Zhou, Hui Li. Outdoor Experiment of flexible sandwiched Graphite-PET Sheets based self-snow-thawing pavement, Cold Regions Science and Technology, 122(2016): 9223-9230.
2015年:
[76] Xiang Xu, Hui Li*, Qiang-Qiang Zhang, Han Hu, Zongbin Zhao, Jihao Li, Jingye Li, Yu Qiao, Yury Gogotsi*. Self-sensing, Ultralight and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in Magnetic Field. ACS Nano, 9 (2015): 3969–3977. (ESI前1%高被引)
[77] Qiang-Qiang Zhang, Xiang Xu, Hui Li*, Guo-ping Xiong, Han Hu, Timothy S Fisher, Mechanically Robust Honeycomb Graphene Aerogel Multifunctional Polymer Composites. Carbon, 93 (2015): 659-670.
[78] Wen-Li Chen, Qiang-Qiang Zhang, Hui Li*, Hui Hu. An experimental investigation on vortex induced vibration of a flexible inclined cable under a shear flow. Journal of Fluids and Structures, 54(2015): 297-311.
[79] Xiang Xu*, Qiangqiang Zhang, Yikang Yu, Kaichun Yang, Qiuyu He, Weizhe Chen, Hui Li*, Yu Qiao. Fluidic behaviours in a 2D folded-graphene aerogel monolith, Journal of Physics D: Applied Physics, 48(2015): 42.
2010年-2014年:
[80] Hui Li*, Qiangqiang Zhang, Huigang Xiao. Analytic investigations of CNFP-based self-deicing road system on the deicing performance, Cold regions science and technology, 103(2014): 123-132.
[81] Hui Li*, Shujin Laima, Qiangqiang Zhang, Na Li, Zhiqiang Liu. Field monitoring and validation of vortex-induced vibrations of a long-span suspension bridge, Journal of Wind Engineering and Industrial Aerodynamics, 124(2014): 54-67.
2013年:
[82] Hui Li*, Qiangqiang Zhang, Huigang Xiao. Self-deicing road system with a CNFP high-efficiency thermal source and MWCNT/cement-based high-thermal conductive composites, Cold regions science and technology, 86(2013): 22-35.
[83] Qiangqiang Zhang, Hui Li. Deicing investigation of a CNFP-based high-efficiency self-deicing system, Nondestructive Characterization for Composite Materials, Aerospace Engineering, Civil Infrastructure, and Homeland Security 2012. SPIE, 8347(2012): 563-572.
[84] Qiangqiang Zhang, Hui Li. Experimental investigation of road snow-melting based on CNFP self-heating concrete, Behavior and Mechanics of Multifunctional Materials and Composites 2011. SPIE, 2011, 7978(2011): 545-559.
[85] Qiangqiang Zhang, Hui Li. Experimental investigation on the ice/snow melting performance of CNFP & MWCNT/cement-based deicing system, Proceedings of the 6th International Workshop on Advanced Smart Materials and Smart Structures Technology, Dalian, China. (2011): 25-26.
[1] Zhanxiong Ma*, Boran Wang, Xin Jin, Wenlong Guo, Qiangqiang Zhang*. Computer vision-based cross-scale structural displacement estimation using amplitude-phase fusion. Mechanical Systems and Signal Processing, 244(2026): 113738.
[2] Zhanxiong Ma*, Lu Hai, Tongyong Zhang, Boran Wang, Xin Jin, Qiangqiang Zhang*, Hoon Sohn. Accurate structural displacement measurement via enhanced millimeter-wave radar interferometry using multi-chirp-based adaptive phase unwrapping. Measurement, 262(2026): 120029.
[3] Baoping Zhang, Ziyuan Li, Zhidong Zhang, Ying Gao, Yue Xing, Baoquan Fan, Yanjiao Tang, Shushu Xu, Chunfeng Tong, Jingxiang Zhang*, Zhige Li*, Qiangqiang Zhang*, Extracellular matrix-mimetic enhanced porous bioscaffolds for accelerating bone defect repair. Materials & Design, 261(2026): 115301.
[4] 金龙,陈良铭,张强强,李惠. 工程系统人工智能鲁棒性:前沿与展望, 中国科学基金, (2026).
[5] Zhanxiong Ma*, Tongtong Zhang, Yang Zhu, Shuhan Lin, Jigu Lee, Hoon Sohn, Qiangqiang Zhang*. Acceleration-Aided Kalman Filtering for Joint Phase Denoising and Unwrapping in FMCW Radar-based Displacement Monitoring, Mechanical Systems and Signal Processing, (2026).
[6] Zhanxiong Ma*, Tongtong Zhang, Shuhan Lin,Tao Zhang, Peipei Liu, Qiangqiang Zhang*, Hui Li. Simultaneous displacement and rotation estimation for flexible structures through millimeter-wave radar and inertial sensor fusion, Mechanical Systems and Signal Processing, (2026).
[7] Qianqian Zhang#, Lin Qiu#, Ningqi Shao#, Peng He, Junhong Liu, Jiaqi Dong, Xin Wang, Hengzhong Fan*, Yongsheng Zhang, Qiangqiang Zhang*.Biomimetic Hollow Graphene Aerogel Fibers for Thermal Management and Flexible Smart Textiles, Advanced Functional Materials, (2026).
2025年:
[8] Jiaqi Dong, Peng He, Yuansheng Wen, Ying Deng, Yusheng Liang, Hengzhong Fan, Yongsheng Zhang, Qiangqiang Zhang*. Additive-free oil-bath-printing dual-hyperbolic graphene aerogel for smart wearable sensors. Cell Reports Physical Science, 6(2025): 102955.
[9] Ying Gao, Qi Xu, Chen Cao, Huiyang Bian, Danning Wang, Yuanjie Gu, Junhong Liu, Jingxiang Zhang*, Qiangqiang Zhang*, Jizeng Wang*. Gradient oxidation enhanced wood harvester for hydrovoltaic energy. Advanced Functional Materials, (2025): e21733.
[10] Long Gao, Baoquan Xiao, Yanyan Lin, Xidong Fang, Shun He, Mingzhen Bai, Lingen Zhang, Yanni Ma, Ningning Mi, Wenkang Fu, Chongfei Huang, Liang Tian, Jinyu Zhao, Ruyang Zhong, Zhen Liu, Yanxian Ren, Chao Zhang, Ruoshui Wang, Chenjun Tian, Hui Sun, Emmanuel Melloul, Qiangqiang Zhang, Jinqiu Yuan, Ping Yue, Liyun Ding*, Wenbo Meng*. Real-time diagnosis of cholangiocarcinoma by combining digestive endoscopy and optic fiber biosensors based on bile clusterin, Med, (2025):100843.
[11] Xin Jing, Zhanxiong Ma, Tao Zhang, Yu Wang, Ruixian Huang, Yang Xu*, Qiangqiang Zhang*. Geometrically consistent energy-derivative attention CNN for semantic segmentation of multicategory structural damage, Automation in Construction, 176(2025): 106300.
[12] Jian Yuan, Junhong Liu, Jiaqi Zhao, Kunkun Song*, Qiangqiang Zhang*. Coaxially printing of biomimetic self-healing and transparent silicate-epoxy composites, Case Studies in Construction Materials, 22(2025): e04559.
[13] Yongfeng Wei*, Hui Dou, Jiangtao Gao, Qiangqiang Zhang*, Tingting He, Bin Mu, Aiqin Wang*. An exploration of oil shale semi-coke recycling utilization: High temperature activation mechanism and cementitious material precursor preparation, Journal of Building Engineering, 104(2025): 112288.
[14] Kunkun Song, Junhong Liu, Jiaqi Dong, Yusheng Liang, Tao Du, Hengzhong Fan, Qiangqiang Zhang*. Tailorable Nanoconfinement Enables Nacreous Biomimetic Graphene/Silicate Composites with Ultrahigh Strength and Toughness, Carbon, 240(2025): 120364.
[15] Peng He, Junhong Liu, Yuansheng Wen, Ningqi Shao, Qiangqiang Zhang*. Highly Robust 3D rGO Aerogel with Tunable Thermoelectric Effect for Multifunctional Sensing Applications, ACS Applied Materials & Interfaces, 17(2025): 16.
[16] Xiaoke Jiang, Tao Du, Hengzhong Fan*, Junhong Liu, Yunfeng Su, Peng He, Hongxaing Chen, Litian Hu, Yongsheng Zhang*, Qiangqiang Zhang*. Superelastic High-Entropy Oxide Ceramic Aerogels for Thermal Superinsulation and Sealing at Extreme Conditions, Advanced science, (2025): e16840.
[17] Long Jin, Kangying Gu, Peirong Li, Qiangqiang Zhang*, and Wei Chen*. Manipulability Optimization for Multi-manipulator Systems by Coevolutionary Neural Dynamics, IEEE Transactions on Industrial Electronics, (2025).
[18] Yunfeng Su, Shuna Chen, Hengzhong Fan, Junjie Song, Changning Bai, Qiangqiang Zhang, Ming Hu, Yongsheng Zhang, Litian Hu, Weimin Liu. Tough and damage-tolerant composite ceramics enabled by bioinspired multiple architectures, Materials Today, 90(2025): 169-178.
[19] Xin Jing, Yu Wang, Yixuan Huan, Kaiyu Guo, Jiaqi Dong, Zhanxiong Ma, Yang Xu, Qiangqiang Zhang*. Energy-derivative attention enhanced deep learning for multi-phase segmentation of mesoscale heterogeneous material using X-ray computed tomography images, Engineering Applications of Artificial Intelligence, 160(2025): 111768.
[20] Kunkun Song, Junhong Liu, Peng He, Qiangqiang Zhang*. 3D printing graphene lattice enabled smart silicate composites with piezoresistive and thermoelectric effects, Carbon, 234(2025): 120026.
[21] Baoping Zhang*, Huidan Qu, Zhidong Zhang, Xinyu Wang, Zhihao Dou, Xinjie Li, Rui Cao, Kailiang Zhang, Jingxiang Zhang*, Qiangqiang Zhang*.Eu-doped TiO2 coatings via one-step in situ preparation enhance macrophage polarization and osseointegration of implants, ACS Applied Materials & Interfaces, 17(2025): 6.
[22] Tao Du, Zhimin Chen, Sidsel M, Johansen, Qiangqiang Zhang, Yuanzheng Yue, Morten M. Smedskjaer. Predicting stiffness and toughness of aluminosilicate glasses using an interpretable machine learning model, Engineering Fracture Mechanics, 318(2025): 110961.
[23] Baoqiang Zhang, Yantang Zhao, Peng He, Jiaqi Dong, Kunkun Song, Qiangqiang Zhang*. Mechanically tough and superior Joule heating graphene-papers used for deicing and snow-melting of asphalt pavement, Materials and Structures, 58(2025): 84.
[24] Yantang Zhao, Xin Jing, Yongjie Ma, Peng He, Qiangqiang Zhang*, Hui Li. Deep-Learning Enhanced SrAl2O4: (Eu2+, Dy3+, Nd3+) Mechanoluminescence Film for Distributed Perception of Mechanical Deformation and Fracture, Advanced Optical Materials, (2025): 2403516 (入选Advances in Engineering工程科技卓越贡献文章).
2024年:
[25] Jingxiang Zhang, Zhongyang Liu, Jing Wang,Yang Zhang, Jiaqi Dong, Jianpeng Gao, Licheng Zhang, Jizeng Wang*, Peifu Tang*, Qiangqiang Zhang*. 3D Coaxially Printing rGO Aerogel-based Biocompatible Fiber for Peripheral Nerve Regeneration. Advanced Fiber Materials, 6(2024): 713-726.
[26] Yongfeng Wei, Hui Dou, Tingting He, Kunkun Song, Qiangqiang Zhang*, Investigation of shrinkage mechanism of alkali-activated slag, Case Studies in Construction Materials, 21(2024): e03493.
[27] Kunkun Song, Shengda Yang, Ningqi Shao, Yantang Zhao, Peng He, Yongfeng Wei, Hengzhong Fan*, Yongsheng Zhang, Qiangqiang Zhang*. Highly strengthening and toughening biomimetic ceramic structures fabricated via a novel coaxially printing. Journal of Advanced Ceramics, 13(2024): 4.
[28] Kunkun Song, Shengda Yang, Yongfeng Wei, Ningqi Shao, Peng He, Yantang Zhao, Tao Du, Hengzhong Fan, Qiangqiang Zhang. Coaxially printed biomimetic BSPC with high strength and toughness. Materials & Design, 238(2024): 112648.
[29] Yongfeng Wei*, Kunkun Song, Qiangqiang Zhang*, Hui Dou, Huaxin Xu*. Formulation optimization of oil shale semi-coke/lime/cement solidified loess based on ternary nephogram and establishment of elastic-plastic damage model, Construction and Building Materials, 428(2024): 136313.
[30] Tao Du, Xuan Ge, Fengming Cao, Han Liu, Caijuan Shi, Junwei Ding, Daming Sun, Qiangqiang Zhang, Yuanzheng Yue, Morten Smedskjaer*. Structural Origin of the Deformation Propensity of Zeolitic Imidazolate Framework Glasses, Chemistry of Materials, 36(2024): 6167–6179.
[31] Xin Jing, Yixuan Huan, Yu Wang, Ruixian Huang, Yang Xu*, Qiangqiang Zhang*. Complex Crack Segmentation and Quantitative Evaluation of Engineering Materials Based on Deep Learning Methods, IEEE Access, 12(2024): 41396-41412.
[32] Jicheng Li, Hengzhong Fan*, Qiangqiang Zhang, Hongxiang Chen, Yunfeng Su, Junjie Song, Litian Hu, Yongsheng Zhang*. Carbon vacancies enhanced oxidation resistance of high-entropy carbides (Ti0.2V0.2Nb0.2Mo0.2W0.2)Cx, Ceramics International, 50(2024): 6.
2023年:
[33] Peng He, Tao Du, Ke-Ren Zhao, Jia-Qi Dong, Yu-Sheng Liang, Qiang-Qiang Zhang*. Lightweight 3D Graphene Metamaterials with Tunable Negative Thermal Expansion, Advanced Materials, 35 (2023): 2208562.
[34] Peng He, Du Tao, Yuanzun Shen, Yusheng Liang, Jiaqi Dong, Hengzhong Fan, Qiangqiang Zhang*. Superelastic bionic graphene/nanoceramic metamaterials with tunable thermo-mechanical performances, Carbon, 214(2023): 118357.
[35] Yu Wang, Xin Jing, Wen-Li Chen, Hui Li, Yang Xu*, Qiang-Qiang Zhang*. Geometry-informed deep learning-based structural component segmentation of post-earthquake buildings, Mechanical Systems and Signal Processing, 188(2023): 110028.
[36] Yu Wang, Xin Jing, Liangyi Cui, Chenzong Zhang, Yang Xu*, Jian Yuan*, Qiangqiang Zhang*. Geometric Consistency Enhanced Deep Convolutional Encoder-Decoder for Urban Seismic Damage Assessment by UAV Images, Engineering Structures, 286(2023): 116132.
[37] Yu Wang, Xin Jing, Yang Xu*, Liangyi Cui, Hui Li, Qiangqiang Zhang*. Geometry-guided Semantic Segmentation for Post-Earthquake Buildings Using Optical Remote Sensing Images,Earthquake Engineering and Structural Dynamics, 52(2023): 3392-3413.
[38] Yang Xu, Weidong Qiao, Jin Zhao, Qiangqiang Zhang, Hui Li*. Vision-based multi-level synthetical evaluation of seismic damage for RC structural components: A multi-task learning approach, Earthquake Engineering and Engineering Vibration, 22(2023): 1.
[39] Jicheng Li, Shuna Chen, Hengzhong Fan*, Qiangqiang Zhang, Yunfeng Su, Junjie Song, Litian Hu, Yanchun Zhou, Yongsheng Zhang*. High-entropy (Ti0.2V0.2Nb0.2Mo0.2W0.2)Si2 with excellent high-temperature wear resistance, Journal of the American Ceramic Society, 107 (2023): 2750-2764.
[40] Liangyi Cui, Xin Jing, Yu Wang, Yixuan Huan, Yang Xu*. Qiangqiang Zhang*. Improved Swin Transformer-Based Semantic Segmentation of Postearthquake Dense Buildings in Urban Areas Using Remote Sensing Images, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 16(2023): 369-385.(ESI前1%高被引)
[41] Ji-Cheng Li, Qiang-Qiang Zhang, Shu-Na Chen, Heng-Zhong Fan*, Jun-Jie Song, Yong-Sheng Zhang*. Carbon-deficient high-entropy (Zr0.17Nb0.2Ta0.2Mo0.2W0.2)C0.89: A potential high temperature and vacuum wear-resistant material. Materials & Design, 226 (2023): 1-12.
[42] Yang Xu*, Yi Li, Xiaohang Zheng, Xiaodong Zheng, Qiangqiang Zhang. Computer-Vision and Machine-Learning-Based Seismic Damage Assessment of Reinforced Concrete Structures, Buildings, 13(2023): 5.
2022年:
[43] 戴亚飞, 张强强, 吴飞, 彭佳杰, 徐晓宝, 杜全生, 潘庆, 陈拥军. 国家自然科学基金委员会交叉科学部成立、发展与展望, 科学通报,68(2023): 1.
[44] Zai-Shan Lin, Jia-Qi Dong, Xin Wang, Qi-Tao Huang, Xi Shen, Ming-Long Yang, Xian-Xian Sun, Ye Yuan, Sha-Sha Wang, Yuan-Hao Ning, Shuang Yang, Wei-Long Yin, Meng-Lin Li, Yi-Wei Sun, Qiang-Qiang Zhang*, Yi-Bin Li*. Twin‐Structured Graphene Metamaterials with Anomalous Mechanical Properties. Advanced Materials, 34 (2022): 2200444.
[45] Fu-Xiang Song, Na Wang, Qiang-Qiang Zhang*, Wei-Bo Jie, Liu Bin*. 3D printing calcium alginate adsorbents for highly efficient recovery of U (VI) in acidic conditions. Journal of Hazardous Materials, 440(2022): 129774.
[46] Qiang-Qiang Zhang*, Jia-Qi Dong, Yan-Tang Zhao, Yue-Yan Zheng. Three-dimensional Meta-Architecture with Programmable Mechanical Properties. International Journal of Smart and Nano Materials, 13 (2022): 152-165.
[47] Ruixian Huang, Yang Xu, Yu Wang, Tao Zhang, Xin Jing, Qiangqiang Zhang*. Crack segmentation of steel structure based on U-net model, 12th International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering (QR2MSE 2022), Emeishan, China,(2022): 2143-2146.
[48] Tao Zhang, Yang Xu, Yu Wang*, Ruixian Huang, Chenzong Zhang, Liangyi Cui, Qiangqiang Zhang. Complex crack detection of postearthquake building using a optimzied YOLOv4 model, IET Conference Proceedings, (2022): 21.
[49] Yu Wang, Liangyi Cui, Chenzong Zhang, Wenli Chen, Yang Xu, Qiangqiang Zhang*. A Two-Stage Seismic Damage Assessment Method for Small, Dense, and Imbalanced Buildings in Remote Sensing Images, Remote Sensing, 14(2022): 4.
2021年:
[50] Bao-Qiang Zhang#, Qiang-Qiang Zhang#, Peng He, Yan-Bin Ma, Lei Shen, Xing-Yi Zhang, and You-He Zhou, Efficient fabrication of ultralight YBa2Cu3O7−x superconductors with programmable shape and structure. Advanced Functional Materials, 31 (2021): 2100680.
[51] Fu-Xiang Song, Jing-Xiang Zhang, Tao Du, Na Wang, Zhuo-Yue Wang, Zhen Zhang, Bin Liu, Qiang-Qiang Zhang*. Three-dimensional-printed Hierarchical Reduced Graphene Oxide/Ethylenediamine Filter with Super-high Uranyl Ions with Recycling Capacity and Unique Selectivity. Carbon, 182 (2021): 1-10.
2020年:
[52] Zhuo-Yue Wang, Han-Wen Liu, Feng-Juan Chen*, Qiang-Qiang Zhang*. A Three-Dimensional Printed Biomimetic Hierarchical Graphene Architecture with High Solar-Thermal Conversion. Journal of Materials Chemistry A, 8(2020): 19387-19395.
[53] Jingxiang Zhang, Shengqian Zhu, Kunkun Song, Zhuoyue Wang, Zongpu Han, Keren Zhao, Zengjie Fan, Xi Zhou*, Qiangqiang Zhang*. 3D reduced graphene oxide hybrid nano-copper scaffolds with a high antibacterial performance, Materials Letters, 267(2020): 127527.
[54] Liwei Zhang, Peng He, Kunkun Song, Jingxiang Zhang, Baoqiang Zhang, Ruixian Huang, Qiangqiang Zhang*. Three-Dimensional Graphene Hybrid SiO2 Hierarchical Dual-Network Aerogel with Low Thermal Conductivity and High Elasticity, Coatings, 10(2020): 455.
2019年:
[55] Xiang Xu#, Qiang-Qiang Zhang#, Meng-Long Hao#, Hu Yuan, Zhao-Yang Lin, Le-Le Peng, Tao-Wang, Xue-Xin Ren, Chen Wang, Zi-Peng Zhao, Cheng-Zhang Wan, Hui-Long Fei, Lei Wang, Jian Zhu, Hong-Tao Sun, Wen-Li Chen, Tao Du, Bi-Wei Deng, Gary J. Cheng, Imran Shakir, Chris Dames, Timothy S. Fisher, Xiang Zhang, Hui Li*, Yu Huang*, Xiang-Feng Duan*. Double-Negative-Index Ceramic Aerogels for Thermal Superinsulation. Science, 363 (2019): 723–727. (ESI前1%高被引)
[56] Yan-Bin Ma, Qiang-Qiang Zhang, Ke-Ren Zhao, Cong Liu, Bao-Qiang Zhang, Xing-Yi Zhang*, and You-He Zhou, Tunable Negative Thermal Expansion of Ultralight ZrW2O8/Graphene Hybrid Metamaterial. Carbon,153 (2019): 32-39.
[57] Yu Yikang, Wang Zhuoyue, Hou Zhen, Ta Wurui, Wang Wenhui, Zhao Xixia, Li Qian, Zhao Yusheng*, Zhang Qiangqiang*, Quan Zewei*. 3D Printing of Hierarchical Graphene Lattice for Advanced Na Metal Anodes, ACS Applied Energy Materials, 2(2019): 5.
[58] Jun Wang, Qiangqiang Zhang, Cong Liu, Xingyi Zhang*. Improvement of the pinning property in YBa2Cu3O7−x films below 35 K by doping with graphene oxide, AIP Advances, 9(2019): 015118.
2018年:
[59] Qiang-Qiang Zhang*, Feng Zhang, Xu Xiang, Chi Zhou*, Dong Lin*. 3D Printing Polymer Hollow Template-Mediated Graphene Lattice with Tailorable Architectures and Multifunctional Properties, ACS Nano, 12 (2018): 1096–1106.
[60] Qiang-Qiang Zhang*, Yu Wang, Bao-Qiang Zhang, Ke-Ren Zhao, Peng He*, Bo-Yun Huang. 3D Superelastic Graphene Aerogel-Nanosheet Hybrid Hierarchical Nanostructure as High-Performance Supercapacitor Electrode. Carbon, 127(2018): 449-458.
[61] Pingge He*, Boyun Huang, Qun Huang, Tengfei Chen, Qiangqiang Zhang*. Structural evolution of vertically-oriented graphene nanosheet templating Ni-Co hydroxide as pseudocapacitive electrode, Journal of Materials Science, 53(2018): 17.
[62] Pingge He, Qiangqiang Zhang, Qun Huang, Boyun Huang, Tengfei Chen. Vertically-oriented graphene nanosheet as nanobridge for pseudocapacitive electrode with ultrahigh electrochemical stability, RCS Advance, 8(2018): 13891–13897.
[63] Pingge He, Keren Zhao, Boyun Huang, Baoqiang Zhang, Qun Huang, Tengfei Cheng, Qiangqiang Zhang*. Mechanically robust and size-controlled MoS2/graphene hybrid aerogels as high-performance anodes for lithium ion batteries, Journal of Materials Science, 53(2018): 6.
[64] Weibo Xie, Fuxiang Song, Rui Wang, Shenglin Sun, Miao Li, Zengjie Fan, Bin Liu, Qiangqiang Zhang*, Jizeng Wang*. Mechanically robust 3D graphene/hydroxyapatite hybrid bioscaffolds with enhanced osteoconductive and biocompatible performance, Crystals, 8(2018): 2.
[65] 王玉,张靖翔,张宝强,赵可人,王卓越,沈沅樽,张强强*. 3D 打印石墨烯基功能材料的研究进展, 中国材料进展, 37(2018): 8.
2017年:
[66] Qiang-Qiang Zhang*, Dong Lin, Bi-Wei Deng, Xiang Xu, Qiong Nian, Sheng-Yu Jin, Kevin D. Leedy, Hui Li, Gary J. Cheng*. Flyweight, Superelastic, Electrically Conductive, and Flame-Retardant 3D Multi-Nanolayer Graphene/Ceramic Metamaterial. Advanced Materials, 29(2017): 1605506. (Research Highlight on Nature Review Materials “Graphene makes ceramics multifunctional”)
[67] Qiang-Qiang Zhang*, Meng-Long Hao, Xiang Xu, Guo-Ping Xiong, Hui Li, Timothy S. Fisher*. Flyweight 3D Graphene Scaffolds with Microinterface Barrier-Derived Tunable Thermal Insulation and Flame Retardancy. ACS Applied Materials & Interfaces, 9(2017): 14232-14241.
[68] Qiang-Qiang Zhang*, Yi-Yang Yu, Kai-Chun Yang, Bao-Qiang Zhang, Ke-Ren Zhao, Guo-Ping Xiong, Xing-Yi Zhang*, Mechanically Robust and Electrically Conductive Graphene-Paper/ Glass-Fibers/ Epoxy Composites for Stimuli-Responsive Sensors and Joule Heating Deicers. Carbon, 124(2017): 296-307.
[69] Qiangqiang Zhang*, Baoqiang Zhang, Yikang Yu, Keren Zhao, Pingge He*, Boyun Huang. Fluoroalkyl-Silane-Modified 3D Graphene Foam with Improved Joule-heating Effects and High Hydrophobicity-Derived Anti-icing Properties, Journal of Materials Science, 52(2017): 1.
[70] Tao Du, Huigang Xiao, Qiangqiang Zhang, Hui Li. Crystallization of calcium silicate hydrates on the surface of nanomaterials, Journal of the American Ceramic Society, 100(2017): 7.
2016年:
[71] Guo-Ping Xiong, Ping-Ge He, Di-Ni Wang, Qiang-Qiang Zhang, Teng-Fei Chen, Timothy S. Fisher*. Hierarchical Ni-Co Hydroxide Petals on Mechanically Robust Graphene Petal Foam for High-Energy Asymmetric Supercapacitors, Advanced Functional Materials, 26(2016): 5460-5470.
[72] Qiang-Qiang Zhang, Xiang Xu*, Dong Lin, Wen-Li Chen, Guo-Ping Xiong, Yi-Kang Yu, Timothy S. Fisher, Hui Li*. Hyperbolically Patterned 3D Graphene Metamaterial with Negative Poisson's Ratio and Superelasticity. Advanced Materials, 28(2016): 2229-2237. (VIP Publication)
[73] Xiang Xu#*, Qiang-Qiang Zhang#, Yi-Kang Yu, Wen-Li Chen, Hui Hu, Hui Li*. Naturally Dried Graphene Aerogels with Superelasticity and Tunable Poisson's Ratio. Advanced Materials, 28(2016): 9223-9230.
[74] Qiang-Qiang Zhang, Feng Zhang, Sai Pradeep Medarametla, Hui Li, Chi Zhou*, Dong Lin*. Three-Dimensional Printing Graphene Aerogel. Small, 12 (2016): 1702-1708. (2016’s Most accessed paper,2017 Guinness World Record‘The lightest 3D printing graphene aerogel’, ESI前1%高被引)
[75] Qiangqiang Zhang*, Yikang Yu, Weizhe Chen, Tao Chen, Yanchao Zhou, Hui Li. Outdoor Experiment of flexible sandwiched Graphite-PET Sheets based self-snow-thawing pavement, Cold Regions Science and Technology, 122(2016): 9223-9230.
2015年:
[76] Xiang Xu, Hui Li*, Qiang-Qiang Zhang, Han Hu, Zongbin Zhao, Jihao Li, Jingye Li, Yu Qiao, Yury Gogotsi*. Self-sensing, Ultralight and Conductive 3D Graphene/Iron Oxide Aerogel Elastomer Deformable in Magnetic Field. ACS Nano, 9 (2015): 3969–3977. (ESI前1%高被引)
[77] Qiang-Qiang Zhang, Xiang Xu, Hui Li*, Guo-ping Xiong, Han Hu, Timothy S Fisher, Mechanically Robust Honeycomb Graphene Aerogel Multifunctional Polymer Composites. Carbon, 93 (2015): 659-670.
[78] Wen-Li Chen, Qiang-Qiang Zhang, Hui Li*, Hui Hu. An experimental investigation on vortex induced vibration of a flexible inclined cable under a shear flow. Journal of Fluids and Structures, 54(2015): 297-311.
[79] Xiang Xu*, Qiangqiang Zhang, Yikang Yu, Kaichun Yang, Qiuyu He, Weizhe Chen, Hui Li*, Yu Qiao. Fluidic behaviours in a 2D folded-graphene aerogel monolith, Journal of Physics D: Applied Physics, 48(2015): 42.
2010年-2014年:
[80] Hui Li*, Qiangqiang Zhang, Huigang Xiao. Analytic investigations of CNFP-based self-deicing road system on the deicing performance, Cold regions science and technology, 103(2014): 123-132.
[81] Hui Li*, Shujin Laima, Qiangqiang Zhang, Na Li, Zhiqiang Liu. Field monitoring and validation of vortex-induced vibrations of a long-span suspension bridge, Journal of Wind Engineering and Industrial Aerodynamics, 124(2014): 54-67.
2013年:
[82] Hui Li*, Qiangqiang Zhang, Huigang Xiao. Self-deicing road system with a CNFP high-efficiency thermal source and MWCNT/cement-based high-thermal conductive composites, Cold regions science and technology, 86(2013): 22-35.
[83] Qiangqiang Zhang, Hui Li. Deicing investigation of a CNFP-based high-efficiency self-deicing system, Nondestructive Characterization for Composite Materials, Aerospace Engineering, Civil Infrastructure, and Homeland Security 2012. SPIE, 8347(2012): 563-572.
[84] Qiangqiang Zhang, Hui Li. Experimental investigation of road snow-melting based on CNFP self-heating concrete, Behavior and Mechanics of Multifunctional Materials and Composites 2011. SPIE, 2011, 7978(2011): 545-559.
[85] Qiangqiang Zhang, Hui Li. Experimental investigation on the ice/snow melting performance of CNFP & MWCNT/cement-based deicing system, Proceedings of the 6th International Workshop on Advanced Smart Materials and Smart Structures Technology, Dalian, China. (2011): 25-26.