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Xiaohua Zhang


Personal Resume

Dr. Zhang received his B.S and Ph.D. degrees in Physics from Fudan University in 2000 and 2007, respectively. He was a postdoctoral fellow during 2007-2009 in the International School for Advanced Studies (SISSA), Italy, and worked in Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences, during 2009-2019. Since March 2019, he is a Professor in Innovation Center for Textile Science and Technology in Donghua University. He was selected as the member of the Youth Innovation Association, Chinese Academy of Sciences (2015), and received the Outstanding Youth Fund of Jiangxi Province (2018). His research areas include high performance fibers and composites, nano assembly materials, and molecular dynamics of nano/micro mechanics.




Education



          1996-2000

Fudan University, China 

B.S.

          2000-2007

Fudan University, China 

Ph.D




Employment History



          2007-2009 

International School for Advanced Studies (SISSA), Italy

Postdoctoral Fellow

          2009-2019

Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences

Associate Professor

          2019-presentInnovation Center for Textile Science and Technology, Donghua UniversityProfessor



Major Research Achievements

       He has authored and co-authored over 100 peer-reviewed journal papers published in Nat. Mater., Adv. Mater, Adv. Funct. Mater., Phys. Rev. Lett., ACS Nano, ACS Appl. Mater. Interfaces, Compos. Sci. Technol., Carbon, etc.

Representative Works:

[1] Xiaohua Zhang*, Xin Wang, Wenling Jiao, Yitao Liu, Jianyong Yu and Bin Ding*. Evolution from microfibers to nanofibers toward next-generation ceramic matrix composites: A review. Journal of the European Ceramic Society 43, 12551269 (2023). 

[2] Dandan Liu, Ping Wang, Xiaohua Zhang*, Cheng Chen, Jingyun Zou, Ligan Hou, Jingna Zhao, Jiangli Xue, Fazhu Ding, Zhaoshun Gao and Qingwen Li*. Synergistically improved mechanical, thermal, and ampacity performances of carbon nanotube/copper composite conductors based on network confinement effects. Carbon 201, 837846 (2023).

[3] Qian Lu, Jingna Zhao, Wentao Zhang, Jiaojiao Wang, Yongyi Zhang, Xiaohua Zhang* and Qingwen Li*. Expansion-based impregnation of poly(vinyl alcohol) into carbon nanotube networks toward high-strength nanocomposites. Composites Communications 33, 101198 (2022).

[4] Jiachao Ji, Jiaojiao Wang, Chunhua Zhu, Xiaohua Zhang*, Qingwen Li, Junhua Zhao*, and Wanlin Guo*. Revealing Density Thresholds of Carbon Nanotube Cross-Links for Load Transfer: A Graph Theory Strategy. ACS Nano 16(4), 69296936 (2022).

[5] Lin Qiu, Fengcheng Li, Ning Zhu, Yanhui Feng*, Xiaoliang Zhang*, and Xiaohua Zhang*. Broad low-frequency phonon resonance for increased across-tube heat transport. Physical Review B 105(16), 165406 (2022).

[6] Ruijie Wu, Jingyun Zou*, Bei Gao, Chunlan Ma and Xiaohua Zhang*. Tungsten-oxide frameworks with visible light absorption: An ab initio study. Applied Physics Letters 120(12), 121901 (2022).

[7] Bolan Li, Feng Zhang, Mengxiao Jiao, Yanbo Li, Xin Wang and Xiaohua Zhang*. Carbon fiber/polyetherketoneketone composites. Part I: An ideal and uniform composition via solution-based processing. Polymer Composites 43(5), 28032811 (2022).

[8] Lin Qiu*, Fengcheng Li*, Ning Zhu, Xinxin Zhang* and Xiaohua Zhang*. Elaborate manipulation on CNT intertube heat transport by using a polymer knob. International Journal of Heat and Mass Transfer 184, 122280 (2022).

[9] Xiao-Hua Zhang*, Meng-Xiao Jiao, Xin Wang, Bo-Lan Li, Feng Zhang, Yan-Bo Li, Jing-Na Zhao, He-Hua Jin and Yu Yang. Preheat Compression Molding for Polyetherketoneketone: Effect of Molecular Mobility. Chinese Journal of Polymer Science 40(2), 175184 (2022).

[10] Xiaoping Hu, Yuxuan Zheng*, Deya Wang, Gengzhi Sun, Xiaohua Zhang*, Jie Tian, Pengfei Wang*, Songlin Xu and Fenghua Zhou. Uncovering the mechanical behavior of twisted carbon nanotube assemblies under high-speed stretching. Composites Communications 28, 100933 (2021).

[11] Jiaojiao Wang, Jingna Zhao, Liming Zhao, Qian Lu, Tao Zhou, Zhenzhong Yong, Pengfei Wang, Xiaohua Zhang* and Qingwen Li*. Interfacial-bubbling-induced nondestructive expansion to reconstruct superstrong and multifunctional carbon nanotube fibers. Carbon 184, 2433 (2021).

[12] Lin Qiu, Xiaohua Zhang*, Zhixin Guo and Qingwen Li. Interfacial heat transport in nano-carbon assemblies. Carbon 178, 391412 (2021).

[13] Guofang Hu, Xiaohua Zhang*, Xiaoyan Liu, Jianyong Yu and Bin Ding*. Electrospun Nanofibers Withstandable to High-Temperature Reactions: Synergistic Effect of Polymer Relaxation and Solvent Removal. Advanced Fiber Materials 3(1), 1425 (2021).

[14] Xiaohua Zhang. Carbon nanotube/polyetheretherketone nanocomposites: mechanical, thermal, and electrical properties. Journal of Composite Materials 55(15), 21152132 (2021).

[15] Xiaoping Hu, Yuxuan Zheng*, Gengzhi Sun, Xiaohua Zhang*, Jie Tian, Pengfei Wang*, Songlin Xu and Fenghua Zhou. Revealing the mechanical strengthening mechanisms in twisting CNT ribbon with the effect of interface and boundary conditions. Composites Science and Technology 201, 108515 (2021).

[16] Yu Du, Xiaohua ZhangJin Wang, Zengwei Liu, Kun Zhang, Xiaofei Ji, Yezi You and Xuetong Zhang*. Reaction-Spun Transparent Silica Aerogel Fibers. ACS Nano 14(9), 1191911928 (2020).

[17] Changle Xu, Jingna Zhao, Zhuo Chao, Jiaojiao Wang, Wenlou Wang, Xiaohua Zhang* and Qingwen Li*. Developing thermal regulating and electromagnetic shielding textiles using ultra-thin carbon nanotube films. Composites Communications 21, 100409 (2020).

[18] Wenya Li, Changle Xu, Xueqin Ren, Yuan Xue*, Jingna Zhao*, Qingwen Li and Xiaohua Zhang*. Anti-fatigue and multifunctional core-spun yarns based on carbon nanotube springs. Composites Communications 19, 127133 (2020).

[19] Guofang Hu, Xiaohua Zhang*, Xiaoyan Liu, Jianyong Yu and Bin Ding*. Strategies in Precursors and Post Treatments to Strengthen Carbon Nanofibers. Advanced Fiber Materials 2(2), 4663 (2020).

[20] Xiaohua Zhang, Weibang Lu, Gengheng Zhou and Qingwen Li*. Understanding the mechanical and conductive properties of carbon nanotube fibers for smart electronics. Advanced Materials 32(5), 1902028 (2020).

[21] Xueqin Yang, Jingna Zhao, Kunjie Wu, Ming Yang, Jian Wu*, Xiangcheng Zhang, Xiaohua Zhang* and Qingwen Li. Making a strong adhesion between polyetherketoneketone and carbon nanotube fiber through an electro strategy. Composites Science and Technology 177, 8187 (2019).

[22] Wenya Li, Jingna Zhao, Yuan Xue*, Xueqin Ren, Xiaohua Zhang* and Qingwen Li*. Merge multiple carbon nanotube fibers into a robust yarn. Carbon 145, 266 (2019).

[23] Jingyun Zou, Dandan Liu, Jingna Zhao, Ligan Hou, Tong Liu, Xiaohua Zhang*, Yonghao Zhao, Yuntian T. Zhu* and Qingwen Li*. Ni Nanobuffer Layer Provides Light-Weight CNT/Cu Fibers with Superior Robustness, Conductivity, and Ampacity. ACS Applied Materials & Interfaces 10(9), 81978204 (2018).

[24] Jingna Zhao, Fulin Wang, Xin Zhang, Linjie Liang, Xueqin Yang, Qingwen Li and Xiaohua Zhang*. Vibration Damping of Carbon Nanotube Assembly Materials. Advanced Engineering Materials 20(3), 1700647 (2018).

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