博士生导师

    博士生导师
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    钱正芳

    发布时间:2026-03-10  发布者: 点击阅读数:

    姓名:钱正芳

    职称:教授/博士生导师

    邮箱:zqian2013@qq.com

    个人基本情况

    武汉工程大学机电工程学院特聘教授,国家特聘专家、博士生导师。美国机械工程师协会、美国电气和电子工程师协会、美国科学促进会会员。入选深圳市孔雀计划A人才和深大学科带头人,获多项国家省市项目资助,任科技部和教育部评审专家、广东省和深圳市重大重点项目评审专家。

    1985年从南京工业大学化工机械专业硕士毕业加入武汉工程大学为年轻讲师和力学教研室主任,分别从事十年化工机械的压力容器分离机高温本构方程及损伤力学研究;十年电子材料性能和集成电路芯片封装测试可靠性研究;十年微纳米结构性能调控和相控阵天线及无线传感通讯技术研究;以及多年高科技产品研发;在每一个领域内都取得了原创性成果。已发表SCI论文120多篇(包括高水平一区SCI论文30篇),国际国内会议论文60多篇,申请发明专利100项,已经获得授权发明专利50项,国际PCT专利10。善于跨学科跨领域发展、开拓新学科,具有国际视野、富有国际化企业管理和团队建设经验。已培养25名博士后,10名博士研究生和20余名硕士研究生。

    先后在中国科学院力学研究所、两家美国500强跨国企业、三所美国大学,从事高水平学术研究和高技术产品研发二十五年。全职回国后曾任华中科技大学光电国家实验室客座教授、武汉大学电子制造与封装集成研究中心副主任、深圳大学物理与光电工程学院特聘教授、学院教授委员会主任、广东省/教育部重点实验室学科带头人等。参与中国七五重点、中国八五重大项目,主持国家重点研发计划课题、深圳市孔雀计划团队项目、深圳市重点研发项目等

     

    教育经历(按时间倒序排序)

    19879 - 19916     重庆大学,固体力学博士

    19829 - 19855     南京工业大学,化工机械硕士

    19789 - 19825     常州大学,化工机械学士

     

    工作经历(按时间倒序排序)

    20201 - 20261       深圳大学,物理与光电工程学院特聘教授

    20161 - 201912      深圳大学,电子科学与技术学院特聘教授

    20151 - 201512      武汉大学,动力与机械工程学院教授(二级)

    2012 - 2014                   华中科技大学,光机电国家实验室客座教授

    1991 - 1993                   中国科学院力学研究所,非线性力学国家重点实验室博士后

    1985 - 1987                   武汉工程大学,机械工程系讲师、教研室主任

     

    主持的主要科研项目(非涉密)和人才计划项目情况(按时间倒序排序)

    [1]     深圳市重点研发项目:2024面向低轨卫星的多频段液晶相控阵天线研发

    [2]     深圳市孔雀团队项目:毫米波太赫兹通信关键技术研发

    [3]     国家重点研发计划课题:柔性可穿戴系统的集成技术

    [4]     深圳市孔雀计划项目:毫米波通信和智能天线技术

    [5]     深圳大学高水平建设项目:微电子平台建设

    [6]     深圳市基础研究布局项目:5G手机和天线技术

     

    5年代表性高水平/高影响因子SCI论文(2021-2025年)

    [1]     Xiao, Z; Dai, XY; Zhu, JF; Liu, DM; Liu, LZ; Liu, XP; Li, Y; Qian, ZF*; Wang, RH*, “Hydrogen Bond Competition Optimizing Aqueous Zn Ion Solvation and (002) Interfacial Deposition with Ultralong Stability”, ADVANCED FUNCTIONAL MATERIALS, JAN 28,2025,10.1002/adfm.202424860;

    [2]     Wang, JH; Liu, XP; Qian, ZF*; Wang, RH*; Fan, ST*, “Analysis of Pore Characteristics of Solid-State Electrolytes Based on Terahertz Time-Domain Spectroscopy” IEEE TRANS ON TERAHERTZ SCIENCE AND TECHNOLOG,2026, 16(2), 156-164;

    [3]     Wang, G; Du, YN; Huang, P; Qian, ZF; Zhang, P; Wei, SH, “Design of Intrinsic Transparent Conductors from a Synergetic Effect of Symmetry and Spatial-Distribution Forbidden Transitions”, PHYSICAL REVIEW LETTERS, Jan 22, 2025, 134(3): 36401, 10.1103/PhysRevLett.134.036401;

    [4]     Zhong, YL; Xiao, YX; Qian, ZF; Xiong, W; Huang, P, “High-throughput exfoliation of multiferroic ternary oxide monolayers with high transition temperature and giant spin splitting”, npj Computational Materials, (2025) 11:383; https://doi.org/10.1038/s41524-025-01867-0

    [5]     Liu X, Dai X, Lin Q, Li Y, Liu D, Xiao Z, Liu L, Qian ZF* and Wang R*,La2O3-Reinforced Polymer Electrolyte with Enhanced Interfacial Lithium-Ion Conductivity for High Stability Lithium Metal Batteries”,Small, 2025, 2501133, DOI: 10.1002/smll.202501133

    [6]     Peng J, Zhu H, Gao C, Liang H., Du D., Fan S., Wang R., and Qian ZF, “A Low-Profile 2-D Multibeam Multifeed Antenna Array with Millimeter-Wave Applications”, IEEE TRANS ON ANTENNAS AND PROPAGATION, 73(1) 1, 2025, 588-593.

    [7]     Du, DM; Zhu, H*; Liang, H; Peng, J; Qian, ZF*, “A Miniaturized and Low-Loss Phase Shifter Based on Slow-Waves and Liquid Crystal”, IEEE ACCESS, 2025, 13:78607-78617;

    [8]     Wang, XY; Borse, RA; Wang, G; Xiao, Z; Zhu, H; Sun, YL; Qian, ZF*; Zhong, SK; Wang, RH*, “Two-dimensional conductive metal-organic frameworks electrocatalyst: Design principle and energy conversion applications”, MATERIALS TODAY ENERGY, AUG 2024,44,101652,10.1016/j.mtener.2024.101652;

    [9]     Huang, Y; Gao, MM; Fu, YB; Li, JK; Wang, FX; Yang, S; Wang, MC; Qian, ZF*; Lu, X; Zhang, PP; Wang, RH, “Hierarchical porous carbon nanofibers embedded with one-dimensional conjugated metal-organic framework anodes for ammonium-ion hybrid supercapacitors”, ENERGY STORAGE MATERIALS, JUN 2024,70:103522,10.1016/j.ensm.2024.103522;

    [10]   Fan L, Jiang Y, Deng R, Zhu H, Dai X, Liang H, Li N,* and Qian ZF*,“Mechanical Robustness Enhanced Flexible Antennas Using Ti3C2 MXene and Nanocellulose Composites for Noninvasive Glucose Sensing”,ACS Sens. 2024, 9, 18661876

    [11]   Hu, Y; Jiang, JW; Zhang, P; Ma, Z; Guan, FX; Li, D; Qian, ZF; Zhang, XW; Huang, P, “Prediction of nonlayered oxide monolayers as flexible high-κdielectrics with negative Poisson's ratios”, NATURE COMMUNICATIONS, OCT 17, 2023, 14(1): 6555,10.1038 /s41467-023-42312-4;

    [12]   Miao, LC; Xiao, Z; Shi, DJ; Wu, ML; Liu, DM; Li, Y; Liu, XP; Sun, YL; Zhong, SK; Qian, ZF*; Wang, RH*, “A Universal Descriptor in Determining H2 Evolution Activity for Dilute Aqueous Zn Batteries”, ADVANCED FUNCTIONAL MATERIALS, NOV 2023,33(47),10.1002/adfm.202306952;

    [13]   Xiao, Z; Dai, XY; Jiang, DT; Xie, HG; Liu, XP; Wu, ML; Liu, DM; Li, Y; Qian, ZF*; Wang, RH*, “3D Nanocellulose Matrix Enhancing the Lithiation Dynamics of FePS3 Anode”, ADVANCED FUNCTIONAL MATERIALS, NOV 2023,33(45),10.1002/adfm.202304766;

    [14]   Peng, HR; Wang, RH*; Mei, L; Zhang, QY; Ying, T; Qian, ZF*; Farimani, AB; Voiry, D; Zeng, ZY*, “Transition metal dichalcogenide-based functional membrane: Synthesis, modification, and water purification applications”, MATTER, JAN 4, 2023, 6(1): 59-96, 10.1016/j.matt.2022.09.019;

    [15]   Miao, LC; Wang, RH; Di, SL; Qian, ZF; Zhang, L; Xin, WL; Liu, MY; Zhu, ZQ; Chu, SQ; Du, Y; Zhang, N, “Aqueous Electrolytes with Hydrophobic Organic Cosolvents for Stabilizing Zinc Metal Anodes”, ACS NANO, JUN 28,2022,16(6):9667-9678,10.1021/acsnano.2c02996;(高被引论文)

    [16]   Yin, Z; Li, Y; Xu, J; Qian, ZF*; Xiong, K, “Recent advances of perovskite materials for surface enhanced Raman scattering and their applications”, MATERIALS TODAY PHYSICS, OCT 2022,27:100815,10.1016/j.mtphys.2022.100815;

    [17]   Zhang Y, Wang S, Dong F, Sun Y, Sheng C, Ma K, Tian Z, Qian ZF, Wong C and Liu S*, “Mechanical Behavior and Constitutive Model Characterization of Optically Clear Adhesive in Flexible Devices”, Micromachines 2022, 13, 301. https://doi.org/10.3390/mi13020301;

    [18]   Yang, KS; Liu, DY; Qian, ZF*; Jiang, DT; Wang, RH*, “Computational Auxiliary for the Progress of Sodium-Ion Solid-State Electrolytes”, ACS NANO, NOV 23,2021,15(11):17232-17246,10.1021/acsnano.1c07476;

    [19]   Zhang Z, Liu S*, Ma K, Chen Z, Qian ZF and Lee NC, “Anisotropic constitutive model coupled with damage for Sn-rich solder: Application to SnAgCuSb solder under tensile conditions”, Int J Damage Mechanics, 2021, DOI: 10.1177/10567895211045111;

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