ZHU Guodong
Office: Room 105, Materials Building II
Email:gdzhu@fudan.edu.cn
Office Phone:021-65642872
From 2012- Dept. Materials science, fudan University, full professor
From 2007 to 2012 Dept. Materials science, fudan University, associate professor
From 2011 to 2012 UCLA, USA, visiting scholar
From 2005 to 2007 Dept. Materials science, fudan University, lecturer
From 2000 to 2005 Condensed Matter Physics, Tongji University, Ph.D.
From 1996 to 2000 Applied Physics, Tongji University, B.Sc.
Dr. Guodong Zhu (1978- ) is a full professor with the Department of Materials Science in Fudan University, Shanghai, China. He received his B.Sc. (2000) and Ph.D. (2005) degrees in condensed matter physics from Tongji University, China. He joined the department of Materials Science in Fudan University in 2005 and was promoted associate professor in 2007. He was a visiting scholar of the Electrical Engineering Department at UCLA during 2011. After that he has been a full professor with Fudan University since December, 2012. His research interest focuses on organic electronic materials and devices, including 1) ferroelectric/piezoelectric polymers and devices and 2) organic semiconducting materials and devices. He has published >50 journal papers and given >10 invited talks in both international and national academic conferences. Since 2016 Zhu has been member of academic committee of the Chinese National Conference on Electrets. Zhu is also a peer reviewer of several international journals, including Nature Communications, Advanced Functional Materials, Advanced Electronic Materials, ACS Applied Materials & Interfaces, IEEE Electron Device Letters, Nanoscale Research Letters, etc.
1. Ferro-/piezo-electric polymers and applications, including fabrication and process optimization of polymer films; performance enhancement of ferro-, piezo- and pyro-electric properties; ferroelectric memories; ferro-, piezo- and pyro-electric based sensors and energy harvesters.
2. Organic semiconducting materials and devices, including fabrication of high-performance semiconducting films and devices and their sensing applications
(1) Member of academic committee of the Chinese National Conference on Electrets (2016- )
(2) Peer reviewer of several international journals, including Nature Communications, Advanced Functional Materials, Advanced Electronic Materials, ACS Applied Materials & Interfaces, IEEE Electron Device Letters, etc.
Weilin Liu, Yixue Niu, Qiusong Chen, Hanxiao Jiang, Fan Xu, Guodong Zhu*, High-performance proximity sensors with nanogroove-template-enhanced extended-gate field effect transistor configuration, Adv. Electron. Mater., (2019) 1900586.
DOI: 10.1002/aelm.2019005862)Chiao-Tzu Wang, Bei Jiang, Ya-Wei Zhou, Tian-Wen Jiang, Jian-Hua Liu*, Guo-Dong Zhu*, and Wen-Bin Cai*, Exploiting the Surface-Enhanced IR Absorption Effect in the Photothermally Induced Resonance AFM-IR Technique toward Nanoscale Chemical Analysis, Anal. Chem., 91 (2019) 10541-10548.
Fan Xu, Dong Lin, Wei Xia, Weiyi Cao, Qiusong Chen, Qun Zhang∗, Guodong Zhu∗, Facile and solvent-free fabrication of highly oriented ferroelectric copolymer thin films and its application in ferroelectric field effect transistors, Organic Electronics, 64 (2019) 86–91.
Hui Wang, Chiao-Tzu Wang, Fan Xu, Jiang Yang, Jianhua Liu, Wenbin Cai∗, Guodong Zhu∗, Resistive switching and nanoscale chemical mapping of phase separation in PVDF/PMMA/F8T2 ternary thin films, Polymer, 153 (2018) 498–506.
Wei Xia, Qiusong Chen, Jian Zhang, Hui Wang, Qian Cheng*, Yulong Jiang*, Guodong Zhu*, Removable polytetrafluoroethylene template based epitaxy of ferroelectric copolymer thin films, Applied Surface Science, 437 (2018) 209–216.
Wei Xia, Christian Peter, Junhui Weng, Jian Zhang, Herbert Kliem,* Yulong Jiang,* Guodong Zhu*, Epitaxy of Ferroelectric P(VDF-TrFE) Films via Removable PTFE Templates and Its Application in Semiconducting/Ferroelectric Blend Resistive Memory, ACS Appl. Mater. Interfaces, 9(13) (2017) 12130-12137. DOI: 10.1021/acsami.7b01571.
Junhui Weng, Wei Xia, Jian Zhang, Weibo Chen, Qiusong Chen, Yulong Jiang*, Qian Cheng*, Guodong Zhu*, Dissipative Particle Dynamics Simulation of Phase Separation in Semiconducting/Ferroelectric Blend Resistive Films, Polymer, 116 (2017) 233-239. DOI: 10.1016/j.polymer.2017.04.001.
Zongyuan Fu, Wei Xia, Weibo Chen, Junhui Weng, Jian Zhang, Jianchi Zhang, Yulong Jiang*, Guodong Zhu*, Improved Thermal Stability of Ferroelectric Phase in Epitaxially Grown P(VDF-TrFE) Thin Films, Macromolecules, 49(10) (2016) 3818–3825.
Jinghang Hu, Jianchi Zhang, Zongyuan Fu, Junhui Weng, Weibo Chen, Shijin Ding,* Yulong Jiang,* and Guodong Zhu*, Fabrication of Electrically Bistable Organic Semiconducting/ Ferroelectric Blend Films by Temperature Controlled Spin Coating, ACS Appl. Mater. Interfaces, 7 (2015) 6325−6330.
Jinghang Hu, Jianchi Zhang, Zongyuan Fu, Yulong Jiang, Shijin Ding,* and Guodong Zhu*, Solvent Vapor Annealing of Ferroelectric P(VDF-TrFE) Thin Films, ACS Appl. Mater. Interfaces, 6 (2014) 18312−18318.11)Jian-Chi Zhang, Yu-Long Jiang*, Guo-Dong Zhu*, Guo-Ping Ru and Bing-Zong Li, Direct observation of dipole influence induced by a spin coated organic interfacial layer on effective Schottky barrier height modulation of Hg/Si contact. IEEE Electron Device Letters, 35(2) (2014) 262-264.12)Guodong Zhu*, Kin L. Wong, Jing Zhao, Pedram Khalili Amiri, Jian Zhu, Ilya Krivorotov, Kang L. Wang. Quantitative analysis of electric field induced change in anisotropy field in Co60Fe20B20/(011) xPb(Mg1/3Nb2/3)O3-(1-x)PbTiO3 (x~0.68) heterostructures. Applied Physics Letters. 101 (20) (2012) 202404-1-5.13)M. Bao, Guodong Zhu, K.L. Wong*, J. Hockel, M. Lewis, J. Zhao, T. Wu, P.K. Amiri, K.L. Wang. Magneto-electric tuning of the phase of propagating spin waves. Applied Physics Letters, 101 (2) (2012) 022409-1-3.14)S.S. Fu, H. Yu, X.Y. Luo, Y.L. Jiang, Guodong Zhu*. The influence of ultraviolet irradiation on polarization fatigue in ferroelectric polymer films. IEEE Electron Device Letters, 33(1) (2012) 95-97.15)Guodong Zhu*, Y. Cong, J.H. Zhang, X.Y. Luo, and X.J. Yan. The strong dependence of polarization fatigue on poling voltage conditions in ferroelectric vinylidene fluoride and trifluoroethylene copolymer films. IEEE Electron Device Letters, 31 (2010) 359-361.16)Guoodng Zhu*, X.Y. Luo, J.H. Zhang, X.J. Yan, and Y.L. Jiang*. Electrical fatigue in ferroelectric P(VDF-TrFE) copolymer films. IEEE Transactions on Dielectrics and Electrical Insulation, 17 (2010) 1172-1177.17)Guodong Zhu*, J.H. Zhang, X.Y. Luo, X.J. Yan. Microscopic characterization of polarization fatigue in ferroelectric vinylidene fluoride and trifluoroethylene copolymer films. Organic Electronics, 10 (2009) 753-760.18)Guodong Zhu*, Z.G. Zeng, L. Zhang and X.J. Yan. Polarization Fatigue in Ferroelectric Vinylidene Fluoride and Trifluoroethylene Copolymer Films. Applied Physics Letters 89 (2006) 102905-1-3.