陈伟津
教授
陈伟津
教育经历
2006年进入bat365在线平台网站逸仙班学习;2010获得bat365在线平台网站逸仙班物理学学士;2015年获得bat365在线平台网站凝聚态物理学博士学位。
工作经历
2015年7月-2018年8月,bat365在线平台网站中法核工程技术学院,讲师
2018年9月-2019年12月,bat365在线平台网站材料学院,讲师
2020年1月-2023年7月,bat365在线平台网站材料学院,副教授
2023年7月-至今,bat365在线平台网站材料学院 ,教授
教学情况
2015年-2019年,《Physics & Chemistry》,本科三年级;2018年-至今,《物理化学》,本科二年级;
2022年-至今,《电介质物理》,研究生
学科方向
固体功能微结构物理与力学,主要围绕电磁固体材料结构演化、材料性能力学设计及器件应用开展理论和实验研究。
荣誉获奖
1. 国家自然科学基金优秀青年科学基金(2022)
2. bat365在线平台网站第十届教师教学竞赛优胜奖(2022)
3. bat365在线平台网站材料学院第二届教师教学竞赛一等奖(2022)
代表论著
(1) Liu, L. J., Chen, W. J., Zheng, Y. Flexoresponses of synthetic antiferromagnetic systems hosting skyrmions. Physical Review Letters, 2022, 128: 257201.
(2) Zhang, Y. Q., He, Q., Chen, W. J., Tang, Z. Y., Xiong, W. M., Zhang, Y., Liu, L. J., Luo, X., Zheng, Y. Intriguing heterophase domain patterns in correlated electron material via tip force engineering. Acta Materialia, 2022, 235: 118089.
(3) Liu J. Y., Chen, W. J., Wu, M. J., Sun, F., Huang, X., Zheng, Y. Bidirectional mechanical switching window in ferroelectric thin films predicted by first-principle-based simulations. npj Computational Materials, 2022, 8: 137.
(4) Ding, L. L., Ji, Y., Zhang, X. Y., Wu, M. J., Zheng, Y., Wang, B., Chen, W. J., Exotic quad-domain textures and transport characteristics of self- assembled BiFeO3 Nanoislands on Nb-Doped SrTiO3. ACS Appl. Mater. Interfaces, 2021, 13: 12331.
(5) Xiong, W. M., Liu, L. J., Liu, J. Y., Chen, W. J., Zheng, Y. Phase field study on the performance of artificial synapse device based on the motion of domain wall in ferroelectric thin films. Applied Physics Letters, 2021, 118: 242902.
(6) Wu, Y. F., Wen, H. H., Chen, W. J., Zheng, Y. Microdynamic study of spin-lattice coupling effects on skyrmion transport. Physical Review Letters, 2021, 127: 097201.
(7) Liu, L. J., Chen, W. J., Zheng, Y. Skyrmion transport modified by surface terraces in magnetic multilayers. Physical Review Applied, 2021, 16: 014050.
(8) Chen, W. J., Liu, L. J., Zheng, Y. Ultrafast Ratchet Dynamics of Skyrmions by Defect Engineering in Materials with Poor Conductivity Under Gigahertz Magnetic Fields. Physical Review Applied, 2020, 14: 064014.
(9) Liu, L. J., Chen, W. J., Zheng, Y. Current-driven skyrmion motion beyond linear regime interplay between skyrmion transport and deformation. Physical Review Applied, 2020, 14: 024077.
(10) Ding, L. L., Ji, Y., Zhang, X. Y., Xiong, W. M., Chen, W. J., Zhang, B. M., Wang, B., Zheng, Y. Characterization and control of vortex and antivortex domain defects in quadrilateral ferroelectric nanodots. Physical Review Materials, 2019, 3: 104417.
(11) Ji, Y., Chen, W. J. , Zheng, Y. Crossover of polar and toroidal orders in ferroelectric nanodots with a morphotropic phase boundary and nonvolatile polar-vortex transformations. Physical Review B, 2019, 100: 014101.
(12) Jiang, G. L., Chen, Y., Ji, Y., Chen, W. J., Zhang, X. Y., Zheng, Y. Strong polarity asymmetry and abnormal mechanical electroresistance effect in the organic monolayer tunnel junction. ACS Applied Electronic Materials, 2019, 1: 1084.
(13) Chen, W. J., Liu, L. J., Ji, Y., Zheng, Y. Skyrmion ratchet effect driven by a biharmonic force. Physical Review B, 2019, 99: 064431.
(14) Liu, J. Y., Ji, Y., Yuan, S., Ding, L. L., Chen, W. J., Zheng, Y. Controlling polar-toroidal multi-order states in twisted ferroelectric nanowires. npj Computational Materials, 2018, 4: 78.
(15) Ma, L. L., Ji, Y., Chen, W. J., Liu, J. Y., Liu, Y. L., Wang, B., Zheng, Y. Direct electrical switching of ferroelectric vortices by a sweeping biased tip. Acta Materialia, 2018, 158: 23.
(16) Yuan, S., Chen, W. J., Ma, L. L., Ji, Y., Xiong, W. M., Liu, J. Y., Liu, Y. L., Wang, B., Zheng, Y. Defect-mediated vortex multiplication and annihilation in ferroelectrics and the feasibility of vortex switching by stress. Acta Materialia, 2018, 148: 330.
(17) Chen, W. J., Liu, J. Y., Ma, L. L., Liu, L. J., Jiang, G. L., Zheng, Y. Mechanical switching of ferroelectric domains beyond flexoelectricity. Journal of the Mechanics and Physics of Solids, 2018, 111: 43.
(18) Zheng, Y., Chen, W. J. Characteristics and controllability of vortices in ferromagnetics, ferroelectrics and multiferroics. Reports on Progress in Physics, 2017, 80: 086501.
(19) Chen, W. J., Zheng, Y., Feng, X., Wang, B. Utilizing mechanical loads and flexoelectricity to induce and control complicated evolution of domain patterns in ferroelectric nanofilms, Journal of the Mechanics and Physics of Solids, 2015, 79: 108.
(20) Chen, W. J., Zheng, Y. Vortex switching in ferroelectric nanodots and its feasibility by a homogeneous electric field: Effects of substrate, dislocations and local clamping force, Acta Materialia, 2015, 88: 41.