郑定山


个人简介

郑定山,1981年生,理学博士,副教授,硕士生导师,湖北省教育厅人才工程项目入选者。主要从事低维光电探测器、半导体物理与微纳电子器件等方面的研究。近年来主持省部级科研项目2项,参与国家自然科学基金、湖北省自然科学基金创新群体计划项目等项目多项Advanced Functional MaterialsACS NanoNano LettersNanophotonicsIEEE Transactions on Electron Devices等国际权威期刊上发表论文30余篇,论文他引1000余次。已授权国家发明专利1项。

 

教育/工作经历:

20222 - 至今     长江大学,物理与光电工程学院,副教授

20177 - 20221  长江大学,物理与光电工程学院,讲师

20149 - 20176  武汉大学,凝聚态物理专业,博士学位,导师:廖蕾教授

20077 - 20146  长江大学工程技术学院助教、讲师

20049 - 20076   广西大学,理论物理专业,硕士学位,导师:郭进教授

20009 - 20046   长江大学,理学专业,学士学位

 

科研项目情况:

1. 湖北省“楚天学者计划人才项目,主持,2019

2. 湖北省自然科学基金-创新群体项目(2023AFA025),参与,2023年;

3. 湖北省高等学校优秀中青年科技创新团队计划项目(T2020008)参与,2020年;

4. 国家自然科学基金-专项项目(11947077),参与,2020年;

5. 湖北省自然科学基金面上项目(2018CFB567),主持,2019年;

6. 湖北省教育厅项目(B2019040),主持,2019年;

7. 国家自然科学基金面上项目(61674157,参与,2017年;

8 中国科学院上海技术物理研究所创新专项(CX-49),主持,2016年。

代表性论文:(发表论文 > 30篇,引用次数 > 1000截止时间202512月)

[1] S. H. Fang, W. J. Zha, M. J. Zou, X. F. Gao, J. Z. Deng, L. J. Hu, C. J. Dai, N. Cheng, D. S. Zhu, L. Jiang, Y. -H. Liao, D. S. Zheng*, W. X. Yang*, High-performance bilayer In-Ga-Zn-Sn-O thin-film transistors with moderate oxygen doping at room temperature. IEEE Transactions on Electron Devices, 2025, 72(7): 3617-3623.

[2] W. J. Zha, S. H. Fang, X. F. Gao, M. J. Zou, J. Z. Deng, L. J. Hu, D. S. Zheng*, Y. H. Liao*, Tin doping enhanced carrier mobility and stability in amorphous IGZTO thin film transistors. Journal of Electronic Materials, 2025, 54(9): 7702-7708.

[3] X. F. Gao, S. H. Fang, W. J. Zha, C. J. Dai, N. Cheng, D. S. Zhu, L. Jiang, D. S. Zheng*, Y. -H. Liao*, W. -X. Yang*, Ferroelectric localized field enhanced cadmium sulfide nanoribbon photodetectors. IEEE Photonics Technology Letters, 2025, 37(13), 733736.

[4] N. Cheng*, W. W. Li, H. Pan, D. S. Zheng,W. -X. Yang*, Promote the performance of carbon electrode based perovskite solar cells with Cu2GeS3 hole transporting layer, Chemical Engineering Journal, 2024, 489, 151463.

[5] C. J. Dai*, X. L. Li, W. -X. Yang*, Y. Chen, D. S. Zheng, N. Cheng, T. Shui, H. F. Zhang, Z. Y. Li*, Dynamic wavelength-selective diffraction and absorption with direct-patterned hydrogel metagrating, Advanced Science, 2024, 11(46), 2408960.

[6] R. R. Yu, X. F. Gao, S. H. Fang, W. J. Zha, M. J. Zou, J. Z. Deng, X. X. Yu, L. Jiang, N. Cheng, Y. Xiong, Y. -H. Liao*, D. S. Zheng*, W. -X. Yang*, Top-gated HfO2-capped InP nanowire photodetector with low noise and high detectivity. IEEE Photonics Technology Letters, 2024, 36(10), 657660.

[7] L. Li, S. H. Fang, R. R. Yu, R. L. Chen, H. L. Wang, X. F. Gao, W. J. Zha, X. X. Yu, L. Jiang, D. S. Zhu, Y. Xiong, Y. -H. Liao, D. S. Zheng*, W. X. Yang* and J. S. Miao*, Fast near-infrared photodetectors from p-type SnSe nanoribbons. Nanotechnology, 2023, 34(24): 245202.

[8] X. F. Gao, G. H. Liu, X. K. Hu, L. L. Chen, B. C. Zhu*, D. S. Zheng*, and Y. H. Liao*, DFT-based study of the structure, stability, and spectral and optical properties of gas-phase NbMgn (n = 2−12) clusters. ACS Omega, 2023, 8(44): 41391–41401.

[9] R. L. Chen, L. Li, L. Jiang, X. X. Yu, D. S. Zhu, Y. Xiong, D. S. Zheng*, W. X. Yang*, Small-diameter p-type SnS nanowire photodetectors and phototransistors with low-noise and high-performance. Nanotechnology, 2022, 33(13), 135707.

[10] H. Zhang, L. li, D. S. Zheng, Y. Xiong, C. Yu, H. Yin, Z. Yi, X. X. Yu*, W. X. Yang*, Broadband photodetector based on vapor-deposited selenium self-supporting films. Ceramics International, 2022, 48, 2775027757.

[11] Y. Y. Liu, Z. Wang, L. J. Li, S. F. Gao, D. S. Zheng, X. X. Yu, Q. F. Wu, Q. Yang, D. S. Zhu, W. X. Yang, Y. Xiong*. Highly efficient quantum-dot-sensitized solar cells with composite semiconductor of ZnO nanorod and oxide inverse opal in photoanode, Electrochimica Acta, 2022, 412, 140145.

[12] D. S. Zheng, H. L Wang, R. L. Chen, L. Li, J. X. Guo, Y. Gu, M. M. Zubair, X. X. Yu, L. Jiang, D. S. Zhu, Y. Xiong, H. Zhang, W. X. Yang*, J. S Miao*, High-detectivity Tin disulfide nanowire photodetectors with manipulation of localized ferroelectric polarization field. Nanophotonics, 2021, 10(18), 4637−4644.

[13] J. N. Zan, S. L. Wang, D. S. Zheng, F. S. Li, W. M. Chen, Q. M. Pei*, and L. Jiang*, Characterization and functional application of PrBa0.5Sr0.5Co1.5Fe0.5O5+dcathode material for IT-SOFC. Materials Research Bulletin, 2021, 137, 111173.

[14] L. Jiang, Z. W. Zou; Q. M. Pei, D. S. Zheng, F. S. Li; Y. H. Tian, Structure and hydrogen storage properties of AB3type Re2Mg(Ni0.7-xCo0.2Mn0.1Alx)9(x=0-0.04) alloys. Materials for Renewable and Sustainable Energy, 2019, 8(2): 1-9.

[15] D. S. Zheng, H. H. Fang, M. S. Long*, F. Wu, P. Wang, F. Gong, X. Wu, J. C. Ho, L. Liao*, W. D. Hu *, High-Performance Near-Infrared Photodetectors Based on p-type SnX (X= S, Se) Nanowires Grown via Chemical Vapor Deposition, ACS Nano, 2018, 12, 7239-7245.

[16] D. S. Zheng, J. L. Wang, W. D. Hu*, L. Liao*, H. H. Fang, N. Guo, P. Wang, F. Gong, X. D. Wang, Z. Y. Fan, X. Wu, X. J. Meng, X. S. Chen, W. Lu, When Nanowires Meet Ultrahigh Ferroelectric Field−High-Performance Full-Depleted Nanowire Photodetectors. Nano Letters, 2016, 16, 2548-2555.

[17] D. S. Zheng, H. H. Fang, P. Wang, W. J. Luo, F. Gong, J. C. Ho, X. S. Chen, W. Lu, L. Liao*, J. L. Wang*, W. D. Hu*, High-Performance Ferroelectric Polymer Side-Gated CdS Nanowire Ultraviolet Photodetectors. Advanced Functional Materials, 2016, 26, 7690-7696.

 

发明专利:

1. 胡伟达, 王建禄, 郑定山, 骆文锦, 王鹏, 陈效双, 陆卫. 全耗尽铁电侧栅单根纳米线近红外光电探测器, 国家发明专利, 授权公告号: 206282869U

 

主要社会及学术兼职及学术交流:

担任Applied Physics LettersIEEE Transactions on Electron DevicesInfrared Physics and TechnologyJournal of Applied PhysicsNanotechnology等期刊审稿专家

 

指导研究生:

陈若玲光学工程硕士,2019级)

李龙光学工程硕士,2020级)

余燃燃光学工程硕士,2021级)

高晓风物理学硕士,2022级)

查雯静(电子信息硕士,2022级)

方苏慧光学工程硕士,2022级)

邹米捷光学工程硕士,2023级)

邓九洲(电子信息硕士,2023级)

胡隆杰(电子信息硕士,2024级)

蔚文杰(电子信息硕士,2025级)

曾钰翔(电子信息硕士,2025级)

 

联系方式:dszheng82@163.com

 

长江大学物理与光电工程学院 地址:湖北荆州市荆州区学苑路1号长江大学东校区 邮编:434023 办公室电话:0716-8060967