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陈明明
发布日期:2019-08-27   浏览次数:
姓  名陈明明
职务职称:副教授、硕士生导师
研究方向:半导体光电探测器/传感器;光电成像/传感系统
研究生招生专业:电子科学与技术、物理学、电子信息(2-3名)
E-mailandychain@live.cn
通信地址江苏省镇江市学府路301号江苏大学物理与电子工程学院(212013)
 
● 2005/09-2009/06,佛山科学技术学院,本科
● 2009/09-2014/06,中山大学,硕博连读,博士
● 2014/07-2018/04,江苏大学理学院物理系,讲师
● 2016/02-2017/02,佛罗里达州立大学,访问学者
● 2017/12-2019/12,东南大学,博士后
● 2019/08-今,澳门大学,访问学者
● 2018/05-今,江苏大学理学院物理系,副教授

Advance Materials, Applied Physics Letters, ACS Applied Electronic Materials等期刊审稿人

● 半导体物理与器件(本科)
● 大学物理(本科)
● 大学物理实验(本科)
● 高等半导体物理(研究生)

● 粤港澳智能微纳光电技术联合实验室 开放课题,2023.01-2023.12,主持
● 粤港澳智能微纳光电技术联合实验室 开放课题,2022.01-2022.12,主持
● 江苏大学农业装备学部 开放课题,2022.01-2023.09,主持
● 国家自然科学基金:基于石墨烯衬底van der Waals薄膜气-液-固外延生长的高质量氧化锌制备,2017.01-2019.12,主持
● 江苏大学“青年英才培育计划”青年骨干教师:2017.07-2020.06,主持
● 江苏省高校自然科学研究面上项目:2015.07-2017.06主持
● 江苏大学高级人才启动基金:2015.06-2018.06,主持

[30] Sixue Chen, Pu Qin, Jianxing Yang, Mingming Chen*, Qianqian Du*, Youchao Kong, Yuan Liu, Dawei Cao*. Ferroelectricity in the Al doped HfO2. Journal of Alloys and Compounds. 2023, 965, 171456.
[29] Peiyu Cheng, Tong Zhao, Mingming Chen,* Sixue Chen, Xuemin Shen, Yuan Liu, Shikuan Yang, Zhanguo Chen, Xiuxiu Dong,* Quan Wang,* and Dawei Cao*. Improved Perovskite CH3NH3PbI3 Thin Films by ZIF-67 Additive Assisted Co Ion Doping toward High-Performance and Stable Photodetectors. Adv. Optical Mater. 2023, 2300757
[28] Peiyu Cheng, Jing Qiu, Tong Zhao, Yuling Wang, Mingming Chen*, Huimin Zhang, Yuan Liu, Dawei Cao*, Xiuxiu Dong*, Quan Wang*. Improved performance and stability in CH3NH3PbI3/Si heterojunction photodetectors realized by ZIF-67 additive assisted Co ion doping. Applied Physics Letters. 2023, 123, 033301
[27] Xuemin Shen#, Zhichen Wu#, Wendong Lu#, Mingming Chen*, Peiyu Cheng, Sixue Chen, Yuan Liu, Quan Wang, Dawei Cao*. Improved self-powered photodetection of ferroelectric PbZr0.52Ti0.48O3 thin films via interfacial engineering. The Journal of Physical Chemistry C. 2022, 126, 18617-18622. (#equal contribution)
[26] Jing Cai#, Tong Zhao#, Mingming Chen*, Jiayun Su, Xuemin Shen, Yuan Liu, and Dawei Cao*. Ion Migration in the All-Inorganic Perovskite CsPbBr3 and Its Impacts on Photodetection. The Journal of Physical Chemistry C. 2022, 126, 10007-10013. (#equal contribution)
[25] Mingming Chen, Youwen Yuan, Yuan Liu, Dawei Cao*, Chunxiang Xu*. High-quality all-inorganic CsPbBr3 single crystals prepared by a facile one-step solution growth method. RSC Advances, 2022, 12, 14838.
[24] Peiyu Cheng, Mingming Chen*, Xuemin Shen, Sixue Chen, Yuan Liu, Dawei Cao, Quan Wang*. Heterojunction structure for suppressing dark current toward high-performance ZnO microrod metal-semiconductor-metal ultraviolet photodetectors. Micro and Nanostructures. 2022, 171, 207422.
[23] Xuemin Shen#, Siyi Chen#, Yuhe Liu#, Mingming Chen*, Han Lei, Jing Cai, Jiayun Su, Shuaiheng Yang, Yuan Liu, Quan Wang, Dawei Cao*, and Chunxiang Xu*. Realization of self-powered bidirectional photoresponse in the ultraviolet/visible wavelength region in ferroelectric heterojunctions. Applied Physics Letters. 120, 091107 (2022). (#equal contribution)
[22] Mingming Chen, Xuemin Shen, Chen Zhou, Dawei Cao*, and Wei Xue*, High-performance self-powered visible-blind ultraviolet photodetection achieved by ferroelectric PbZr0.52Ti0.48O3 thin films. Journal of Alloys and Compounds. 897, 163208 (2022).
[21] Xuemin Shen#, Shuaiheng Yang#, Mingming Chen*, Jiayun Su, Jing Cai*, Peiyu Cheng, Yuan Liu, Quan Wang, and Dawei Cao, Interfacial Engineering with Aluminum Oxide toward an Improved Self-Powered Narrowband Visible-Light Photodetection in Lead Halide Perovskite CH3NH3PbBr3/p-Si Heterojunctions. Advanced Materials Interfaces. 2022, 9, 2102305. (#equal contribution)
[20] Youwen Yuan, Mingming Chen*, Shuaiheng Yang, Xuemin Shen, Yuan Liu, Dawei Cao*, Guichuan Xing*, and Zikang Tang, Improved CsPbBr3 visible light photodetectors via decoration of sputtered Au nanoparticles with synergistic benefits. Nano Select. 3, 178-187 (2022).
[19] Shuaiheng Yang, Mingming Chen*, Xuemin Shen, Youwen Yuan, Yuan Liu, Quan Wang, Dawei Cao*, Self-powered narrowband visible-light photodetection enabled by organolead halide perovskite CH3NH3PbBr3/p-Si heterojunction. Applied Physics Letters. 119, 121107 (2021).
[18] Mingming Chen, Shuaiheng Yang, Youwen Yuan, Xuemin Shen, Yuan Liu, Quan Wang, Dawei Cao*, and Chunxiang Xu*, Thermal Quenching and Antiquenching of Photoluminescence in Solution-Grown Cs4PbBr6 Perovskite Single Crystals. The Journal of Physical Chemistry C. 125, 11278-11284 (2021).
[17] Mingming Chen, Youwen Yuan, Xinyue Zhang, Xiaoying Wang, Dongchuan Xu, Yuan Liu, Dawei Cao*, Guichuan Xing*, and Zikang Tang, Boosting the performance of ZnO microrod metal-semiconductor-metal photodetectors via surface capping of thin amorphous Al2O3 shell layer. Nanotechnology, 31. 485207 (2020).
[16] Youwen Yuan, Mingming Chen*, Shuaiheng Yang, Xuemin Shen, Yuan Liu, Dawei Cao*, Exciton recombination mechanisms in solution grown single crystalline CsPbBr3 perovskite. Journal of Luminescence, 226, 117471 (2020).
[15] Mingming Chen, Youwen Yuan, Zhaokun Wang, Xuemin Shen, Yuan Liu*, and Dawei Cao*, Optical Property Behaviors of CsPbBr3 Colloidal Nanoparticles in a Ligand-Assisted Reprecipitation Process. Crystal Growth & Design, 20, 4855-4860 (2020).
[14] Yuan Liu, Tiantian Shi, Tao Chen, Weijia He, Mingming Chen⁎, Dawei Cao⁎, The naked-eye NH3 sensor based on fluorinated graphene. Sensors and Actuators B- Chemical, 281, 789-794 (2019).
[13] Yuan Liu, Peng Shen, Laihe Feng, Yan Wu, Mingming Chen⁎, Yuanyuan Sun, Qian Feng, Dawei Cao⁎, Mutual modulation of F-distribution and N-configuration in F and N dual-functionalized graphene. Applied Surface Science, 465, 880-887 (2019).
[12] X. Shen, M. Chen∗, L. Shi, F. Chen, Y. Liu∗, D. Cao, C. Xu. Lasing behaviors in solution processed all-inorganic CsPbBr3 perovskite microsized crystals, Optics Communications 453 (2019) 124354.
[11] Y. Liu, J. Chen, X. Li, Y. Shi, M. Chen*, D. Cao*, Fluorination of graphene oxide at ambient conditions, Diam. Relat. Mater. 91 (2019) 107-111.
[10] MM Chen, X Shan, T Geske, JQ Li, ZB Yu*. Manipulating Ion Migration for Highly Stable Light-Emitting Diodes with Single Crystalline Organometal Halide Perovskite Microplatelets, ACS NANO. 11 (2017) 6312–6318.
[9] YP Zhao#, CC Li#, MM Chen*, X Yu, YW Chang, AQ Chen, H Zhu*, ZK Tang*, Growth of aligned ZnO nanowires via modified atmospheric pressure chemical vapor deposition, Physics Letters A 380 (2016) 3993-3997 (# equal contribution).
[8] MM Chen*, Y Zhu*, AQ Chen, Z Shen, ZK Tang*, Optical investigations of Be doped ZnO films grown by molecular beam epitaxy, Materials Research Bulletin 78 (2016) 16-19.
[7] MM Chen*#, DY Yong#, CX Wu, Z Shen, AQ Chen, Y Zhu*, BC Pan*, ZK Tang*, Stabilization of BeZnO alloy by S incorporation: a density functional theory investigation, Journal of Alloys and Compounds 658 (2016) 636-641. (# equal contribution)
[6] Y Su#, M Chen#, L Su, Y Zhu*, Z Tang*, Comparative study on beryllium and magnesium as a co-doping element for ZnO:N, Chinese Physics B 25 (2015) 066106 (# equal contribution).
[5] MM Chen, Y Zhu*, X Ji, AQ Chen, LX Su, Z Shen, CL Yang, R Xiang, XC Gui, F Huang, and ZK Tang*, The role of Be incorporation in the modulation of the N doping ZnO, Journal of Alloys and Compounds 622 (2014) 719-724.
[4] MM Chen, Y Zhu*, LX Su, AQ Chen, X Ji, R Xiang, XC Gui, TZ Wu, BC Pan, and ZK Tang*, Formation behavior of BexZn1−xO alloys grown by plasma-assisted molecular beam epitaxy, Applied Physics Letters 102 (2013) 202103.
[3] MM Chen, Y Zhu*, LX Su, QL Zhang, R Xiang, XC Gui, TZ Wu, XZ Cao, P Zhang, BY Wang, and ZK Tang*, Suppression of oxygen vacancies in Be alloyed ZnO, Journal of Alloys and Compounds 577 (2013) 179–182.
[2] MM Chen, R Xiang*, LX Su, QL Zhang, JS Cao, Y Zhu, XC Gui, TZWu, and ZK Tang*, Stabilization of p-type dopant nitrogen in BeZnO ternary alloy epitaxial thin film, Journal of Physics D: Applied Physics 45 (2012) 455101.
[1] MM Chen, QL Zhang, LX Su, YQ Su, JS Cao, Y Zhu, TZ Wu, XC Gui , CL Yang, R Xiang*, and ZK Tang*, ZnO film with ultra-low background electron concentration grown by plasma assisted MBE using Mg film as the buffer layer, Materials Research Bulletin 47 (2012) 2673–2675.
 
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