副高职称
师资队伍
程勇

程勇(高级实验师)

一、个人简介

程勇,男,博士、高级实验师、硕士生导师、主要研究方向为SiC薄膜、高熵陶瓷材料。2017年获中南大学博士学位,先后参与国家自然科学基金项目4项。近来以第一作者或通信作者发表学术论文7篇。

二、代表性的项目

国家自然科学基金理论物理专项,11447169527nm强激光与Au靶相互作用中的受激布里渊散射研究,2015/01-2015/125万元,已结题,参与

国家自然科学基金天文联合项目,U1331101,超长伽玛暴的多波段观测特性和物理机制,2014/01-2016/1250万,已提交结题报告,参与

国家自然科学基金地区项目,11163003,伽玛暴瞬时辐射的多波段观测特性及其宇宙学演化,2012/01-2015/1256万,已结题,参与

国家自然科学基金地区项目,11064003,氟化类金刚石薄膜组分与表面形貌的调控及其疏水机理研究,2010/01-2013/1232万,已结题,参与

三、代表性的成果

1. Yong Cheng, Xiaozhong Huang, Zuojuan Du, Jianrong Xiao, Shan Zhou, Yongshan Wei, Microstructure and properties of SiC-coated carbon fibers prepared by radio frequency magnetron sputtering, Applied Surface Science, 2016, 369: 196-200. (SCI)

2. Yong Cheng, Xiaozhong Huang, Zuojuan Du, Jianrong Xiao, Effect of sputtering power on the structure and optical band gap of SiC thin films, Optical Materials, 2017, 73: 723-728. (SCI)

3. Zhaohan Fan, Yong Cheng*, Youzhi Luo, The structure and optical properties of C doped BNthin films deposited by RF reactive magnetron sputtering, Optical Materials, 2020, 110: 0-110502. (SCI)

4. Jianrong Xiao, Meng Qi, Chenyang Gong, Zhiyong Wang, Aihua Jiang, Jiafeng Ma, Yong Cheng, Crystal Structure and Optical Properties of Silver-doped Copper Nitride Films (Cu3NAg) Preparedby Magnetron Sputtering, Journal of Physics D: Applied Physics, 2018, 51(5). (SCI)

5. Bin Wang, Xinyu Li*, Yong Cheng**, Yaping Zeng, Ling Liu, Yong Chen, Ming Li, Jianrong Xiao, Boosting lithium–sulfur battery performance using a phosphating nano-sulfur anchored on graphene framework anode, Journal of Power Sources, 2023, 553 (232269). (SCI)

6. Chencheng Liu, Qingyun Chen*, Xuhai Li, Zhonggang Xiong, Jiaxin Han, Guoyong Yang, Ke Yang, Yuezhong Wang*, Yong Cheng*, Nan Jiang, Lowtemperature synthesis of a novel diboride ceramic with electromagnetic wave absorption properties, J Mater Sci: Mater Electron (2024) 35:287. (SCI)

7. Qinhu Xu, Xinyu Li*, Luchen Wu, Zhen Zhang, Yong Chen, Ling Liu, Yong Cheng*, Enlarged Interlayer Spacing of Marigold-Shaped 1T-MoS2 with Sulfur Vacancies via Oxygen-Assisted Phosphorus Embedding for Rechargeable Zinc-Ion Batteries, nanomaterials, 2023, 13, 1185. (SCI)

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