累计发表SCI检索论文近20篇,申请和授权发明专利10余项。
代表性论文
[1] Shen W#, Wu G#, Li L J, Li H, Liu S*, Shen S N*, Zou D W. Fluorine-terminated diamond (110) surfaces for nitrogen-vacancy quantum sensors [J]. Carbon, 2022, 193: 17-25.
[2] Wu G#, Wang Q J#, Wu Y X, Sun X, Liao J, Pan J H, Chen M H, Kasu M, Liu S*. Evolution of defects, morphologies and fundamental growth characteristics of CVD diamond films induced by nitrogen addition[J]. Materials Today Communications, 2020, 25: 101504.
[3] Wang Q J#, Wu G#, Newhourse-Illige T A, Shepard A W, Greer J A, Gan Z Y, Feng G, Liu S*. Heteroepitaxial diamond film deposition on KTaO3 substrates via single-crystal iridium buffer layers[J]. Diamond and Related Materials, 2020, 110: 108117.
[4] Wang Q J#, Wu G#, Liu S*, Gan Z Y*, Yang B, Pan J H. Simulation-based development of a new cylindrical-cavity microwave-plasma reactor for diamond-film synthesis[J]. Crystals, 2019, 9(6): 320.
[5] Wu G, Chen M H*. The influence of seed crystals on the quality of single-crystal diamond produced by a microwave plasma CVD method[J]. New Carbon Materials, 2018, 33(1): 88-96.
[6] Wu G*, Chen M H, Liao J. The influence of recess depth and crystallographic orientation of seed sides on homoepitaxial growth of CVD single crystal diamonds[J]. Diamond and Related Materials, 2016, 65: 144-151.
[7] Li R, Wu G, Liang K, Wang S Z, Sun X, Han X, Xue L H, Li H*, Liu S*. Effects of AlN substrate orientation on crystalline quality of wurtzite GaN films investigated via molecular dynamics [J]. Computational Materials Science, 2021.
[8] Li R, Wu G, Liang K, Wang S Z, Xue L H, Sun Y M, Dong F, Li H*, Liu S*. Indenter radius effect on mechanical response of a-(11–20), c-(0001), and m-(-1100) plane GaN single crystals in nanoindentation: A molecular dynamics study[J]. Materials Science in Semiconductor Processing, 2022, 145: 106648.
[9] Xue L H, Feng G, Wu G, Wang S Z, Li R, Han X, Sun Y M, Liu S*. Study of the deposition of nanopillar-patterned 4H-SiC by molecular dynamics simulation[J]. Applied Surface Science, 2022, 579: 152209.
[10] Dong F, Li R, Wu G, Liang K, Li G L, Nie Y T, Gan Z Y, Cao Q, Wang X H, Zhao Q Z, Liu S*. An investigation of aluminum nitride thin films patterned by femtosecond laser[J]. Applied Physics Letters, 2020, 116(15): 154101.
代表性专利
[1] 刘胜, 沈威, 吴改, 郭宇铮, 梁康, 汪启军, 王诗兆. 一种基于CVD法的应变金刚石生长掺杂方法, 2022-1-5, 中国, ZL202210003968.4 (已授权)
[2] 刘胜, 沈威, 吴改, 梁康, 郭宇铮, 汪启军, 王诗兆. 一种基于MBE法的应变金刚石生长掺杂方法及外延结构, 2022-1-5, 中国, ZL202210003978.8 (已授权)
[3] 刘胜, 吴改, 汪启军, 东芳, 曹强, 甘志银. 一种具有晶体结构检测及原位修复功能的装置, 2020-8-6, 中国, ZL202010783693.1 (已授权)
[4] 刘胜, 吴改, 东芳, 汪启军, 甘志银, 曹强. 可在线/原位监测的微波等离子体化学气相沉积设备, 2020-4-9, 中国, ZL202010272658.3 (已授权)
[5] 刘胜, 吴改, 汪启军, 东芳, 曹强, 甘志银. 一种高效调控CVD单晶金刚石局部区域位错密度的方法, 2019-11-8, 中国, ZL201911086509.1 (已授权)
[6] 刘胜, 翁跃云, 雷诚, 吴改. 一种化学气相沉积监控系统及方法, 2019-7-5, 中国, ZL201910603330.2 (已授权)
[7] 曹强, 聂阳天, 刘胜, 吴改, 彭庆. 一种包含拉曼光谱原位测量腔的化学气相沉积装置, 2019-2-22, 中国, ZL201910131157.0 (已授权)
主要科研项目
[1] 国家自然科学基金重大科研仪器研制项目 “薄膜生长缺陷跨时空尺度原位/实时监测与调控实验装置” (部级推荐), 6500万元, 核心骨干成员.
[2] 国家自然科学基金青年科学基金项目 “CVD单晶金刚石薄膜位错缺陷的选区调控方法研究”, 24万元, 主持.
[3] 广东省区域联合基金重点项目 “n型掺杂金刚石半导体单晶材料制备及关键技术研究”, 100万元, 参与.