龙江游
近期热点
资料介绍
个人简历
教育工作经历2008.09-2012.07,清华大学,机械工程系,本科2012.09-2017.07,清华大学,材料学院,博士2014.08-09,日本新东工业集团,访问学生2015.07-08,英国曼彻斯特大学,访问学生 在研课题负责人,国家自然科学基金青年科学基金,“冷凝微滴自驱动微纳多级结构的超快激光定向电结晶复合制造技术研究”,27万(2019年-2021年)负责人,广东省普通高校特色创新项目,10万(2018-2020年)负责人,广东省自然科学基金博士启动项目,10万(2018-2020年)负责人,广东工业大学机电学院种子基金,15万(2019年)课题骨干,国家重点研发计划,“超快激光高精密去除技术与装备”子课题“面向IC的超快激光精细抛光技术与制造新方法”,项目总经费2708万(2018-2021年)参与,国家自然科学基金面上项目,“超快激光微纳加工复合热氧化制备自支撑金属氧化物纳米线多尺度图案化结构与功能化研究”,74.6万(2016-2019年)已结题参研课题参与,国家自然科学基金重大国际(地区)合作研究项目,“高耐久性大面积金属表面微纳米结构的激光制备新原理及阳光大角度入射高效吸收应用基础研究”,260万(2013-2017年)参与,科技部973计划课题,“激光微纳制造新方法和尺度极限基础研究”,项目总经费3600万(2011-2016年)专利专著(1) 钟敏霖, 龙江游, 张红军. 一种超疏水高粘附金属表面及其制备方法, 授权号:CN 104439708 B(2) 参编《表面工程学》第二版(机械工业出版社,曾晓雁、吴懿平主编)获奖2015年,GE基金会科技创新大赛二等奖(全国共3人)2017年,第39届MATADOR先进制造国际学术会议(英国,曼彻斯特)“BEST Paper Award”(最佳论文奖)国家奖学金(2次),其他综合奖学金若干,清华大学“一二九”辅导员奖,清华大学优秀本科生党支部书记等研究领域
激光微纳加工""近期论文
Long, J.; Weng, Q.; Hong, W.; Cao, Z.; Zhou, P.; Xie, X. Fast Water Flow in Laser Micromachined Microgrooves with Nonuniform Surface Wettability. Exp. Therm. Fluid Sci. 2019, 103, 9-17. (IF 3.204, 2区)He, Z.; Xie, X.; *Long, J. Antireflective Copper Surfaces Fabricated by Low-Cost Nanosecond Lasers for Efficient Photothermal Conversion and Desalination. J. Laser Appl. Accepted. (IF 1.597, 4区)Long, J.; Cao, Z.; Lin, C.; Zhou, C.; He, Z.; Xie, X. Formation Mechanism of Hierarchical Micro- and Nanostructures on Copper Induced by Low-Cost Nanosecond Lasers. Appl. Surf. Sci. 2019, 464, 412–421. (IF 4.439, 2区)Long, J.; He, Z.; Zhou, P.; Xie, X.; Zhou, C.; Hong, W.; Hu, W. Low-Cost Fabrication of Large-Area Broccoli-Like Multiscale Micro- and Nanostructures for Metallic Super-Hydrophobic Surfaces with Ultralow Water Adhesion and Superior Anti-Frost Ability. Adv. Mater. Interfaces 2018, 5, 1800353. (IF 4.834, 2区)Long, J.; He, Z.; Zhou, C.; Xie, X.; Cao, Z.; Zhou, P.; Zhu, Y.; Hong, W.; Zhou, Z. Hierarchical Micro- and Nanostructures Induced by Nanosecond Laser on Copper for Superhydrophobicity, Ultralow Water Adhesion and Frost Resistance. Mater. Des. 2018, 155, 185-193. (IF 4.525, 2区)Long, J.; Zhou, C.; Cao, Z.; Xie, X.; Hu, W. Incubation Effect During Laser-Induced Backside Wet Etching of Sapphire Using High-Repetition-Rate Near-Infrared Nanosecond Lasers. Opt. Laser Technol. 2019, 109, 61–70. (IF 2.503, 3区)Long, J.; Fan, P.; Jiang, D.; Han, J.; Lin, Y.; Cai, M.; Zhang, H.; Zhong, M. Anisotropic Sliding of Water Droplets on the Superhydrophobic Surfaces with Anisotropic Groove-Like Micro/Nano Structures. Adv. Mater. Interfaces 2016, 3, 1600641. (IF 4.834, 2区)Long, J.; Pan, L.; Fan, P.; Gong, D.; Jiang, D.; Zhang, H.; Li, L.; Zhong, M. Cassie-State Stability of Metallic Superhydrophobic Surfaces with Various Micro/Nanostructures Produced by a Femtosecond Laser. Langmuir 2016, 32, 1066-1072. (IF 3.789, 2区, 被引 35次)Long, J.; Zhong, M.; Fan, P.; Gong, D.; Zhang, H. Wettability Conversion of Ultrafast Laser Structured Copper Surface. J. Laser Appl. 2015, 27, S29107. (IF 1.597, 4区, 被引 26次)Long, J.; Fan, P.; Gong, D.; Jiang, D.; Zhang, H.; Li, L.; Zhong, M. Superhydrophobic Surfaces Fabricated by Femtosecond Laser with Tunable Water Adhesion: From Lotus Leaf to Rose Petal. ACS Appl. Mater. Interfaces 2015, 7, 9858-9865. (IF 8.097, 1区, 被引 73次)Long, J.; Fan, P.; Zhong, M.; Zhang, H.; Xie, Y.; Lin, C. Superhydrophobic and Colorful Copper Surfaces Fabricated by Picosecond Laser Induced Periodic Nanostructures. Appl. Surf. Sci. 2014, 311, 461-467. (IF 4.439, 2区, 被引 46次)Long, J.; Zhong, M.; Zhang, H.; Fan, P. Superhydrophilicity to Superhydrophobicity Transition of Picosecond Laser Microstructured Aluminum in Ambient Air. J. Colloid Interface Sci. 2015, 441, 1-9. (IF 5.091, 2区, 被引 58次) 相关热点