个人简介
近年来,主持国家自然科学基金3项,中国博士后科学基金面上项目和特别资助项目2项、吉林省优秀青年人才基金项目1项,吉林省教育厅“十二五”和“十三五”科学技术研究项目各1项、校级项目4项。参与承担其它国家及部省级科研课题10余项。以第一作者或通讯作者在Advanced Materials、Progress in Materials Science、Materials Today、ACS Nano、Small、ACS AMI、Nanoscale等学术刊物发表仿生多功能表面及其微纳制造相关的SCI检索学术论文30余篇。其中,5篇论文在Small (IF=9.598)和Nanoscale (IF=7.233)等期刊上以封面形式发表;发表在Journal of Bionic Engineering上的论文被Web of Science评为“高被引论文”(单篇引用100余次)。已申请国家发明专利6项,已参与授权国家发明专利20余项。此外,其博士学位论文入选2015年吉林省优秀博士学位论文,2018入选吉林大学“优秀青年教师培养计划”,2019年入选吉林大学“培英计划”,2020年入选吉林大学“优青培育计划”。
2005.9-2009.6 德州学院 | 交通运输工程 | 本科毕业 | 学士学位
2009.9-2014.7 吉林大学 | 工程仿生学
工作经历
2020.09-至今,吉林大学 工程仿生教育部重点实验室,教授/博导
2018.11-2019.12 ,宾夕法尼亚大学 材料科学与工程系, 访问学者/博导
2016.09-2020.09,吉林大学 工程仿生教育部重点实验室,副教授/硕导
2014.09-2016.09,吉林大学工程仿生教育部重点实验室,讲师
研究领域
[1]仿生陷光和抗反射表面及材料
[2]仿生防雾表面及材料
[3]仿生软体机器人
[4]水下仿生气膜减阻表面
近期论文
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Bionic anti-adhesive electrode coupled with maize leaf microstructures and TiO2 coating
Bio-inspired omnidirectional self-stable reflectors with multiscale hierarchical structures
Anti-adhesive property of maize leaf surface related with temperature and humidity
Long-term durability of superhydrophobic properties of butterfly wing scales after continuous contact with water
Flourishing Bio-inspired Anti-fogging Materials with Superwettability: Progresses and Challenges
Bio-inspired antifogging PDMS coupled micro-pillared superhydrophobic arrays and SiO2 coatings
High-performance flexible strain sensor with bio-inspired crack arrays
Superfast Liquid Transfer Strategy Through Sliding on a Liquid Membrane Inspired from Scorpion Setae
A flexible self-cleaning broadband antireflective film inspired by the transparent cicada wings
Rapid Fabrication of Bio-inspired Antireflection Film Replicating From Cicada Wings
High-aspect-ratio deflection transducers inspired by the ultra-sensitive cantilever configuration of scorpion trichobothria
Underwater writable and heat-insulated paper with robust fluorine-free superhydrophobic coatings
Advanced bio-inspired structural materials: Local properties determine overall performance. Materials Today. 2020,41 :177-199
Ascendant bioinspired antireflective materials: Opportunities and challenges coexist. Progress in Materials Science