研究领域与方向:
1.低维纳米材料、结构及传感器(气体传感器、电化学传感器、应变传感器等);
2.纳米材料、结构与储能器件(超级电容器、锂离子电池、锂硫电池等)。
任现职以来,作为项目负责人主持科研项目多项,包括国家自然科学基金、上海市自然科学基金面上项目、重要产学研课题、专利技术成果转让、上海交通大学医工交叉项目、上海交通大学人才项目(上海交通大学晨星学者C类)等。
自入职以来,在Nano Energy、NPG Asia Materials(Nature series)、Scientific Report(Nature series)、Journal of Power Sources、Journal of Materials Chemistry A、Chemical Communications、Nanoscale、Carbon、Electrochimica Acta、Sensors and Actuators B: Chemical等国际SCI期刊上发表相关文章60余篇,总引用次数810余次,H Index为15;以第一作者或通讯作者发表SCI论文25篇,其中中科院分区1区论文9篇,2区论文10篇,以第一作者发表SCI论文6篇,以通讯作者发表影响因子10以上论文1篇,影响因子大于5以上论文9篇,ESI高被引论文3篇。同时,申请发明专利25项,其中已授权10项,技术转让1项。
于2012年荣获上海交通大学晨星学者(C类)荣誉,在低维纳米材料微纳结构调控及其器件应用领域积累了丰富的研究经验及理论。
2017年
1. 石墨烯基长效防腐水性材料
2. 石墨烯导电剂
2016年
1. 超/大尺寸氧化石墨烯及其产业化
2017年
1. Three-dimensional structures of graphene/polyaniline hybrid films constructed by steamed water for high-performance supercapacitors, Journal of Power Sources
2. Rational design of sandwiched polyaniline nanotube/layered graphene/polyaniline nanotube papers for high-volumetric supercapacitors
2016年
1. High-performance flexible all-solid-state supercapacitors based on densely-packed graphene/polypyrrole nanoparticle papers
2. Steamed water engineering mechanically robust graphene films for high-performance electrochemical capacitive storage
3. Three-dimensional skeleton networks of graphene wrapped polyaniline nanofibers: an excellent structure for high-performance flexible solid-state supercapacitors
4. Reduced graphene oxide/polypyrrole nanotube papers for flexible all-solid-state supercapacitors with excellent rate capability and high energy density
5. Densely-packed graphene/conducting polymer nanoparticle papers for high-volumetric-performance flexible all-solid-state supercapacitors
2015年
1. Free-standing functional graphene reinforced carbon films with excellent mechanical properties and superhydrophobic characteristic
2014年
1. Facile Preparation and Characterization of Free-standing Stiff Carbon-based Composite Films with Excellent Performance
2. Ultrafast and sensitive room temperature NH3 gas sensors based on chemically reduced graphene oxide