一、代表性研究项目 1. 联盟计划,LM2017040,掺杂模板调控合成石墨烯及其调控PA热熔胶材料阻燃性能研究,2017.06-2018.12,50万元,在研,主持 2. 国家自然科学基金青年项目,21306113,铁/介孔氧化硅核壳颗粒的碳模板法合成及催化性能研究,2014/01-2016/12,25万元,已结题,主持 3. 上海市科委浦江人才项目,13PJ1407400,多孔薄壁纳米石墨笼的合成及其电化学特性,2013/08-2015/07,20万元,已结题,主持 4. 技术开发项目,J2016-312用于锂电池导电剂空心石墨球的技术开发等2项,2016.12-2017.11,共20万元,已结题,主持 5. 上海市教育委员会科技创新项目,13YZ118,新型超级电容器电极材料多孔壁碳纳米笼的制备,2013.01-2015.12,8万元,已结题,主持 二、代表性论文及成果 [1] Z. M. Sheng,C. Y. Hong, N. N.Li, et al.,Graphitic nanocages prepared with optimized nitrogen-doped structures by pyrolyzing selective precursors towards highly efficient oxygen reduction, Electrochimica Acta, 2018, 259, 1104-1109. [2] Z. M. Sheng, M. H. Hu, X. Y. Dai, et al., High-performance supercapacitor based on nanocages with nanoporous thin-walled graphitic shells. Micropor. Mesopor. Mater. 2016, 234, 224-229. [3]Z. M. Sheng, X. J. Chang, et al., Doping-template Approach of Porous-walled Graphitic Nanocages for Superior Performance Anodes of Lithium Ion Batteries. RSC Adv. 2017, 7, 42083-42087. [4] N. N. Liǂ, Z. M. Shengǂ*, H. L. Tian, et al., In situ approach of cementite nanoparticles encapsulated with nitrogen-doped graphitic shells as anode nanomaterials for Li-ion and Na-ion batteries. RSC Adv. 2018, 8, 33030–33034. [5] C. Y. Hong, Z. M. Sheng*, M. H. Hu, et al., Thin-walled Graphitic Nanocages with Nitrogen-doping as Superior Performance Anodes for Lithium-ion Batteries. RSC Adv.2016, 6, 59896-59899. [6] Z. M. Sheng, C. X. Guo, C. M. Li, Nitrogen-doping templated nanoporous graphitic nanocage and its supported catalyst towards efficient methanol oxidation. Electrochem. Commun.2012, 19, 77-88 |