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个人简介

教育经历 2011.10-2012.3 英国雷丁大学 访学 2001.09 - 2006.06,南京大学,化学化工学院高分子化学与物理,硕博连读,导师:陈庆民教授 1997.09 - 2001.07 南京大学,化学化工学院化工系,学士 工作经历 2019.07- 南京信息工程大学,化学与材料学院 化学系,副教授 2006.06–2019.06,南京信息工程大学,环境科学与工程学院 化学系,副教授

研究领域

1. 环境材料 Environmental material 2. 表面材料制备及应用 Preparation of low surface energy material and its application

近期论文

查看导师最新文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Yan Guo*, Mingdong Chen, Jun Li, Guizhi Gao,Effect of vermiculite dispersion in poly(lactic acid) preparation and its biodegradability,Polymer Science Series B, 2016, 58(1): 47-53 Yubao Xiong, Min Lai*, Jun Li, Haibo Yong, Hongzhi Qian, Chaoqi Xu, Kun Zhong, Shaorong Xiao, Facile synthesis of ultra-smooth and transparent TiO2 thin films with superhydrophilicity, Surface & Coatings Technology, 2015, 265, 78-82 Yan Guo*, Jun Li, Mingdong Chen, Guizhi Gao, Facile synthesis of vanadium pentoxide@carbon core-shell nanowires for high-performance supercapacitors, Journal of Power sources, 2015, 273, 804-809 Min-dao Zhang*, Yan Jiao, Jun Li, Min-dong Chen*, Chiral four-fold interpenetrating 2D cadmium networks based on two achiral ligands, Mendeleev Communications, 2015, 25, 65-66 郭彦*, 李俊, 何辉, 赵健伟, 不同链长直链烷基硫醇自组装的吸附动力学, 分析科学学报, 2014, 30(1), 39-43 Chengguo Liu*, Jun Li, Wen Lei , Yonghong Zhou*, Development of biobased unsaturated polyester resin containing highly functionalized castor oil, Industrial Crops and Products, 2014, 52: 329-337 周永慧*, 李俊, 王正梅, 王铖铖, 李天一, 张松, 于明波, 孙鹏, 王丽丽,郑佑轩*, 含空穴传输基团三联吡啶(2,2′∶6′,2″-terpyridine)衍生物铕配合物的合成及发光性能研究, 无机化学学报, 2013, 29(4): 701-708 Yong-Hui Zhou, Jun Li, Tao Wu, Xiao-Peng Zhao, Qiu-Lei Xu, Xi-Li Li*, Ming-Bo Yu, Li-Li Wang, Peng Sun, You-Xuan Zheng*, Photoluminescent and ferroelectric properties of a chiral rhenium(I) complex based on the chiral (–)-4,5-pinene-2,2′-bipyridine ligand, 2013, 29: 18-21 Changhong Su*, Jun Li, The friction property of super-hydrophobic cotton textiles. Applied Surface Science 2010, 256, (13), 4220-4225 Changhong Su, Jun Li, Hongbin Geng, Qingjun Wang ,Qingmin Chen*, Fabrication of Optically Transparent Super-hydrophobic Surface Via Embedding Nano-silica, Applied Surface Science,2006, 253:2633-2636.

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