东北大学理学院导师教师师资介绍简介-郭迪
本站小编 Free考研网/2020-03-23
郭 迪
个人简介
郭迪,女,工学博士,讲师。2006-2015年于湖南大学微纳技术研究中心分别获得本、硕、博学位。2015–2017年由中国博士后科学基金资助,在东北大学理学院物理化学流动站进行为期两年的博士后研究。2017年,加入东北大学理学院化学系。主要从事复合纳米材料的合成及电化学储能特性的研究。作为负责人主持国家自然科学基金委青年项目一项,博士后基金2项,并在Nano Energy,Journal of Materials Chemistry A, J Power Sources, RSC Advances等SCI期刊上发表论文二十余篇。
研究兴趣:
1.金属氧化物纳米阵列赝电容材料制备及电容器构建;
2.基于石墨烯及氮掺杂石墨烯的柔性电极材料和电化学储能;
3.金属氧化物电催化材料的设计与应用(电催化析氢,氧还原)
联系方式:
地址:辽宁省沈阳市和平区文化路3-11号东北大学理学院化学系
Fax:
E-mail:guodi@mail.neu.edu.cn
代表性论文:
1.Jinwang Geng, Yinjian Ye,Di Guo*, Xiaoxia Liu. Concurrent Electropolymerization of Aniline and Electrochemical Deposition of Tungsten Oxide for Supercapacitor.Journal of Power Sources, 2017 (342) 980-989;IF: 6.395;
2.Di Guo, Shuo Dou, Xiu Li, Jiantie Xu, Shuangyin Wang, Linfei Lai, Huakun Liu, Jianmin Ma, Shi Xue Dou. Hierarchical MnO2/rGO Hybrid Nanosheets as an Efficient Electrocatalyst for the Oxygen Reduction Reaction.International Journal of Hydrogen Energy, 2016 (41) 5260-5268;IF: 3.582 ;
3.Di Guo, Weiji Ren, Zhi Chen, Minglei Mao, Qiuhong Li, Taihong Wang.NiMoO4nanowire@MnO2nanoflake core/shell hybrid structure aligned on carbon cloth for high-performance supercapacitors.RSC Advances, 2015, 5: 10681-10687;IF: 3.108;
4.Di Guo, Yazi Luo, Xinzhi Yu, Qiuhong Li, Taihong Wang. High performance NiMoO4nanowires supported on carbon cloth for symmetric supercapacitors.Nano Energy, 2014, 8: 174-182;IF: 12.343;
5.Di Guo, Xinzhi Yu, Shi Wei, Yazi Luo, Qiuhong Li, Taihong Wang. Facile synthesis of well-ordered manganese oxide nanosheet arrays on carbon cloth for high-performance supercapacitors.Journal of Materials Chemistry A, 2014, 2: 8833-8838;IF: 8.867;
6.Di Guo, Ping Zhang, Haiming Zhang, Xinzhi Yu, Jian Zhu, Qiuhong Li, Taihong Wang. NiMoO4nanowires supported on Ni foam as novel advanced electrodes for supercapacitors.Journal of Materials Chemistry A, 2013, 1: 9024-9027;IF: 8.867 ;
7.Di Guo, Haiming Zhang, Xinzhi Yu, Ming Zhang, Ping Zhang, Qiuhong Li, Taihong Wang. Facile synthesis and excellent electrochemical properties of CoMoO4nanoplate arrays as supercapacitors.Journal of Materials Chemistry A, 2013, 1: 7247-7254;IF: 8.867