姓 名:童金辉 出生年月:1978年3月 职称职务:教授、博士生导师
学科专业:物理化学、材料科学 E-mail:jinhuitong@nwnu.edu.cn jinhuitong@126.com
【个人简历】
2010年获中国科学院兰州化学物理研究所博士学位,2012-2014年在中国科学院大连化学物理研究所从事博士后研究。主要研究方向为绿色催化和清洁能源相关电催化。获西北师范大学第三届青年教师教学技能大赛二等奖,甘肃省第三届青年教师教学技能大赛优秀奖,西北师范大学第二、三届“教学科研之星”称号和第55、56届教育实习优秀指导教师称号。近年主持国家自然科学基金项目3项,甘肃省自然科学基金项目1项,甘肃省高等学校科研项目1项,西北师范大学青年教师科研能力提升计划项目一项,获甘肃省高校科技进步一、三等奖各1项,甘肃省自然科学奖三等奖1项;在《Chemical Engineering Journal》、《Journal of Catalysis》、《Journal of Power Sources》、《ACS Sustainable Chemistry& Engineering》、《Inorganic Chemistry》《Catalysis Science &Technology》、《Electrochimica Acta》等期刊发表论文三十余篇,申请发明专利9件,获授权7件。
【研究领域和兴趣】
主要从事清洁能源相关电催化方面的研究,研究内容包括新型功能化碳材料、过渡金属氧化物、磷化物、硫(硒)化物和多功能复合催化剂的设计、构建及其在催化阴极氧还原反应、电解水析氢/析氧反应、金属-空气电池、燃料电池和电解水中的应用。
【承担的科研项目】
1. 国家自然科学基金地区基金项目:量子点尺寸下新型尖晶石析氧电催化剂的构建及表面重构机制研究(5216020193);
2. 国家自然科学基金青年基金项目:磁性纳米铁酸盐复合氧化物的可控制备及催化性能研究(51302222);
3. 国家自然科学基金地区基金项目:杂多酸盐/有机配合物杂化材料协同效应及催化纤维素绿色选择氧化(21363021);
4 甘肃省自然科学基金青年科技基金计划:磁性纳米铁酸盐复合氧化物的可控制备及催化环己烷氧化(1308RJYA017);
5. 甘肃省高等学校科研项目:二氧化钛/铁酸盐复合光催化剂的可控构建及催化典型有机污染物的光降解(2014B.021)。
【教学】
主讲课程《物理化学》、《物理化学实验》、《理化测试II》等课程。
【代表性论文】
1. Zhang Yuning, Shi Wenping, Bo Lili, Shen Yuxing, Ji Xiaochao, Xia Liucheng, Guan Xiaolin, Wang Yuxia, Tong Jinhui*, Electrospinning construction of heterostructural Co3W3C/CoP nanoparticles embedded in N, P-doped hierarchically porous carbon fibers as excellent multifunctional electrocatalyst for Zn-air batteries and water splitting, Chemical Engineering Journal, 2022, 431, 134188.
2. Shi Wenping, Zhang Yuning, Bo Lili, Guan Xiaolin, Wang Yuxia, Tong Jinhui*, Ce-substituted spinel CuCo2O4 quantum dots with high oxygen vacancies and greatly improved electrocatalytic activity for oxygen evolution reaction, Inorganic Chemistry, 2021, 60 (24), 19136-19144.
3. Zhang Yuning, Kong Deyuan, Bo Lili, Shi Wenping, Guan Xiaolin, Wang Yuxia, Lei zhibin*, Tong Jinhui*, Electrospinning preparation of N, P dual-doped molybdenum carbide/porous carbon fibers with highly improved electrocatalytic activity for hydrogen evolution reaction, ACS Applied Energy Materials 2021, 4 (11), 13051-13060.
4. Jinhui Tong*, Wenmei Ma, Lili Bo, Tao Li, Wenyan Li, Yuliang Li, Qi Zhang, Nitrogen-doped hollow carbon spheres as highly effective multifunctional electrocatalysts for fuel cells, Zn–air batteries, and water-splitting electrolyzers, Journal of Power Sources, 2019, 441, 227166.
5. Jinhui Tong*, Yuliang Li, Lili Bo, Wenyan Li, Tao Li, Qi Zhang, Deyuan Kong, Huan Wang, and Chunyan Li, CoP/N-doped carbon hollow spheres anchored on electrospinning core-shell N-doped carbon nanofibers as efficient electrocatalysts for water splitting, ACS Sustainable Chemistry & Engineering, 2019, 7, 17432-17442.
6. Jinhui Tong*, Wenyan Li, Lili Bo, Yuliang Li, Tao Li, Qi Zhang, Simple preparation of Ni2P/Ni(PO3)2 inlayed in nitrogen-sulfur self-doped ultrathin holey carbon nanosheets with excellent electrocatalytic activities for water splitting, Electrochimica Acta, 2019, 320, 134579.
7. Jinhui Tong*, Tao Li, Lili Bo, Wenyan Li, Yuliang Li, Qi Zhang, Greatly improved HER electrocatalytic activity by the composite of CoSe2 and N, S-dual doped graphitic carbon, International Journal of Hydrogen Energy, 2019, 44, 13424-13431.
8. Jinhui Tong*, Tao Li, Lili Bo, Wenyan Li, Yuliang Li, Yi Zhang, Porous nitrogen self-doped carbon wrapping iron phosphide hollow spheres as efficient bifunctional electrocatalysts for water splitting, ChemElectroChem, 2019, 6, 3437–3444.
9. Jinhui Tong*, Yuliang Li, Lili Bo, Wenhui Wang, Tao Li and Qi Zhang, Core-shell Fe3O4@NCS-Mn derived from chitosan-Schiff based Mn complex with enhanced catalytic activity for oxygen reduction reaction, Catalysts, 2019, 9, 692.
10. Jinhui Tong*, Wenyan Li, Lili Bo, Jiangping Ma, Tao Li, Yuliang Li, Qi Zhang, Haiyan Fan, Composite of hierarchically porous N-doped carbon/carbon nanotube with greatly improved catalytic performance for oxygen reduction reaction, ACS Sustainable Chemistry & Engineering, 2018, 6, 8383−8391.
11. Jinhui Tong *, Wenyan Li, Lili Bo, Wenhui Wang, Yuliang Li, Tao Li, Qi Zhang , Haiyan Fan, Simple synthesis of nitrogen-doped carbon spheres as a highly efficient metal-free electrocatalyst for the oxygen reduction reaction, Chinese Journal of Catalysis, 2018, 39, 1138–1145.
12. Jinhui Tong*, Wenyan Li, Jiangping Ma, Wenhui Wang, Lili Bo, Ziqiang Lei, and Abdulla Mahboob, Nitrogen and sulfur dual self-doped graphitic carbon with highly catalytic activity for oxygen reduction reaction, ACS Applied Energy Materials, 2018, 1, 5746−5754.
13. Jinhui Tong*, Wenyan Li, Bingjie Wei, Lili Bo, Qing Li, Yuliang Li, Tao Li, Qi Zhang, Facile preparing composite of CoSe2 wrapping N-doped mesoporous carbon with highly electrocatalytic activity for hydrogen evolution reaction, International Journal of Hydrogen Energy, 2018, 43, 17021-17029.
14. Jinhui Tong*, Wenmei Ma, Wenhui Wang, Jiangping Ma, Wenyan Li, Lili Bo, Haiyan Fan, Nitrogen/phosphorus dual-doped hierarchically porous graphitic biocarbon with greatly improved performance on oxygen reduction reaction in alkaline media, Journal of Electroanalytical Chemistry, 2018, 809, 163–170.
15. Jinhui Tong*, Qing Li , Wenhui Wang , Wenmei Ma , Wenyan Li Bitao Su , Lili Bo, MoS2 thin sheet growing on nitrogen self-doped mesoporous graphic carbon derived from ZIF-8 with highly electrocatalytic performance on hydrogen evolution reaction, ACS Sustainable Chemistry & Engineering, 2017, 5, 10240–10247.
16. Jinhui Tong*, Wenhui Wang, Lingdi Su, Qing Li, Fangfang Liu, Wenmei Ma, Ziqiang Lei, Lili Bo, Highly selective oxidation of cyclohexene to 2-cyclohexene-1-one over polyoxometalate/metal organic framework hybrids with greatly improved performances, Catalysis Science &Technology, 2017, 7, 222–230.
17. Jinhui Tong*, Wenhui Wang, Qing Li, Fangfang Liu, Wenmei Ma, Wenyan Li, Bitao Su, Ziqiang Lei, Lili Bob, Composite of FeCo alloy embedded in biocarbon derived from eggshell membrane with high performance for oxygen reduction reaction and supercapacitor, Electrochimica Acta, 2017, 248, 388–396.
18. Jinhui Tong*, Wenyan Li, Lili Bo, Huan Wang, Yusen Hu, Zhixia Zhang, Abdulla Mahboob, Selective oxidation of styrene catalyzed by cerium-doped cobalt ferrite nanocrystals with greatly enhanced catalytic performance, Journal of Catalysis, 2016, 344, 474–481.
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