
基本情况
姓名:秦戬
政治面貌:中共党员
职称:副教授
电话:15822195797
毕业学校:天津大学
Emial:qinjian@xaut.edu.cn

学习与工作情况:
2008.09—2012.07南京工业大学材料学院,金属材料,学士
2012.09—2018.01天津大学材料学院,材料学,博士导师:何春年(国家杰青)
2018.06-至今 西安理工大学材料学院(李喜飞教授组),副教授
2023-至今 澳门青年学者,合作导师:揭建胜

研究方向:
高比能锂金属二次电池

获得荣誉:
2019天津市优秀博士学位论文
2019陕西省高校科协青年托举人才
2021陕西省自然科学二等奖,排名第三
2021中国石油与化工协会科技进步二等奖,排名第三
2022澳门青年学者

基金项目:
1、国家自然科学基金青年项目,主持,已结题
2、陕西省高校科协青年托举人才计划项目,主持,已结题
3、陕西省国际合作项目,主持,在研
4、西安市科技局项目,主持,在研
5、西安理工大学校科技新星项目,主持,在研

研究成果:
近年来以第一作者或通讯作者身份已在能源领域的国际期刊Angew. Chem., Adv. Mater.等发表SCI检索论文40余篇,7篇论文进入ESI Top 1%,总被引2000+,代表性论文如下:
1.Li,J.;Qin, J.*;Dai,M.;Chen, Y.;Xiao,W.;Li, W.;Wang, J.;Li. X.*,Synchronous Interfacial Chemistry via a Fluorine-Free Bifunctional Additive for Ultrastable Aqueous Zinc-Iodine Batteries.Angew.Chem.Int.Ed.2026,e7649417.
2.Yu,K.;Qin, J.*;Zhang,H.;Zhang, S.;Cao, Y.;Xie, C.;Yang, H.;Xiao, W.;Li, W.;Zhang,G.;Luo, Y.;Cao, G.;Wang, J.;Li. X.*,Tailoring the First/Second Coordination Layer of FeNi Single Atoms with Nucleophile Atoms to Boost Oxygen Electrocatalysis for Zinc-Air Batteries.Adv. Energy Mater.2025, 15, 2501091.
3.Qin, J., Wang,T.*;Dai,M.;Wu, N.;Chen, S.;Zhang,X.*;Li, X.*;Jie,J.*,Bilateral Helmholtz Plane Tailoring in Low-Concentration Electrolytes for Practical Zinc-Vanadium Batteries.ACS Energy Lett. 2025, 10,5613-5624.
4.Dai, M.;Qin, J.*;Li,J.;Chen, Y.;Zhang, S.;Xiao, W.;Yang, H.;Li, W.;Wang, J.;Li. X.*,Steric-hindrance weak-solvation electrolytes enable simultaneous stabilization of Zn anodes and vanadium cathodes in practical aqueous Zinc-vanadium batteries,Energy Storage Mater.2026,90,105411,
5.Shan, H.;Qin, J.*;Ding, Y.;Sari,H.M.K.;Song,X.;Liu,W.;Hao,Y.;Wang,J.;Xie,C.;Zhang,J.;Li, X.*, Controllable Heterojunctions with Semi-coherent Phase Boundary Boosting the Potassium Storage of CoSe2/FeSe2.Adv.Mater.2021,2102471.(入选ESITop1%).
6.Shan,H.;Qin, J.*;Wang, J.;Sari,H.M.K.;Lei, L.;Xiao, W.;Li, W.;Xie,C.;Yang,H.;Luo,Y.;Zhang,G.;Li, X.*,Doping-inducedelectronic/ionicengineering tooptimize theredoxkinetics forpotassiumstorage: Acasestudy of Ni-doped CoSe2.Adv.Sci.2022,2200341.(入选ESITop1%)
7.Qin, J.; Wang, T.; Liu, D.; Liu, E.; Zhao, N.; Shi, C.; He, F.; Ma, L.; He, C*., A Top-Down Strategy toward SnSb In-Plane Nanoconfined 3D N-Doped Porous Graphene Composite Microspheres for High Performance Na-ion Battery Anode.Adv.Mater.2018,1704670.(入选ESITop1%)
8.Qin, J.; He, C. N.*; Zhao, N. Q.; Wang, Z. Y.; Shi, C. S.; Liu, E. Z.; Li, J. J., Graphene Networks Anchored with Sn@Graphene as Lithium Ion Battery Anode.ACS Nano2014,8(2), 1728-1738.(入选ESITop1%)
9.Zhou, J. W.#;Qin, J.#; Zhang, X.; Shi, C. S.; Liu, E. Z.; Li, J. J., Zhao, N. Q.; He, C. N.* 2D space-confined synthesis of few-layer MoS2 anchored on carbon nanosheet for lithium-ion battery anode.ACS Nano2015,9(4), 3837-3848.(入选ESITop1%)
10.Qin, J.; Sari, H. M. K.; Wang, X. J.; Yang, H. J.; Zhang, J. J.; Li, X. F.*; Controlled design of metal oxide-based (Mn+2/Nb+5) anodes for superior sodium-ion hybrid supercapacitors: Synergistic mechanisms of hybrid ion storage.Nano Energy2020,71,104594.(入选ESITop1%)
11.Jiao, Y. N.;Qin, J.*; Sari, H. M. K.; Li, D. J.; Li, X. F.*; Sun, X. L.*; Recent progress and prospects of Li-CO2batteries: Mechanisms, catalysts and electrolytes.Energy Storage Mater.2021,34, 148-170(入选ESITop1%)