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葛勇杰 Ge Yongjie 副教授

所属学院:化学与材料工程学院

导师类别:硕士生导师

科研方向:功能纳米材料,柔性光电器件,电化学催化

联系方式:geyongjie1220@126.com

招生学院:化学与材料工程学院


个人简述

葛勇杰,博士,讲师。主要从事功能纳米材料的合成及应用,柔性光电器件的组装,电化学催化剂的设计以及催化机理的模型构建等方面的研究,到目前为止在J. Am. Chem. Soc.、 J. Phys. Chem. C 、ACS Appl. Nano Mater.、J. Mater. Chem. A.等国际学术期刊发表SCI论文10篇,授权多项国家专利。

学科领域

功能纳米材料,柔性光电器件,电化学催化

教育背景

2015.09-2020.10 湖南大学 化学专业 理学博士

2018.12-2020.07 美国加州大学洛杉矶分校(UCLA) 联培博士

(导师:段镶锋)

2010.09-2013.06 湖南师范大学 无机化学专业 理学硕士

2006.09-2010.06 周口师范学院 化学专业 理学学士

工作经历

2021.04-至今 温州大学 讲师

2013.07-2015.05 江门科恒实业股份有限公司 研发工程师&项目经理

科研项目

[1]国家自然科学基金青年项目(主持):

《低表面粗糙度及高粘附力Ag-NW透明电极的制备及应》(2022-2024)

知识产权

1.胡家文(导师第一),葛勇杰,段曦东,段镶锋;一种改性银纳米线透明导电膜及提高纳米线透明导电膜的导电性和抗氧化性的方法;申请号:CN2017 1 0559786.4

2.胡家文(导师第一),葛勇杰,段曦东,段镶锋,韩梅; 一种提高银纳米线透明导电膜的载流子传输性能的方法; 专利号:ZL2019 1 0500403 .5

3.葛勇杰,陈茜,陈涛,万国江;含碱土金属元素的焦磷酸盐荧光粉的共沉制备方法、荧光粉及应用;专利号:ZL2015 1 0119694.5

4.廉世勋(导师第一),葛勇杰,靳春艳,陈丽虹,杨爽,黄烈兰,周萌;一种制备三元硫化物和四元硫氧化物荧光粉的方法;专利号:ZL 2012 1 0462362.3

5.邱忠贤,廉世勋,葛勇杰,余丽萍,荣春英;硫化铈红色颜料的制备方法;专利号:ZL2011 1 0382817.6

主要论文

2023

[7]. Dong, A. R.; Lin, Y.; Guo, Y. Y.; Chen, D. D.; Wang, X.;Ge, Y. J.; Li, Q. P.; Qian, J. J., Immobilization of iron phthalocyanine on MOF-derived N-doped carbon for promoting oxygen reduction in zinc-air battery. Journal Of Colloid And Interface Science. 2023, 650, 2056-2064.

[6]. Luo, W. J.; Wu, S. L.; Jiang, Y. Y.; Xu, P.; Zou, J. X.; Qian, J. J.; Zhou, X. M.;Ge, Y. J.; Nie, H. G.; Yang, Z., Efficient Electrocatalytic Nitrate Reduction to Ammonia Based on DNA-Templated Copper Nanoclusters. Acs Applied Materials & Interfaces. 2023, 15 (15), 18928-18939.

[5]. Mao, L. J.;Ge, Y. J.; Chen, D. D.; Yang, Y. D.; Xu, S. J.; Xue, J. H.; Xiao, K. K.; Zhou, X. M.; Qian, J. J.; Yang, Z., Ligand-induced hollow MOF-derived carbon nanomaterials with abundant Fe species for efficient oxygen reduction. Science China-Materials. 2023, 66 (6), 2257-2265.

[4]. Wang, X.; Zhang, Z.;Ge, Y. J.; Shen, K.; Qian, J. J., Few-Layer Ag-Coated Ordered Mesoporous Pt Nanocrystals for Ethanol Oxidation. Small Structures. 2023.

[3]. Huo, W. J.; Zhou, X. M.; Jin, Y. W.; Xie, C. Q.; Yang, S.; Qian, J. J.; Cai, D.;Ge, Y. J.; Qu, Y. Q.; Nie, H. G.; Yang, Z., Rhenium Suppresses Iridium (IV) Oxide Crystallization and Enables Efficient, Stable Electrochemical Water Oxidation. Small. 2023, 19 (19).

[2]. Jin, Y. W.; Huo, W. J.; Zhou, X. M.; Zhang, L. B.; Li, Y.; Yang, S.; Qian, J. J.; Cai, D.;Ge, Y. J.; Yang, Z.; Nie, H. G., IrO<sub>2</sub>-Stablized La<sub>2</sub>IrO<sub>6</sub> perovskite nanotubes <i>via</i> corner-shared interconnections as highly-efficient oxygen evolution electrocatalysts. Chemical Communications. 2022, 59 (2), 183-186.

[1]. Yu, S.; Yang, S.; Cai, D.; Nie, H. G.; Zhou, X. M.; Li, T. T.; Liang, C.; Wang, H. H.; Dong, Y. Y.; Xu, R.; Fang, G. Y.; Qian, J. J.;Ge, Y. J.; Hu, Y.; Yang, Z., Regulating <i>f</i> orbital of Tb electronic reservoir to activate stepwise and dual-directional sulfur conversion reaction. Infomat. 2023, 5 (1).


2022

[3]. Li, T. T.; Cai, D.; Yang, S.; Dong, Y. Y.; Yu, S.; Liang, C.; Zhou, X. M.;Ge, Y. J.; Xiao, K. K.; Nie, H. G.; Yang, Z., Desolvation Synergy of Multiple H/Li-Bonds on an Iron-Dextran-Based Catalyst Stimulates Lithium-Sulfur Cascade Catalysis. Advanced Materials. 2022, 34 (51).

[2]. Chen, Q. Q.; Zhou, X. M.; Zhang, X. D.; Luo, W. J.; Yang, S.;Ge, Y. J.; Cai, D.; Nie, H. G.; Yang, Z., Pd/PdO Electrocatalysts Boost Their Intrinsic Nitrogen Reduction Reaction Activity and Selectivity via Controllably Modulating the Oxygen Level. Acs Applied Materials & Interfaces. 2022, 14 (18), 20988-20996.

[1]. Dong, Y. Y.; Cai, D.; Li, T. T.; Yang, S.; Zhou, X. M.; Ge, Y. J.; Tang, H.; Nie, H. G.; Yang, Z., Sulfur Reduction Catalyst Design Inspired by Elemental Periodic Expansion Concept for Lithium-Sulfur Batteries. Acs Nano. 2022, 16 (4), 6414-6425.


2021

[2]. Mei Zhu, Moxia Li, Mengke Su, Jianfang Liu, Bingwu Liu,Yongjie Ge,* Honglin Liu,* and Jiawen Hu*,Can "Hot Spots" Be Stable Enough for Surface-Enhanced Raman Scattering. J. Phys. Chem. C. 2021, 125, 13443-13448

[1]. Jianfang Liu;Yongjie Ge(共同一作); Dumeng Zhang; Mei Han; Moxia Li; Meng Zhang; Xidong Duan; Zhilin Yang; Jiawen Hu, Plasma Cleaning and Self-Limited Welding of Silver Nanowire Films for Flexible Transparent Conductors. ACS Appl. Nano Mater. 2021, 4, 2, 1664–1671.


2020

[3]. Mei Han;Yongjie Ge; Jianfang Liu; Zhongzhong Cao; Moxia Li; Xidong Duan; Jiawen Hu,Mixed Polyvinyl Pyrrolidone Hydrogel-mediated Synthesis of High-quality Ag Nanowires for High-performance Transparent Conductors. J. Mater. Chem. A. 2020,8, 21062-21069.IF=11.3

[2]. Ying Cui; Yi Tang; Shanji Fan;Yongjie Ge; Mei Han; Jianfang Liu; Moxia Li; Jiawen Hu, Bulk Phase-Encoded Gold Nanoparticles: The Fourth-Generation Surface-Enhanced Raman Scattering Tag for Hg2+ Ion Detection. J. Phys. Chem. C. 2020,124, 19267-19272.IF = 4.2

[1]. Weiqing Kong; Xidong Duan;Yongjie Ge; Hongtao Liu; Jiawen Hu; Xiangfeng Duan, Holey graphene hydrogel with in-plane pores for high-performance capacitive desalination. Nano Res. 2016, 9 (8), 2458-2466. IF=7.994


before 2020

[5]. Yongjie Ge; Jianfang Liu; Xiaojun Liu; Jiawen Hu; Xidong Duan; Xiangfeng Duan, Rapid Electrochemical Cleaning Silver Nanowire Thin Films for High Performance Transparent Conductors. J. Am. Chem. Soc.2019, 141, 12251-12257.IF=14.75

[4]. Mengjuan Mi; Xiaojun Liu; Weiqing Kong;Yongjie Ge; Weiqi Dang; Jiawen Hu, Hierarchical composite of N-doped carbon sphere and holey graphene hydrogel for high-performance capacitive deionization. Desalination 2019,464, 18-24.IF=6.05

[3]. Xiaojun Liu; Qi Yang; Mengjuan Mi; Weiqing Kong;Yongjie Ge; Jianmin Ma; Jiawen Hu,Fe1-xS/reduced graphene oxide composite as anode material for aqueous rechargeable Ni/Fe batteriesJ. Alloys. Compd. 2019, 800, 99-106. IF=4.17

[2]. Yongjie Ge; Xidong Duan; Meng Zhang; Lin Mei; Jiawen Hu; Wei Hu; Xiangfeng Duan, Direct Room Temperature Welding and Chemical Protection of Silver Nanowire Thin Films for High Performance Transparent Conductors. J. Am. Chem. Soc.2018, 140 (1), 193-199.IF=14.75

[1]. Xiaojun Liu; Hui Liu; Mengjuan Mi; Weiqing Kong;Yongjie Ge; Jiawen Hu,Nitrogen-doped hierarchical porous carbon aerogel for high-performance capacitive deionizationSep. Sci. Technol. 2019,224, 44-50.IF = 5.1