欢迎访问詹国武教授研究小组(A214课题组)
@华侨大学化工学院+先进碳转化技术研究院, Welcome to the A214Group website!
Dr. Xiao Jingran 肖静冉老师
教育背景
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2016年-2018 年 密歇根大学 联合培养 化学工程 (导师:Levi T. Thompson教授)
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2012年-2018年 天津大学 直博 化学工程与技术 (导师:李永丹教授)
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2008年-2012年 四川大学 本科 化学工程与工艺
研究经历
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化工过程含铁废液的提炼与再利用 (2011 成都)
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光催化反应系统搭建,完全水分解粉末光催化剂开发(2012-2014 天津)
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光电化学水分解光阳极材料研究(2014-2016 天津)
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化工反应系统装置的选型和安全防护(2017-2018 芬兰)
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光电化学能量转化的多重应用(2016-2018 美国)
仪器操作
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能量转化反应过程系统(反应器,真空系统,气相色谱)搭建、操作与维护
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催化剂表征设备:UV-vis 吸收/漫反射,FT-IR, GC, BET, XRD, SEM, ICP, 电化学工作站等
学术访问
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肖静冉,李永丹,复合结构ZnO/Pt/C3N4光阳极的光电性能研究,17th 全国催化会议, 杭州,中国,2014
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Jingran Xiao, Zhengmin Yu, Yongdan Li, Cobalt sulfide quantum dots modified TiO2 nanoparticles for efficient photocatalytic hydrogen evolution, 243th National Spring Meeting of the ACS, Dallas, US, 2014
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Jingran Xiao, Yongdan Li, A carbon quantum dot sensitized ZnO:Ga/ZnO multi–junction composite photoanode for photoelectrochemical water splitting, 2th EECAT, Tianjin, 2016.
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Jingran Xiao, Yongdan Li, Design of Photoelectrode for Water Splitting Utilizing Semiconductor Hetero-Junctions. 25th of North American Catalysis Society Meeting, Colorado, US, 2017
论文成果:
第一作者:
[1] Jingran Xiao, Huali Huang, Qiuyang Huang, Xiang Li, Xuelan Hou, Le Zhao, Rui Ma,Hong Chen1, Yongdan Li*, Remarkable improvement of the turn-on characteristics of a Fe2O3 photoanode for photoelectrochemical water splitting with coating a FeCoW oxy-hydroxide gel. Applied Catalysis B: Environmental 212 (2017) 89. (IF:11.698, Cited:9)
[2] Jingran Xiao, Xuelan Hou, Le Zhao, Yongdan Li*, A carbon-quantum-dot-sensitized ZnO:Ga/ZnO multijunction composite photoanode for photoelectrochemical water splitting under visible light irradiation. Journal of Catalysis 346 (2017) 70. (IF: 6.759, Cited:9)
[3] Jingran Xiao, Huali Huang, Qiuyang Huang, Le Zhao, Xiang Li, Xuelan Hou, Hong Chen, Yongdan Li*, Suppressing the electron-hole recombination rate in hematite photoanode with a rapid cooling treatment. Journal of Catalysis 350 (2017) 48. (IF: 6.759, Cited:8)
[4] Jingran Xiao, Xiaoli Zhang, Yongdan Li*, A ternary g-C3N4/Pt/ZnO photoanode for efficient photoelectrochemical water splitting. International Journal of Hydrogen Energy 40 (2015) 9080. (IF:4.229, Cited:29)
[5] Jingran Xiao, Xuelan Hou, Le Zhao, Yongdan Li*, A conductive ZnO:Ga/ZnO core-shell nanorod photoanode for photoelectrochemical water splitting. International Journal of Hydrogen Energy 41(2016) 14596. (IF:4.229, Cited:10)
共同作者:
[6] Le Zhao, Jingran Xiao, Huali Huang, Qiuyang Huang, Yicheng Zhao*, YongdanLi*, Enhanced efficiency of hematite photoanode for water splitting with the doping of Ge. International Journal of Hydrogen Energy 43 (2018) 12646. (IF:4.229, Cited:5)
[7] Yang Li, Shaohong Jiang, Jingran Xiao, Yongdan Li*, Photocatalytic overall water splitting under visible light over an In-Ni-Ta-O-N solid solution without an additional cocatalyst. International Journal of Hydrogen Energy 39 (2014) 731. (IF:4.229, Cited:12)
[8] Zhengmin Yu, Jianling Meng, Jingran Xiao, Yang Li, Yongdan Li*, Cobalt sulfide quantum dots modified TiO2 nanoparticles for efficient photocatalytic hydrogen evolution. International Journal of Hydrogen Energy 39 (2014) 15387. (IF:4.229, Cited:28)
[9] Huali Huang, Xuelan Hou, Jingran Xiao, Le Zhao, Qiuyang Huang, Hong Chen, Yongdan Li*, Effect of annealing atmosphere on the performance of TiO2 nanorod arrays in photoelectrochemical water splitting, Catalysis Today 2018, In Press. (IF:4.667, Cited:0)
[10] Xuelan Hou, Shaohong Jiang, Yang Li, Jingran Xiao, Yongdan Li*, Ni-doped InN/GaZnON composite catalyst for overall water splitting under visible light irradiation. International Journal of Hydrogen Energy 40 (2015) 15448. (IF:4.229, Cited:8)