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中国科学院大学研究生导师简介-谢奎

中国科学院大学 免费考研网/2016-05-09

1、招生信息2、教育背景3、工作经历4、教授课程5、专利与奖励6、出版信息7、科研活动8、合作情况9、指导学生
基本信息
谢奎 男 硕导 中国科学院福建物质结构研究所
电子邮件: kxie@fjirsm.ac.cn
通信地址: 福建省福州市高新区海西科技园中国科学院海西研究院1-901
邮政编码: 350109
研究领域
招生信息

招生专业080502


招生方向高温固体电化学,电化学,电催化

教育背景2008-09--2009-12 英国圣安德鲁斯大学 联合培养博士生
2005-09--2010-05 中国科学技术大学 工学博士学位
2000-09--2004-07 合肥工业大学 工学学士学位


学历

学位
工作经历

工作简历2015-03~现在, 中国科学院福建物质结构研究所, 研究员 课题组长 中科院海西研究院百人计划
2012-01~2015-03,合肥工业大学, 教授 黄山学者-杰出青年人才支持计划
2011-09~2012-01,英国圣安德鲁斯大学, 博士后研究人员
2010-05~2011-09,日本国立材料研究所, 博士后研究人员
2008-09~2009-12,英国圣安德鲁斯大学, 联合培养博士生
2005-09~2010-05,中国科学技术大学, 工学博士学位
2004-07~2005-08,华润集团无锡华润微电子控股有限公司, 工艺技术员
2000-09~2004-07,合肥工业大学, 工学学士学位


社会兼职
教授课程
专利与奖励

奖励信息

专利成果( 1 )一种高温电解水蒸汽同步氧化甲烷制备燃料的方法,2014,第 1 作者,专利号: **27
( 2 )一种可逆相转变的钒酸盐电极材料及其制备方法和应用,2014,第 1 作者,专利号: **17
( 3 )一种高温固体氧化物电解池阴极材料及其制备方法,2014,第 1 作者,专利号: **18

出版信息

发表论文(1) Efficient syngas production from methane reforming in solid oxide electrolyser with chromates cathode loaded with NiCu catalyst, Journal of Solid State Electrochemistry, 2015, 第 5 作者
(2) Spatially confined catalysis enhanced high temperature carbon dioxide electrolysis, Physical Chemistry Chemical Physics, 2015, 第 5 作者
(3) Composite Cathode Based on Redox‐Reversible Nb2TiO7 for Direct High‐Temperature Steam Electrolysis, Chinese Journal of Chemical Physics, 2015, 第 5 作者
(4) Chromium oxide coated nickel/yttria‐stabilized zirconia electrode with heterojunction interface toward electrochemical biogas reforming, RSC Advances, 2015, 第 5 作者
(5) Composite manganate oxygen electrode enhanced with iron oxide nanocatalyst for high temperature steam electrolysis, International Journal of Hydrogen Energy, 2015, 第 5 作者
(6) Perovskite Chromate Doped with Titanium for Direct Carbon Dioxide Electrolysis, New Journal of Chemistry, 2015, 第 5 作者
(7) Composite cathode based on scandium‐doped chromate for direct high‐temperature steam electrolysis in a solid oxide symmetric electrolyzer, Journal of Power Sources, 2015, 第 5 作者
(8) Efficient Carbon Dioxide Electrolysis Based on Perovskite Cathode Enhanced with Nickel Nanocatalyst, Electrochimica Acta, 2015, 第 5 作者
(9) Redox-stable chromate cathode decorated with in situ grown nickel nanocatalyst towards efficient carbon dioxide electrolysis, Catalysis Science and Technology, 2014, 第 5 作者
(10) Demonstration of efficient electrochemical biogas reforming in a solid oxide electrolyser with titanate cathode, RSC Advances, 2014, 第 5 作者
(11) In situ formation of oxygen vacancy in perovskite Sr0.95Ti0.8Nb0.1M0.1O3 (M=Mn, Cr) towards efficient carbon dioxide electrolysis, Scientific Reports, 2014, 第 5 作者
(12) Composite Cathode Based on Redox-Reversible NbTi0.5Ni0.5O4 Decorated with In -Situ Grown Ni Particles for Direct Carbon Dioxide Electrolysis, Fuel Cells, 2014, 第 5 作者
(13) Composite cathode based on scandium doped titanate with enhanced electrocatalytic activity towards direct carbon dioxide electrolysis, Dalton Transactions, 2014, 第 5 作者
(14) Single-phase nickel-doped ceria cathode with in-situ grown nickel nanocatalyst for direct high-temperature carbon dioxide electrolysis, RSC Advances, 2014, 第 5 作者
(15) Redox-reversible niobium-doped strontium titanate decorated with in-situ grown nickel nanocatalyst for high-temperature direct steam electrolysis, Physical Chemistry Chemical Physics, 2014, 第 5 作者
(16) Efficient carbon dioxide electrolysis based on ceria cathode loaded with metal nanoparticles, Journal of Solid State Electrochemistry, 2014, 第 5 作者
(17) Efficient CO2 electrolysis in a symmetric solid oxide electrolyzer based on nanocatalyst-loaded LSCM electrodes, International Journal of Hydrogen Energy, 2014, 第 5 作者
(18) In situ Growth of NixCu1-x Alloy Nanocatalysts on Redox-reversible Rutile (Nb,Ti)O4 Towards High-Temperature Carbon Dioxide Electrolysis, Scientific Reports, 2014, 第 5 作者
(19) Composite cathode based on Mn-doped perovskite niobate-titanate for efficient steam electrolysis, Chinese Journal of Chemical Physics, 2014, 第 5 作者
(20) Composite Titanate Cathode Decorated with Heterogeneous Electrocatalytic Sites Towards Efficient Carbon Dioxide Electrolysis, RSC Advances, 2014, 第 5 作者
(21) Remarkable chemical adsorption of manganese-doped titanate for direct carbon dioxide electrolysis, Journal of Materials Chemistry A, 2014, 第 5 作者
(22) Composite titanate cathode enhanced with in-situ grown nickel nanocatalyst for direct steam electrolysis, New Journal of Chemistry, 2014, 第 5 作者
(23) Perovskite titanate cathode decorated by in-situ grown iron nanocatalyst with enhanced electrocatalytic activity for high-temperature steam electrolysis, Electrochimica Acta, 2014, 第 5 作者
(24) Electrochemical investigation of La0.4Sr0.4TiO3-δ-Ce0.8Sm0.2O2-δ composite cathode for the direct steam electrolysis, Advanced Materials Research, 2014, 第 5 作者
(25) Perovskite Titanate with Reversibly Anchored Copper Nanocatalyst for Direct High-Temperature Steam Electrolysis, International Journal of Hydrogen Energy, 2014, 第 5 作者
(26) Composite cathode based on doped vanadate enhanced with loaded metal nanoparticles for direct steam electrolysis, Journal of Power Sources, 2014, 第 5 作者
(27) Composite Oxygen Electrode LSM-BCZYZ impregnated with Co3O4 Nanoparticles for Steam Electrolysis in a Proton-conducting Solid Oxide Electrolyzer, International Journal of Hydrogen Energy, 2013, 第 5 作者
(28) Perovskite Chromates Cathode with Resolved and Anchored Nickel Nano-particles for Direct High-Temperature Steam Electrolysis, Journal of Power Sources, 2013, 第 5 作者
(29) Perovskite Chromates Cathode with Exsolved Iron Nanoparticles for Direct High-Temperature Steam Electrolysis, ACS Applied Materials and Interfaces, 2013, 第 5 作者
(30) Composite cathode La0.4Sr0.4TiO3-δ-Ce0.8Sm0.2O2-δ impregnated with Ni for high temperature steam electrolysis, Journal of Power Sources, 2013, 第 5 作者
(31) Composite cathode based on Ni-loaded La0.75Sr0.25Cr0.5Mn0.5O3-δ for direct steam electrolysis in an oxide-ion-conducting solid oxide electrolyzer, International Journal of Hydrogen Energy, 2013, 第 5 作者
(32) High-performance Fuel Electrodes Based on NbTi0.5M0.5O4 (M= Ni, Cu) with Reversible Exsolution of Nano-Catalyst for Steam Electrolysis, Journal of Materials Chemistry A, 2013, 第 5 作者
(33) Composite Hydrogen Electrode Based on Fe-loaded LSCM for Steam Electrolysis in an Oxygen-ion Conducting Solid Oxide Electrolyzer, Journal of Power Sources, 2013, 第 5 作者
(34) Electrochemical Reduction of CO2 into CO in a Proton-Conducting Solid Oxide Electrolyser, Journal of Power Sources, 2013, 第 5 作者
(35) Composite Oxygen Electrode LSCF and BSCF for a Pronton Conducting Solid Oxide Electrolyser, Journal of the Electrochemical Society, 2013, 第 5 作者
(36) Direct electrolysis of CO2 in an oxygen-ion conducting symmetric solid oxide electrolyzer with configuration of LSCM-SDC YSZ LSCM-SDC, Journal of Power Sources, 2013, 第 5 作者
(37) Composite oxygen electrode based on LSCM for steam electrolysis in a proton conducting solid oxide electrolyzer, Journal of the Electrochemical Society , 2012, 第 5 作者
(38) Pervoskite-type Ba0.5Sr0.5Al0.1Fe0.9O3-δ as Intermediate-Temperature Solid Oxide Fuel Cell Cathode, Chinese Journal of Chemical Physics, 2012, 第 5 作者
(39) Composite Fuel Electrode La0.2Sr0.8TiO3-δ–Ce0.8Sm0.2O2-δ for Electrolysis of CO2 in an Oxygen-ion Conducting Solid Oxide Electrolyser, Physical Chemistry Chemical Physics, 2012, 第 5 作者
(40) Electrolysis of H2O and CO2 in an Oxygen-ion Conducting Solid Oxide Electrolyzer with a La0.2Sr0.8TiO3+δ Composite Cathode, Journal of Power Sources, 2012, 第 5 作者
(41) Self-doped SrTiO3-δ photocatalyst with enhanced activity for artificial photosynthesis under visible light, Energy and Environmental Science, 2011, 第 1 作者
(42) Direct synthesis of methane from CO2 and H2O in an oxygen-ion conducting solid oxide electrolyser, Energy and Environmental Science, 2011, 第 1 作者
(43) Electrochemical reduction of CO2 in a proton conducting solid oxide electrolyser, Journal of Materials Chemistry , 2011, 第 1 作者


发表著作
科研活动

科研项目( 1 )纳米Ni/(La,Sr)TiO3+δ-YSZ 复合阴极体系的可控构筑与电解CO2 研究, 主持, 国家级, 2014-01--2016-12
( 2 )新型储氧电极支撑的储能电池的关键技术研发, 主持, 国家级, 2014-05--2016-05
( 3 )中国科学院海西研究院百人计划启动经费, 主持, 市地级, 2015-03--2018-03


参与会议
合作情况

项目协作单位
指导学生

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