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哈尔滨工程大学材料科学与化学工程学院研究生导师简介-叶 克 讲师

哈尔滨工程大学 免费考研网/2016-04-02

1. 个人简介

叶克,1985年3月生,北海道大学博士,哈尔滨工程大学讲师,化学工程与技术专业硕士生导师。目前主要从事电化学,燃料电池等领域的研究。2013年3月毕业于日本北海道大学,获工学博士学位。留学期间获日本文部科学省 JASSO 优秀奖,GCOE 亚洲研究生院奖,北海道大学校长奖。ACS Applied Materials & Interfaces等国际学术期刊的通讯审稿人。近5年,在《Journal of Materials Chemistry A》、《Journal of Power Sources》等国内外有影响力的学术期刊上发表SCI 收录论文70余篇(影响因子IF总和>280),申请国家发明专利3项,其中授权1项。曾受邀参加ISE等A类国际会议并发表英文演讲12,其中获最佳奖1次。主持国家自然科学基金,中国博士后科学基金特别资助,黑龙江省自然科学基金,中国博士后科学基金面上项目,黑龙江省博士后基金等多项科研项目。获黑龙江省高校科学技术奖一等奖1项,黑龙江省自然科学奖二等奖1项。



2. 主要研究方向

(1)直接过氧化氢燃料电池

(2)直接尿素燃料电池

(3)水系钠/镁离子电池



3. 主要承担的科研项目及获奖情况

主持的科研项目:

(1)国家自然科学基金25(项目负责人, No.**, 2015.01-2017.12)

(2)中国博士后科学基金特别资助15(项目负责人, No.2015T80329, 2015.09-2016.08)

(3)黑龙江省自然科学基金6(项目负责人, No.LC**, 2015.07-2018.06)

(4)中国博士后科学基金面上项目5(项目负责人, No. 2014M561332, 2014.09-2016.08)

(5)黑龙江省博士后资助经费5(项目负责人, No. LBH-Z13059, 2013.12-2016.08)

(6)中央高校基本科研业务费7(项目负责人, No. HEUCF**, 已结题)

获奖情况:

微纳米结构3D阵列电极的制备及其电化学性能,黑龙江省高校科学技术奖一等奖,2015

微纳米结构3D阵列电极的制备及其电化学性能,黑龙江省自然科学奖二等奖,2015



4. 主要授权专利

一种共电沉积变价锰直接制备镁锂锰合金的熔盐电解方法(申请公布号:CN ** B)



5. 代表性论文

[1] Ke Ye*, Fen Guo, YinyiGao, Dongming Zhang, Kui Cheng, Wenping Zhang, Guiling Wang, Dianxue Cao. Three-dimensional carbon- and binder-free nickel nanowire arrays as a high-performance and low-cost anode for direct hydrogen peroxide fuel cell.Journal of Power Sources, 300 (2015) 147–156. (影响因子:6.217)

[2]Ke Ye, Dongming Zhang, Fen Guo, Kui Cheng, Guiling Wang, Dianxue Cao. Highly porous nickel@carbon sponge as a novel type of three-dimensional anode with low cost for high catalytic performance of urea electro-oxidation in alkaline medium.Journal of Power Sources, 283 (2015) 408–415.(影响因子:6.217)

[3] Ke Ye, Yoshitaka Aoki, Etsushi Tsuji, Shinji Nagata, Hiroki Habazaki. Thickness dependence of proton conductivity of anodic ZrO2–WO3–SiO2nanofilms.Journal of Power Sources, 205 (2012) 194–200.(影响因子:6.217)

[4] Xin Wang, Ke Ye*, YinyiGao, Hongyu Zhang, Kui Cheng, Xue Xiao, Guiling Wang, Dianxue Cao. Preparation of porous palladium nanowire arrays and their catalytic performance for hydrogen peroxide electroreduction in acid medium.Journal of Power Sources, 303 (2016) 278–286.(影响因子:6.217)

[5]PanpanXu, Ke Ye*,Dianxue Cao, Jichun Huang, Tong Liu, Kui Cheng, Jinling Yin, Guiling Wang.Facile synthesis of cobalt manganese oxides nanowires on nickel foam with superior electrochemical performance.Journal of Power Sources, 268 (2014) 204–211.(影响因子:6.217)

[6] Ke Ye, Dongming Zhang, Hongyu Zhang, Kui Cheng, Guiling Wang, Dianxue Cao. Platinum-modified cobalt nanosheets supported on three-dimensional carbon sponge as a high-performance catalyst for hydrogen peroxide electroreduction. ElectrochimicaActa, 178 (2015) 270–279.(影响因子:4.504)

[7] Fen Guo,Ke Ye*, Mengmeng Du, Kui Cheng, YinyiGao, Guiling Wang, Dianxue Cao. Nickel nanowire arrays electrode as an efficient catalyst for urea peroxide electro-oxidation in alkaline media. ElectrochimicaActa, 190 (2016) 150–158.(影响因子:4.504)

[8]Dongming Zhang, Dianxue Cao, Ke Ye*, Jinling Yin, Kui Cheng, Guiling Wang. Cobalt nano-sheet supported on graphite modified paper as a binder free electrode for peroxide electrooxidation. ElectrochimicaActa, 139 (2014) 250–255.(影响因子:4.504)

[9] Ke Ye, Dongming Zhang, Xin Wang, Kui Cheng, Dianxue Cao. A novel three-dimensional gold catalyst prepared by simple pulse electrodeposition and its high electrochemical performance for hydrogen peroxide reduction. RSC Advances, 5 (2015) 3239–3247.(影响因子:3.840)

[10] PanpanXu, Ke Ye*, Mengmeng Du, Jijun Liu, Kui Cheng, Jinling Yin, Guiling Wang, Dianxue Cao. One-step synthesis of copper compounds on copper foil and their supercapacitive performance, RSC Advances, 5 (2015) 36656–36664.(影响因子:3.840)

[11]Fen Guo, Ke Ye*, Xiaomei Huang, YinyiGao, Kui Cheng, Guiling Wang, Dianxue Cao. Palladium dispersed in three-dimensional polyaniline networks as the catalyst for hydrogen peroxide electro-reduction in an acidic medium.RSC Advances,5 (2015) 94008–94015.(影响因子:3.840)

[12] Yue Pan, Ke Ye*, Dianxue Cao, Yiju Li, Yuanyuan Dong, TengtengNiu, WeijiaZeng, Guiling Wang. Nitrogen-doped graphene oxide/cupric oxide as an anode material for lithium ion batteries. RSC Advances, 4 (2014) 64756–64762.(影响因子:3.840)



联系地址:哈尔滨工程大学材料科学与化学工程学院

邮政编码:150001

E—mail: yeke@hrbeu.edu.cn

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