康雄武

康雄武

基本介紹

  • 中文名:康雄武
  • 畢業院校:美國加州大學
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:金屬納米材料可控制備、有機配體表面功能化及其在加氫反應
  • 任職院校:華南理工大學
人物經歷,研究方向,學術成果,承擔項目,綜述,學術論文,

人物經歷

2003-2007 中國科學技術大學 學士
2007-2012美國加州大學聖克魯茲 University of California, Santa Cruz 博士
2012-2015美國喬治亞理工學院Georgia Institute of Technology (Gatech) 博士後

研究方向

  1. 金屬納米材料可控制備、有機配體表面功能化及其在加氫反應方向的套用;
  2. 電化學催化CO2還原為甲酸、甲醇等高附加值化工原料;
  3. 鋰硫電池、鋰/鈉離子電池儲能器件;等離激元效應增強電化學催化及其機理研究。

學術成果

承擔項目

1. 華南理工大學“傑出人才與團隊引進計畫”;
2. 國家自然科學基金青年項目;
3. 中央高校研究項目

綜述

在Angew. Chem. Int. ed.、JACS、Adv. Sci.、ACS Catal.、Chem. Mater.、Ana. Chem.等國際知名期刊上以第一作者或通訊作者發表20餘篇論文,總引用次數400多次,擔任Angew. Chem. Int. ed.、J. Mater. Chem. A,等雜誌審稿人,2012年獲得美國電分析化學協會舊金山分會Daniel Cubicciotti Award Honorable Mention,(在此之前,該獎從北加州電化學領域的研究生中選拔,包括著名的史丹福大學和加州大學伯克利分校,該獎長年以來被這兩所名校的學生獲得,之前僅有一次被加州大學戴維斯分校學生獲得),美國電分析化學協會(SEAC) Student Travel Award。

學術論文

代表性論文*代表通訊作者;†代表共同第一作者
  1. Lin Huang, Shunlian Ning, Zhang Lin, Xiongwu Kang*, Xusheng Zheng and Shaowei Chen, “Nitrene-functionalized ruthenium nanoparticles: spectral evidence for conjugated Ru=N bonds at the metal-ligand interface and its impact on selective hydrogenation of styrene”, under preparation.
  2. Lin Huang, Jiasui Zou, Zhang Lin, Xiongwu Kang*, Prashant K. Jain*, and Shaowei Chen, “Synergy between plasmonic and electrocatalytic activation of methanol oxidation on Pd-Ag alloy nanotubes”, Angew. Chem. Int. Ed., 2018, under review (IF=12.102)
  3. Fengqi Zhang, Jingjing Fang, Lin Huang, Wenming Sun, Zhang Lin, Zhenqing Shi, Xiongwu Kang*, and Shaowei Chen*, Alkyne-Functionalized Ruthenium Nanoparticles: Impact of Metal-Ligand Interfacial Bonding Interactions on the Selective Hydrogenation of Styrene, ACS Catal., 2018, ASAP. (IF=11.384)
  4. Jigang Wang, Fengqi Zhang, Xiongwu Kang* and Shaowei Chen*, Organic functionalization of metal catalysts: enhanced activity towards electroreduction of carbon dioxide, Curr. Opin. Electrochem., 2019, 13, 40.
  5. Jun Yang, Hongcheng Gao, Shuang Men, Zhenqing Shi, Zhang Lin, Xiongwu Kang* and Shaowei Chen*, “CoSe2 nanoparticles encapsulated by N-doped carbon framework intertwined with carbon nanotubes: high-performance dual-role anode materials for both Li and Na ion batteries”, Advanced Science, 2018, 1800763. (IF=12.44)
  6. Lin Huang, Jun Yang, Min Wu, Zhenqing Shi, Zhang Lin, Xiongwu Kang* and Shaowei Chen, “PdAg@Pd core-shell nanotubes: superior catalytic performance towards electrochemical oxidation of formic acid and methanol”, J. Power Sources, 2018, 398, 201. (IF=6.945)
  7. Xiongwu Kang*, Kanghua Miao, Zhiwei Guo, Jiasui Zou, Zhenqing Shi, Zhang Lin, Jie Huang*, Shaowei Chen, “PdRu alloy nanoparticles of solid solution in atomic scale: Size effects on electronic structure and catalytic activity towards electrooxidation of formic acid and methanol”, J. Catal., 2018, 364, 183 (IF=6.759)
  8. Jun Yang, Hongcheng Gao, Dejun Ma, Jiasui Zou, Zhang Lin, Xiongwu Kang*, Shaowei Chen*, High-performance Li-Se battery cathode based on CoSe2-porous carbon composites, Electrochim. Acta, 2018, 264, 341. (IF=5.184)
  9. Fengqi Zhang, Lin Huang, Jiasui Zou, Jun Yang, Xiongwu Kang* and Shaowei Chen*, Isonitrile-functionalized ruthenium nanoparticles: intraparticle charge delocalization through Ru=C=N interfacial bonds, J. Nanopart. Res., 2017, 19, 308. (IF=2.184)
  10. Kanghua Miao, Yun Luo, Jiasui Zou, Jun Yang, Fengqi Zhang, Lin Huang, Jie Huang*, Xiongwu Kang* and Shaowei Chen, PdRu alloy nanoparticles of solid solution in atomic scale: outperformance towards formic acid electro-oxidation in acidic medium, Electrochim. Acta, 2017, 251, 588. (IF=5.184)
  11. Fengqi Zhang, Lin Huang, Jiaying Zhu, Jinwu Yan, Jiasui Zou, Xiongwu Kang* and Shaowei Chen*, Nitrile-functionalized ruthenium nanoparticles: charge delocalization through Ru-N=C interface, J. Nanopart. Res., 2017, 19, 106 (IF=2.184)加入華南理工大學前發表代表性論文
  12. Fadi M Jradi, Xiongwu Kang, Daniel O’Neil, Gabriel Pajares, Yulia A Getmanenko, Paul Szymanski, Timothy C Parker, Mostafa A El-Sayed*, Seth R Marder*, Near-infrared asymmetrical squaraine sensitizers for highly efficient dye sensitized solar cells: the effect of π-bridges and anchoring groups on solar cell performance, Chem. Mater., 2015, 27, 2480-2487;(共同一作)
  13. Xiongwu Kang†, Junxiang Zhang†, Daniel O’Neil, Anthony J. Rojas, Wayne Chen, Paul Szymanski, Seth R. Marder* and Mostafa A. El-Sayed*, The effect of molecular structure perturbations on the performance of the D-A-π-A dye sensitized solar cells, Chem. Mater., 2014, 26, 4486−4493.
  14. Xiongwu Kang†, Junxiang Zhang†, Anthony J. Rojas, Daniel O’Neil, Paul Szymanski, Seth R. Marder* and Mostafa A. El-Sayed*, Deposition of loosely bound organic D-A-π-A’ dyes on sensitized TiO2 film: a possible strategy to suppress charge recombination and enhance power conversion efficiency in dye-sensitized solar cells , Journal of Materials Chemistry A, 2014, 2, 11229.
  15. Xiongwu Kang, Nathaniel B. Zuckerman, Joseph P. Konopelski, Shaowei Chen, Alkyne-Stabilized Ruthenium Nanoparticles: Manipulation of Intraparticle Charge Delocalization by Nanoparticle Charge States, Angew. Chem. Int. Ed., 2010, 49, 9496. (IF=12.102)
  16. Xiongwu Kang, Nathaniel B. Zuckerman, Joseph P. Konopelski, and Shaowei Chen, “Alkyne-protected ruthenium nanoparticles: ruthenium-vinylidene on metal-ligand interface”, Journal of the American Chemical Society,2012, 134, 1412 (IF=14.357)
  17. Xiongwu Kang, Xiang Li, William M. Hewitt, Nathaniel B. Zuckerman, Joseph P. Konopelski*, and Shaowei Chen, “Manipulation of Intraparticle Charge Delocalization by Selective Complexation of Transition-Metal Ions with Histidine”, Analytical Chemistry, 2012, 84, 2025. (IF=6.890)
  18. Xiongwu Kang,Yang Song and Shaowei Chen, “Nitrene functionalized ruthenium nanoparticles”, Journal of Materials Chemistry, 2012, 22, 19250.
  19. Xiongwu Kang, Nathaniel B. Zuckerman, Joseph P. Konopelski, and Shaowei Chen, “Electronic conductivity of alkyne-capped ruthenium nanoparticles”, Nanoscale, 2012, 4, 4183.
  20. Xiongwu Kang, Wei Chen, Nathaniel Zuckerman, Joseph Konopelski, Shaowei Chen, Intraparticle Charge Delocalization of Carbene-Functionalized Ruthenium Nanoparticles Manipulated by Selective Ion Binding, Langmuir, 2011, 27, 12636-12641.Xiongwu Kang, Shaowei Chen, Photocatalytic Reduction of Methylene Blue by TiO2 Nanotube Arrays: Effects of TiO2 Crystalline Phase, J. Mater. Sci., 2010, 45, 2696

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