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胡广志教授
发布时间:2018-10-10 02:00 作者: 访问次数:0

  

  

  

  胡广志 教授、博士生导师

  研究领域:纳米能源材料、生物传感器件、

  纳米材料电化学、电分析化学、环境污染物监测与治理

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  学习与工作经历

  2000年-2004年:安徽师范大学化学与材料科学学院化学专业,学士

  2004年-2007年:安徽师范大学化学与材料科学学院分析化学专业,硕士

  2007年-2010年:中科院兰州化学物理研究所分析化学专业,博士

  2010年-2014年:瑞典于默奥大学物理系纳米碳材料研究实验室,博士后

  2014年12月-至今:中国科学院新疆理化技术研究所,研究员,博士生导师

  2015年2月-2016年12月: 瑞典于默奥大学物理系,客座教授

  

  学术获奖

  安徽师范大学优秀研究生一等奖 (2007) ?

  中科院院长优秀奖 (2010) ?

  中科院朱李月华优秀博士生奖学金 (2010) ?

  Wenner-Gren 博士后奖学金 (2011) ?

  Wenner-Gren 博士后奖学金 (2012) ?

  Knut-Alice 博士后奖学金 (2013)

  

  主持项目?

  1. 中组部千人计划-新疆项目:纳米材料基重金属电化学传感器 (2015-2017,300 万,主持) ?

  2. 国家自然科学基金-青年基金:石墨烯基面修饰多硫化物及其对剧毒重金属离子电化学传感研究 (2016-2018,25 万,主持) ?

  3. 国家自然科学基金-面上项目:过渡金属氧化物/石墨烯纳米复合材料的快速合成及重金属传感研究 (2017-2020, 65 万,主持) ?

  4. 新疆自治区留学人员科技活动项目择优资助项目基金:重金属电化学纳米传感阵列的构筑和应用研究 (2016-2018,3 万,主持) ?

  5. 自治区科技厅国际合作项目:多硫化物/碳纳米管阵列重金属离子电化学传感器(2016-2018, 55 万,主持) ?

  6. 新疆理化技术研究所所长基金-人才项目 (2015-2017,80 万,主持)?

  

  学术成果

  累计发表论文58篇,其中国外学术刊物49篇,国际会议论文9篇,SCI收录49篇,论文被引用合计1700多次。

  以第一作者(或通讯作者)发表 24 篇学术论文, 包含综合性期刊 1 区(1篇)、化学类 1 区(1 篇)、工程技术类 1 区(8 篇)主要发表在 Nature Communications, J. Am. Chem. Soc., Nano Energy, Biosensors and Bioelectronics, Electrochemistry Communications, Electrochimica Acta, Talanta, Bioelectrochemistry, Electroanalysis, J. Powder Source, Journal of Materials Chemistry 等国际知名的本专业高影响因子期刊, 合作发表 Nature Communications, Nano Letters, ACS Nano, J. Phys. Chem. C 等 SCI源期刊论文 25篇,(国际)会议论文 9 篇, 所有论文被引用合计 1700 多次(H-指数为 22, Thomason Reuters)

  

  1. Guangzhi Hu?, Florian Nitze?, Eduardo Gracia-Espino?, Jingyuan Ma, Hamid Reza Barzegar, Tiva Sharifi, Xueen Jia, Andrey Shchukarev, Lu Lu, Chuansheng Ma, Guang Yang*, Thomas Wagberg*, Small palladium islands embedded in palladium-tungsten bimetallic nanoparticles form catalytic hotspots for oxygen reduction, Nature communications, 5 (2014) 5253. (综合性期刊1区)

  

  2. Gracia-Espino, Eduardo?; Hu, Guangzhi?; Shchukarev, Andrey, Thomas Wagberg*, Understanding the interface of six-shell cuboctahedral and icosahedral palladium clusters on reduced graphene ox-ide: experimental and theoretical study, J. Am. Chem. Soc., 136 (2014) 6626-33. (化学类1区)

  

  3. Hangjia Shen, Eduardo Gracia-Espino, Jingyuan Ma, Haodong Tang, Xamxikamar Mamat, Thomas Wagberg*, Guangzhi Hu*, Shaojun Guo*, Atomically FeN2 Moieties Dispersed on Mesoporous Carbon: A New Atomic Catalyst for Efficient Oxygen Reduction Catalysis, Nano Energy, 35 (2017) 9-16. (工程技术类1区,材料科学综合1区)

  

  4. Danfeng Qin, Shanshuang Gao, Le Wang, Hangjia Shen, Nuerbiya Yalikun, Parviz Sukhrobov, Thomas Wagberg*, Yujie Zhao, Xamxikamar Mamat*, Guangzhi Hu*.Three-dimensional carbon nanofiber derived from bacterial cellulose for use in a Nafion matrix on a glassy carbon electrode for simultaneous voltammetric determination of trace levels of Cd(II) and Pb(II) Microchim ActaDOI:10.1007/s00604-017-2260-x (化学类2区)

  

  5. Hangjia Shen, Eduardo Gracia-Espino, Le Wang, Danfeng Qin, Sanshuang Gao, Xamxikamar Mamat, Wei Ren, Thomas Wagberg*, Guangzhi Hu*. Rapid microwave-assisted synthesis of multimetal oxygen-evolving catalysts. Electrochemistry Communications, 2017. Accepted.(工程技术类1区)

  

  6. G. Z. Hu, F. Nitze, X. Jia, T. Sharifi, H.R. Barzegar, E. Gracia-Espino, T. W?gberg Reduction free room temperature synthesis of a durable and efficient Pd/ordered mesoporous carbon composite electrocatalyst for alkaline direct alcohols fuel cell, Rsc Advances 4 (2014) 676-682. (化学类2区)

  

  7. Hamid Reza Barzegar?, Guangzhi Hu?, Christian Larsen, Xueen Jia, Ludvig Edman, Thomas W?gberg, Palladium nanocrystals supported on photo-transformed C-60 nanorods: Effect of crystal morphology and electron mobility on the electrocatalytic activity towards ethanol oxidation, Carbon 73 (2014) 34-40. (工程技术类1区)

  

  8. Guangzhi Hu, Florian Nitze, Hamid Reza Barzegaar, Tiva Sharifi, Anja Miko?ajczuk Cheuk-Wai Taic, Andrzej Borodzinski, Thomas W?gberg, Palladium nanocrystals supported on helical carbon nanofibers for highly efficient electro-oxidation of formic acid, methanol and ethanol in alkaline electrolytes, Journal of Power Sources, 209 (2012) 236-242.(工程技术类1区)

  

  9. Guangzhi Hu, Florian Nitze, Tiva Sharifi, Hamid Reza Barzegar, and Thomas W?gberg, Self-assembled palladium nanocrystals on helical carbon nanofibers as enhanced electrocatalysts for electro-oxidation of small molecules, Journal of Materials Chemistry, 22 (2012) 8541-8548. (工程技术类1区)

  

  10. Guangzhi Hu, Long Chen, Yong Guo, Xiaolai Wang, Shijun Shao*, Selective determination of L-dopa in the presence of uric acid and ascorbic acid at a gold nanoparticle self-assembled carbon nanotube-modified pyrolytic graphite electrode, Electrochim. Acta, 55 (2010) 4711-4716.(工程技术类1区)

  

  11. Guangzhi Hu, Zhengping Zhou, Haoqing Hou, Yong Guo, Shijun Shao*, Rhodium nanoparti-cle-loaded electrospun carbon nanofibers for highly selective amperometric sensing of hydrazine, Electrochemistry Communications, 12 (2010) 422-426. (工程技术类1区)

  

  12. Guangzhi Hu, Yong Guo, Quanmin Xue, Shijun Shao, A highly selective amperometric sensor for ascorbic acid based on mesopore-rich active carbon-modified pyrolytic graphite electrode, Electrochimica Acta, 55 (2010) 2799-2804. (工程技术类1区)

  

  13. Guangzhi Hu, Yong Guo, Shijun Shao*, Ultrasensitive electrochemical sensing of the anticancer drug tirapazamine using an ordered mesoporous carbon modified pyrolytic graphite electrode, Biosensors and Bioelectronics 24 (2009) 3391-3394. (工程技术类1区)

  

  14. Guangzhi Hu, Long Chen, Yong Guo, Shijun Shao*, Xiaolai Wang, Selective electrochemical sensing of calcium dobesilate based on the nano-Pd/CNTs modified pyrolytic graphite electrode, Talanta 78 (2009) 1211-1214.(工程技术类1区)

  

  15. Guangzhi Hu, Eduardo Gracia-Espino, Robin Sandstr?m, Tiva Sharifi, Shaodong Cheng, Hangjia Shen, Atomistic understanding of the origin of high oxygen reduction electrocatalytic activity of cuboctahedral Pt 3 Co–Pt core–shell nanoparticles, Catal. Sci. Technol., 6 (2016) 1393-1401. (化学类2区)

  

  16. Ruiyu Xu, Lili Xiao, Liang Luo, Qunhui Yuan*, Danfeng Qin, Guangzhi Hu*, Wei Gan*, Nitrogen, Sulfur Dual-Doped Mesoporous Carbon Modified Glassy Carbon Electrode for Simultaneous Determination of Hydroquinone and Catechol, J. Electrochem. Soc., 163 (2016) B617-B623. 工程技术类2区)

  

  17. Hangjia Shen, Danfeng Qin, Yuzhen Li, Shouzhu Li, Chi Yang, Qunhui Yuan*, Thomas Wagberg*, Guangzhi Hu*, In situ Magnesiothermal Synthesis of Mesoporous MgO/OMC Composite for Sensitive Detection of Lead Ions, Electroanalysis, 28 (2016) 2939-2946.(化学类3区)

  

  18. Guangzhi Hu, Tiva Sharifi, Florian Nitze, Hamid Reza Barzegar, Cheuk-Wai Tai, Thomas Wagberg Phase-transfer synthesis of amorphous palladium nanoparticle-functionalized 3D helical carbon nanofibers and its highly catalytic performance towards hydrazine oxidation, Chemical Physics Letters, 543 (2012) 96-100. (化学类4区)

  

  19. Guangzhi Hu, Yong Guo, Shijun Shao*, Simultaneous Determination of Dopamine and Ascorbic Acid Using the Nano-Gold Self-Assembled Glassy Carbon Electrode, Electroanalysis 21 (2009) 1200-1206. (化学类3区)

  

  20. Guangzhi Hu, Yonggen Ma, Yong Guo, Shijun Shao*, Selective electrochemical sensing of cal-cium dobesilate based on an ordered mesoporous carbon-modified pyrolytic graphite electrode, Journal of Electroanalytical Chemistry 633 (2009) 264-267. (化学类3区)

  

  21. Guangzhi Hu, Dapeng Zhang, Weili Wu, Zhousheng Yang*, Selective determination of dopamine in the presence of high concentration of ascorbic acid using nano-Au self-assembly glassy carbon electrode, Colloids and Surfaces B: Biointerfaces 62 (2008) 199-205. (生物类2区)

  

  22. Zhousheng Yang*, Guangzhi Hu, Xi Chen, Jun Zhao, Guangchao Zhao, The nano-Au self-assembled glassy carbon electrode for selective determination of epinephrine in the presence of ascorbic acid, Colloids and Surfaces B: Biointerfaces 54 (2007) 230-235. (生物类2区)

  

  23. Zhousheng Yang*, Guangzhi Hu, Yunchun Liu, Jun Zhao, Guangchao Zhao, Poly-(p-aminobenzene sulfonic acid) modified glassy carbon electrode for selective determination of hydroquinone in the presence of catechol and resorcinol, Canadian Journal of Analytical Sciences and Spectroscopy 52 (2006) 11-17.

  

  24. Guangzhi Hu, Yunchun Liu, Jun Zhao, Shiqiang Cui, Zhousheng Yang*, Yuzhong Zhang, Selective response of dopamine in the presence of ascorbic acid on L-cysteine self-assembled gold electrode, Bioelectrochemistry 69 (2006) 254-257. (生物类2区)

  

  25. Biwei Wang, Xinxia Wang, Jinxiang Zou, Yancui Yan, Songhai Xie, Guangzhi Hu, Yanguang Li*, and Angang Dong*, Simple-Cubic Carbon Frameworks with Atomically Dispersed Iron Dopants toward High-Efficiency Oxygen Reduction, Nano Letters, 17 (2017) 2003–2009.

  

  26. Xuejia Zhan, Guangzhi Hu, Thomas Wagberg, Shenshan Zhan, Hanchu Xu, Pei Zhou, Electrochemical aptasensor for tetracycline using a screen-printed carbon electrode modified with an alginate film containing reduced graphene oxide and magnetite (Fe3O4) nanoparticles, Microchimica Acta, 183 (2016) 723-729.

  

  27. Lili Xiao, Biwei Wang, Li Ji, Fu Wang, Qunhui Yuan*, Guangzhi Hu, Angang Dong*, Wei Gan*, An efficient electrochemical sensor based on three-dimensionally interconnected mesoporous graphene framework for simultaneous determination of Cd (II) and Pb (II), Electrochimica Acta, 2016, DOI: 10.1016/j.electacta.2016.11.113.

  

  28. Lili Xiao, Jiao Yin, Yingchun Li, Qunhui Yuan*, Hangjia Shen, Guangzhi Hu, Wei Gan*, Facile one-pot synthesis and application of nitrogen and sulfur-doped activated graphene in simultaneous electrochemical determination of hydroquinone and catechol, Analyst, 141 (2016) 5555-5562.

  

  29. Jun Zhao, Guangzhi Hu, Zhousheng Yang*, Determination of 1-naphthol with denatured DNA modified the pretreated glassy carbon electrode. Analytical Letters 40 (2007) 459-470.

  

  30. Long Chen, Guangzhi Hu, Guojun Zou, Shijun Shao*, Xiaolai Wang*, Efficient anchorage of Pd nanoparticles on carbon nanotubes as a catalyst for hydrazine oxidation, Electrochemistry Commu-nications, 11 (2009) 504-507.

  

  31. Hao Tang, Guangzhi Hu, Shengxiang Jiang*, Xia Liu, Selective determination of uric acid in the presence of ascorbic acid at poly(p-aminobenzene sulfonic acid)-modified glassy carbon electrode. Journal of Applied electrochemistry, 39 (2009) 2323-2328.

  

  32. Yonggen Ma, Guangzhi Hu, Shijun Shao, Yong Guo, An amperometric sensor for uric acid based on ordered mesoporous carbon-modified pyrolytic graphite electrode, Chemical Papers, 63 (2009) 641-645.

  

  33. Ying Yue, Guangzhi Hu, Mingbo Zheng, Yong Guo, Jieming Cao, Shijun Shao, A mesoporous carbon nanofiber-modified pyrolytic graphite electrode used for the simultaneous determination of dopamine, uric acid, and ascorbic acid, Carbon, 50 (2012) 107-114.

  

  34. Tiva Sharifi, Guangzhi Hu, Xueen Jia, and Thomas W?gberg, Formation of Active Sites for Oxy-gen Reduction Reactions by Transformation of Nitrogen Functionalities in Nitrogen-Doped Carbon Nanotubes, ACS Nano, 6 (2012) 8904-8912.

  

  35. Xueen Jia , Guangzhi Hu, Florian Nitze, Hamid Reza Barzegar, Tiva Sharifi, Cheuk-Wai Tai, Thomas W?gberg, Synthesis of palladium/helical carbon nanofiber hybrid nanostructures and their application for hydrogen peroxide and glucose detection, ACS applied materials & interfaces 5 (2013) 12017-12022.

  

  36. Lili Xiao, Shenhai Zhou, Guangzhi Hu, Hongbo Xu, Yi Wang, Qunhui Yuan, One-step synthesis of isoreticular metal–organic framework-8 derived hierarchical porous carbon and its application in differential pulse anodic stripping voltammetric determination of Pb (ii),RSC Advances 5 (2015) 77159-77167

  

  37. Wei Wei, Xiaojing Liang, Guangzhi Hu, Yong Guo, Shijun Shao, A highly selective colorimetric probe based on 2,2’,2’’-trisindolylmethene for cysteine/homocysteine, Tetrahedron Lett. 52 (2011) 1422-1425

  

  38. Yonghong Ni, Ali Tao, Guangzhi Hu, Xiaofeng Cao, Xianwen Wei, Zhousheng Yang, Synthesis, characterization and properties of hollow nickel phosphide nanospheres, Nanotechnology 17 (2006) 5013-5018.

  

  39. Tiva Sharifi, Eduardo Gracia-Espino, Hamid Reza Barzegar, Xueen Jia, Florian Nitze, Guangzhi Hu, Per Nordblad, Cheuk-Wai Tai, Thomas W?gberg, Formation of nitrogen-doped graphene na-noscrolls by adsorption of magnetic gamma-Fe2O3 nanoparticles, Nature Communications, 4 (2013), 2319.

  

  40. Yonghong Ni*, Guogen Wu, Xiaolei Zhang, Xiaofeng Cao, Guangzhi Hu, Ali Tao, Zhousheng Yang, Xianwen Wei, Hydrothermal preparation, characterization and property research of flowerlike ZnO nanocrystals built up by nanoflakes, Materials Research Bulletin 43 (2008) 2919-2928.

  

  41. Yonghong Ni*, Xiaofeng Cao, Guangzhi Hu, Zhousheng Yang, Xianwen Wei, Yonghong Chen, and Jun Xu, Preparation, Conversion, and Comparison of the Photocatalytic and Electrochemical Prop-erties of ZnS(en)0.5, ZnS, and ZnO, Crystal Growth & Design 7 (2007) 280-285.

  

  42. Florian Nitze, Marta Mazurkiewicz, Artur Malolepszy, Anna Mikolajczuk, Piotr K?edzierzawski, Cheuk-Wai Tai, Guangzhi Hu, Krzysztof Jan Kurzyd?owski,Leszek Stobinski, Andrzej Boro-dzinski, Thomas W?gberg,Synthesis of palladium nanoparticles decorated helical carbon nanofiber as highly active anodic catalyst for direct formic acid fuel cells, Electrochimica Acta, 63 (2012) 323-328.

  

  43. Linhai Jiang, Mingguang Yao, Bo Liu, Quanjun Li, Ran Liu, Hang Lv, Shuangchen Lu, Chen Gong, Bo Zou, Tian Cui , Bingbing Liu, Guangzhi Hu, Thomas W?gberg, Controlled Synthesis of CeO2/Graphene Nanocomposites with Highly Enhanced Optical and Catalytic Properties, J. Phys. Chem. C, 116 (2012) 11741-11745.

  ……

  

  

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