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武汉理工大学化学化工与生命科学学院导师教师师资介绍简介-王雪飞

本站小编 Free考研考试/2021-07-26


  姓名:王雪飞
  性别:
  出生年月:1978年9月
  学位:博士
  职称:教授、博士生导师(材料科学与工程)、系支部书记
  联系电话:**
  Emailxuefei@whut.edu.cn
  
  教育经历:
  先后获武汉理工大学材料科学工程学士学位(2001.7)、武汉理工大学应用化学硕士学位(2004.6,导师:魏明坤教授)、和武汉理工大学材料加工博士学位(2011.6,导师:张联盟教授(院士))
  工作经历:
  2004.07 – 2006.11 武汉理工大学 理学院化学系 助教
  2006.11 – 2011.10 武汉理工大学 理学院化学系 讲师
  2011.11 –2014.06 武汉理工大学 理学院化学系 副教授
  2013.7-2015.01 国家公派美国加州大学河滨分校(Yin Yadong课题组) 访问****
  2014.06 –2017.09 武汉理工大学 化生学院 副教授
  2017.10 – 至今 武汉理工大学 化生学院 教授
  研究领域:
  光催化
  教学、科研概况:
  在思想政治方面,坚定不移地拥护党的路线、方针、政策,认真学习党章党规党纪,忠诚党的教育事业,自觉遵守国家法律和学校各项规章制度,努力以辩证唯物观指导学习和工作、提高个人修养和教学科研能力,获评2015-2016年度“校师德先进个人”。作为化学系支部书记,先后带领化学系党支部获武汉理工大学“特色党建”支部典型案例、“师生结对支部共建”典型案例、“两学一做支部风采”典型案例以及“先进基层党组织”光荣称号。
  主要承担物理化学、化学热力学、物理化学实验等本科和研究生教学工作。在教学工作中,坚守“与学生同学习、同进步”的原则,善于以“认知的客观规律”诱导学生掌握知识,让学生在潜移默化中增强“发现问题、分析问题和解决问题”的能力。努力探索新的教学方法、积极参与教学改革创新,努力寻找和探索适应“新网络信息时代”的教学方式,具体包括:(1)作为骨干参与《物理化学》双语教学团队(面向材料国际示范学院);(2)作为骨干参与《物理化学》校精品课程和网络示范课程。在具体的实践过程中获得了学生的普遍认可并取得了一定的成绩,具体包括:(1)近三年来所有本科理论教学(物理化学)评估均在九十分以上;(2)指导两人次本科毕业论文获湖北省优秀学士论文;(3)指导“国家大学生创新计划”三项和“校大学生自主创新计划”一项;(4)指导本科生获湖北省大学生化学(化工)学术创新成果报告会一等奖1项、二等奖1项;(5)积极担任本科班主任工作并被评为“校优秀班主任”;(6)获“武汉理工大学青年教师讲课比赛”二等奖。
  在科学研究中努力使自己和研究生做到擅长光催化材料体系的设计与制备、精通光催化原理和相关应用、熟练掌握光催化测试技术和表征手段。近年来在课题组长余火根教授的带领下,先后主持两项国家自然科学基金(其中面上基金一项,青年基金一项)并以骨干成员参与多项省部级以上项目(包括863、国家自然基金和省基金等),发表SCI论文30多篇,H个人引文指数为20,担任ACS Appl. Mater. Interfaces、J. Mater. Chem. A、J. Phys. Chem. C等多种国际国内期刊的审稿人,并指导研究生中一人获国家公派攻读博士学位。
  近年主持的主要科研项目:
  (1) 主持:“高活性暴露面银基光催化材料的可控制备及稳定性增强研究”(**),2017.01-2020.12,经费来源:国家自然科学基金,在研
  (2) 主持:“可磁分离TiO2基光催化剂对酞酸酯降解及制氢耦合体系的研究”(**),2013.01-2015.12,经费来源:国家自然科学基金,结题
  (3) 主持:“贵金属修饰空心结构纳米复合光催化剂对PAEs降解及协同制氢的研究(2013-1a-036)”,2013.01-2014.10,中央高校专项基金,结题
  (4) 参加(骨干):“基于量子点染料共敏化分等级多孔TiO2 薄膜的光电性能研究(**)”, 2013.01-2016.12, 经费来源:国家自然科学基金(面上项目),在研
  (5) 参加(骨干):“室内空气净化技术与产品研制”(2012AA062701),2012.01-2015.12,经费来源:国家科技部(863计划),结题
  代表性论文与专利:
    1) Xuefei Wang, Shufen Li, Huogen Yu*, et al., Ag2O as a Novel Visible-light Photocatalyst: Self-stability and High Photocatalytic Activity, Chemistry-a European Journal, 2011, 17, 7777-7780.
    2) Xuefei Wang, Shufen Li, Yanqin Ma, et al., H2WO4·H2O/Ag/AgCl Composite Nanoplates: A Z-scheme Plasmonic Visible-light Photocatalyst, Journal of Physical Chemistry C, 2011, 115 (30), 14648–14655.
    3) Xuefei Wang, Shufen Li, Huogen Yu*, et al., In situ anion-exchange synthesis and photocatalytic activity of Ag8W4O16/AgCl-nanoparticle core–shell nanorods, Journal of Molecular Catalysis A: Chemical, 2011, 334, 52-59.
    4) Wang xuefei, Wang Wei, Liu Peng, et al., Photocatalytic degradation of E.coli membrane cell in the presence of ZnO nanowires,Journal of Wuhan University of Technology (MSE), 2011, 26, 223-227.
    5) Huogen Yu*, Rui Liu, Xuefei Wang, et al., Enhanced visible-light photocatalytic activity of Bi2WO6 nanoparticles by Ag2O cocatalyst, Applied Catalysis B: Environmental, 2012, 111, 326-333.
    6) Wang Ping, Ming Tingsen,Wang Xuefei*, et al., Selective-adsorption removal of methyl orange (MO) by CTAB-assisted AgBr powder, Journal of Wuhan University of Technology (MSE), 2012, 27, 675-678.
    7) Huogen Yu*, Li Liu, Xuefei Wang, et al., The dependence of photocatalytic activity and photoinduced self-stability of photosensitive AgI nanoparticles, Dalton Transactions, 2012, 41, 10405-10411.
    8) Rui Liu, Ping Wang, Xuefei Wang, et al., UV- and Visible-Light Photocatalytic Activity of Simultaneously Deposited and Doped Ag/Ag(I)-TiO2 Photocatalyst,Journal of Physical Chemistry C, 2012,116, 17721-17728.
    9) Xuefei Wang, Can Fu, Ping Wang, Huogen Yu*, Jiaguo Yu, Hierarchically Porous Metastable b-Ag2WO4 Hollow Nanospheres: Controlled Synthesis and High Photocatalytic Activity, Nanotechnology, 2013, 24, 165602.
    10) Ping Wang, Jin Wang, Tingsen Ming, Xuefei Wang, Huogen Yu*, Jiaguo Yu, Yonggang Wang and Ming Lei,Dye-sensitization-induced visible-light reduction of graphene oxide for the enhanced TiO2 photocatalytic performance, ACS Appl. Mater. Interface. 2013, 5(8), 2924–2929.
    11) Ping Wang,Jin Wang,Xuefei Wang, Huogen Yu*, Jiaguo Yu,Ming Lei,Yonggang Wang, One-step synthesis of easy-recycling TiO2-rGO nanocomposite photocatalysts with enhanced photocatalytic activity, Appl. Catal. B, 2013, 132-133, 452-459.
    12) Huogen Yu*, Linli Xu, Ping Wang, Xuefei Wang, Jiaguo Yu,Enhanced photoinduced stability and photocatalytic activity of AgBr photocatalyst by surface modification of Fe(III) cocatalyst, Appl. Catal. B, 2014, 144 (0), 75-82.
    13) Wang, X.; Zhan, S.; Wang, Y.; Wang, P.; Yu, H.; Yu*, J.; Hu, C., Facile synthesis and enhanced visible-light photocatalytic activity of Ag2S nanocrystal-sensitized Ag8W4O16 nanorods. J. Colloid Interface Sci. 2014, 422 (0), 30-37.
    14) Wang, X.; Wang, K.; Feng, K.; Chen, F.; Yu, H.*; Yu, J., Greatly enhanced photocatalytic activity of TiO2?xNx by a simple surface modification of Fe(III) cocatalyst. J. Mol. Catal. A: Chem. 2014, 391 (0), 92-98.
    15) Wang, P.; Xia, Y.; Wu, P.; Wang, X.; Yu, H.*; Yu, J., Cu(II) as a General Cocatalyst for Improved Visible-Light Photocatalytic Performance of Photosensitive Ag-Based Compounds. J. Phys. Chem. C 2014, 118 (17), 8891-8898.
    16) Wang, P.; Ming, T.; Wang, G.; Wang, X.; Yu, H.*; Yu, J., Cocatalyst modification and nanonization of Ag/AgCl photocatalyst with enhanced photocatalytic performance. J. Mol. Catal. A: Chem. 2014, 381 (0), 114-119.
    17) Yu, H.*; Cao, G.; Chen, F.; Wang, X.*; Yu, J.; Lei, M., Enhanced photocatalytic performance of Ag3PO4 by simutaneous loading of Ag nanoparticles and Fe(III) cocatalyst. Appl. Catal. B: Environ. 2014, 160–161 (0), 658-665.
    18) Tian, J.; Liu, R.; Wang, G.; Xu, Y.; Wang, X.*; Yu, H.*, Dependence of metallic Ag on the photocatalytic activity and photoinduced stability of Ag/AgCl photocatalyst. Appl. Surf. Sci. 2014, 319, 324-331.
    19) Wang, Xuefei, Yu, Rui, Wang, Ping, Chen, Feng, Yu, Huogen*, Co-modification of F?and Fe(III) ions as a facile strategy towards effective separation of photogenerated electrons and holes, Appl. Surf. Sci.,2015, 351: 66-73.
    20) Wang, Xuefei, Yu, Rui, Wang, Kang, Yang, Huagui, Yu, Huogen*, Facile template-induced synthesis of Ag-modified TiO2 hollow octahedra with high photocatalytic activity,Chin. J. Catal., 2015, 36 (12): 1211-2218.
    21) Wang, Xuefei, Li, Tianyi, Yu, Rui, Yu, Huogen*, Yu, Jiaguo, Highly efficient TiO2 single-crystal photocatalyst with spatially separated Ag and F- bi-cocatalysts: orientation transfer of photogenerated charges and their rapid interfacial reaction, J. Mater. Chem. A,2016, 4 (22): 8682-8689.
    22) Sun, Q.; Wang, P.; Yu, H.*; Wang, Xuefei*, In situ hydrothermal synthesis and enhanced photocatalytic H2-evolution performance of suspended rGO/g-C3N4 photocatalysts. J. Mol. Catal. A: Chem. 2016, 424, 369-376.
    23) Wang, X.; Lu, Q.; Wang, X.; Joo, J.; Dahl, M.; Liu, B.; Gao, C.; Yin, Y.*, Photocatalytic Surface-Initiated Polymerization on TiO2 toward Well-Defined Composite Nanostructures. ACS Appl. Mater. Interfaces 2016, 8 (1), 538-546.
    24) Chen, F.; Yang, H.; Wang, X.*; Yu, H.*, Facile synthesis and enhanced photocatalytic H-2-evolution performance of NiS2-modified g-C3N4 photocatalysts. Chin. J. Catal. 2017, 38 (2), 296-304.
    25) Wang, P.; Xu, S.; Xia, Y.; Wang, X.; Yu, H.*; Yu, J., Synergistic effect of CoPi-hole and Cu(ii)-electron cocatalysts for enhanced photocatalytic activity and photoinduced stability of Ag3PO4. Phys. Chem. Chem. Phys. 2017, 19 (16), 10309-10316.
    26) Wang, X.; Cheng, J.; Yu, H.*; Yu, J., A facile hydrothermal synthesis of carbon dots modified g-C3N4 for enhanced photocatalytic H2-evolution performance. Dalton Trans. 2017, 46 (19), 6417-6424.
    27) Yu, H.*; Cao, C.; Wang, X.; Yu, J., Ag-Modified BiOCl Single-Crystal Nanosheets: Dependence of Photocatalytic Performance on the Region-Selective Deposition of Ag Nanoparticles. J. Phys. Chem. C 2017, 121 (24), 13191-13201.
  申报或获得专利:
  1)负载型碘化银纳米粒子可见光光催化剂的合成方法(申请号:2.6), 余火根,刘莉,王雪飞,王苹
  2)Ag/Ag(I)-TiO2纳米晶可见光光催化剂的制备方法(申请号:8.8), 余火根,刘锐,王雪飞,王苹


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