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胡卫华 教授
发布时间2019-06-09 19:28:20     作者:

       

 

胡卫华

西南大学教授、博士生导师入选重庆市引进高层次人才(2013、重庆市高校中青年骨干教师(2016、重庆市高校优秀人才支持计划(2017年),获重庆市自然科学奖二等奖一项(2019,第一完成人)。发表SCI论文100余篇,总引用超4000次,个人H指数40,入选美国斯坦福大学全球前2%顶尖科学家榜单(World's Top 2% Scientists 2022)“年度影响力”榜单。授权国家发明专利9项。先后主持国家自然科学基金3项,其他项目多项。

联系方式:

whhu@swu.edu.cn

西南大学材料与能源学院(21教学楼)208室,400715

学习与工作经历:

1998/092002/06:武汉大学,应用化学专业,理学学士

2002/092005/06:武汉大学,物理化学专业,理学硕士

2005/072005/12:中科院水生生物研究所,研究助理

2006/012011/04:新加坡南洋理工大学,博士

2010/042011/05:新加坡南洋理工大学,研究助理;

2011/062012/08:新加坡南洋理工大学,博士后研究员;

2011/092015/06:西南大学,特聘副教授, 硕士生导师

2015/07目前:西南大学,教授, 硕士生导师

2015/11目前:西南大学,教授, 士生导师

研究兴趣:

1. 两种光学检测技术(SPROIRD)及其生化传感和电化学过程原位探测应用

2.  ORR, OERHER等几类重要电化学反应的高效催化

主持项目:

1. 国家自然科学基金(22074125),基于界面结构增强的高灵敏、无标记OIRD免疫微阵列芯片,2021/01-2024/12主持,经费:62

2. 国家自然科学基金(21273173),电化学调制表面引发原子转移自由基聚合的现场SPR 研究,2013/01-2016/12,经费:80

3. 国家自然科学基金(21205098),SPRI 微阵列芯片串联信号放大新策略及其肝癌早期诊断应用,2013/01-2015/12,经费:25

4. 重庆市自然科学基金面上项目cstc2021jcyj-msxmX1165,多孔薄膜电极中碱金属离子电化学脱嵌行为的原位、空间分辨OIRD光学研究,2022/01-2023/12,主持,经费10

5. 湖北省重点研发计划,输变电设备故障气体检测的微纳传感材料与器件关键技术,2021/01-2022/12子课题,经费:50

6. 重庆市自然科学基金(cstc2016jcyjA0493),高灵敏等离子体共振传感界面的构筑,2016/07-2019/06,经费:5

7. 重庆市自然科学基金(cstc2012jjA10099),用于多组分肝癌标志物检测的灵敏SPRI 免疫芯片,2012/09-2015/09,经费:5

8. 重庆市高校优秀人才支持计划,灵敏OIRD免疫检测芯片, 2018/01-2019/12,经费:20

9. 西南大学基本科研业务费重点项目(XDJK2018B001),高灵敏OIRD免疫芯片,2018/04/12-2020/12/31,经费:20

10.西南大学科技新星资助计划;2016/07/01-2019/06/30经费:10

11.西南大学基本科研业务费重点项目(XDJK2015B014),基于光学界面调制的斜入射光反射差免疫检测信号增敏,2015/05/12-2017/12/31,经费:10万;

12.西南大学基本科研业务费一般项目XDJK2012C049),用于多组分食源性致病菌检测的表面等离子体共振成像免疫芯片,2012/01/01-2013/12/31,经费:4万;

13.西南大学人才引进基金(SWU111071),经费:30

 

讲授课程

  1. 《电极过程动力学》、《电极过程动力学及电化学方法》,研究生课程,2015-至今

  2. 《普通化学》,本科生课程,2021-至今

3《能源电化学基础》,本科生课程,2021-至今

荣誉奖励:

1. 重庆市自然科学奖二等奖,基于功能材料的生化传感界面构建,2019年,第一完成人;

2. 重庆产学研创新成果奖一等奖,高灵敏、多标志物并行检测纸基生物芯片的开发和应用,2019年,第二完成人;

3.   2018-2020学年度西南大学优秀教师。

主要论文:

For full publication list, please visit http://www.researcherid.com/rid/E-4734-2013 or http://orcid.org/0000-0001-6278-9551.

 

  1. Feng, Z. H.; Li, X. Y.; Fang, C. X.; Li, J. Y.; Wang R. F.; Hu, W. H.* Polystyrene microsphere monolayer assembled on glass slide for label-free OIRD immunoassay with enhanced sensitivity. Sensors & Actuators: B. Chemical 2023, 379, 133290

  2. Li, J. Y.; Wang, X. D.*; Yi, L. Y.; Fang, C. X.; Li, T. H.; Sun, W. *; Hu, W. H. * Plasma-assisted rhodium incorporation in nickel-iron sulfide nanosheets: enhanced catalytic activity and Janus mechanism for overall water splitting. Inorganic Chemistry Frontiers 2022, 9, 6237–6247

  3. Li, X. Y.; Fang, C. X.; Feng, Z. H.; Li, J. Y.; Li, Y.; Hu, W. H.* Label-free OIRD microarray chips with nanostructured sensing interface: enhanced sensitivity and mechanism. Lab on a Chip, 2022, 22, 3910 – 3919.

  4. Fang, C. X.; Li, J. Y.; Feng, Z. H.; Li, X. Y.; Cheng, M.; Qiao, Y.; Hu, W. H.* Spatiotemporal Mapping of Extracellular Electron Transfer Flux in Microbial Fuel Cell with Oblique Incident Reflectivity Difference Technique. Analytical Chemistry, 2022, 94, 10841−10849.

  5. Fang, C. X.; Zhong, C. Y.; Chen, N.; Yi, L. Y.; Li, J. Y.; Hu, W. H.* Reusable OIRD Microarray Chips Based on a Bienzyme-Immobilized Polyaniline Nanowire Forest for Multiplexed Detection of Biological Small Molecules. Analytical Chemistry 2021, 93, 10697−10703.

  6. Yi, L. Y.; Feng, B. M.; Chen, N.; Li, W.; Li, J. Y.; Fang, C. X.; Yao, Y. X.*; Hu, W. H.* Electronic interaction boosted electrocatalysis of iridium nanoparticles on nitrogen-doped graphene for efficient overall water splitting in acidic and alkaline media. Chemical Engineering Journal 2021, 415, 129034

  7. Yi, L. Y.; Niu, Y. L.; Feng, B. M.; Zhao, M.; Hu, W. H. * Simultaneous phase transformation and doping via a unique photochemical-electrochemical strategy to highly active Fe-doped Ni oxyhydroxide oxygen evolution catalyst. Journal of Materials Chemistry A 2021, 9, 4213-4220.

  8. Pu, Z. H.; Liu, T. T.; Amiinu, I. S.; Cheng, R. L.;  Wang, P. Y.;  Zhang, C. T.; Ji, P. X.; Hu, W. H.*;  Liu, J.*;  Mu, S. C.* Transition-Metal Phosphides: Activity Origin, EnergyRelated Electrocatalysis Applications, and Synthetic Strategies. Advanced Functional Materials 2020, 30, 2004009.

  9. Zhao, M.; Li, W.; Li, J. Y.; Hu, W. H.*; Li, C. M.* Strong Electronic Interaction Enhanced Electrocatalysis of Metal Sulfide Clusters Embedded Metal-Organic Framework Ultrathin Nanosheets toward Highly Efficient Overall Water Splitting. Advanced Science 2020, 7, 2001965.

  10. Li, L.; Zhong, C. Y.; Feng, B. M.; Chen, N.; Dai, J.; Lu, H. B.; Hu, W. H.* Optical imaging of the potential distribution at transparent electrode/solution interfaces. Chemical Communications 2020, 56, 4531-4534.

  11. Zhong, C. Y.; Li, L.; Chen, N.; Peng Z. P.; Hu, W. H.* Spatial-resolved electrochemical reversibility of conducting polymer thin film imaged by oblique-incidence reflectivity difference. Chemical Communications 2020, 56, 1972 - 1975.

  12. Zhong, C. Y.; Li, L.; Mei, Y. H; Dai, J.; Hu W. H.* Lu, Z. S.; Liu, Y.; Li, C. M.; Lu, H. B.* Chip Architecture-Enabled Sensitivity Enhancement of Oblique-Incidence Reflectivity Difference for Label-Free Protein Microarray Detection. Sensors & Actuators: B. Chemical. 2019, 294, 216-223

  13. Wu, X. J.; Feng, B. M.; Li, W.; Niu, Y. L.; Yu, Y. N.; Lu, S. Y.; Zhong, C. Y.; Liu, Y. P.; Tian, Z. Q.; Chen, L.*; Hu, W. H.*; Li, C. M. Metal-support interaction boosted electrocatalysis of ultrasmall iridium nanoparticles supported on nitrogen doped graphene for highly efficient water electrolysis in acidic and alkaline media. Nano Energy 2019, 62, 117-126.

  14. Niu, Y. L. #; Li, W. #; Wu, X. J.; Feng, B. M.; Yu, Y. N.; Hu, W. H.*; Li, C. M. Amorphous nickel sulfide nanosheets with embedded vanadium oxide nanocrystals on nickel foam for efficient electrochemical water oxidation. Journal of Materials Chemistry A, 2019, 7, 10534-10542

  15. Wei W.*; Nong, J. P.; Mei Y. H; Zhong C. Y.; Lan G. L.; Hu W. H.* Single-layer graphene-coated gold chip for enhanced SPR imaging immunoassay. Sensors & Actuators: B. Chemical 2018, 273, 1548-1555

  16. Chen, D. Q.; Hu, W. H.* In Situ Investigation of Electrochemically Mediated Surface-Initiated Atom Transfer Radical Polymerization by Electrochemical Surface Plasmon Resonance. Analytical Chemistry, 2017, 89, 4355–4358.

  17. Zhao, L.; Wang, W.; Hu, W. H.* Simultaneous Transfer and Imaging of Latent Fingerprints Enabled by Interfacial Separation of Polydopamine Thin Film. Analytical Chemistry, 2016, 88, 10357.

  18. Hu, W. H.; Liu, Y. S.; Chen, T.; Liu, Y. *; Li, C. M. * Hybrid ZnO Nanorod-Polymer Brush Hierarchically Nanostructured Substrate for Sensitive Antibody Microarrays. Advanced Materials, 2015, 27, 181.

  19. Zhang, H. H.; Liu, X. Q.; He, G. L.; Zhang, X. X.; Bao, S. J.; Hu, W. H.* Bioinspired Synthesis of Nitrogen/Sulfur Co-doped Graphene as an Efficient Electrocatalyst for Oxygen Reduction Reaction. Journal of Power Sources, 2015, 279, 252.

  20. Hu, W. H.*; He, G. L.; Zhang H. H.; Wu, X. S.; Li, J. L.; Zhao, Z. L.; Qiao, Y.; Lu, Z. S.; Liu, Y.; Li, C. M. Polydopamine Functionalization of Graphene Oxide to Enable Dual Signal Amplification for Sensitive Surface Plasmon Resonance Imaging Detection of Biomarker. Analytical Chemistry, 2014, 86, 4488.

     

    授权专利:

  21. ZL201210550889.1纳米氧化锌修饰的免疫毛细管及其制备方法和应用。授权公告日:2016.05.18

  22. ZL201310058455.4微阵列生物芯片三维载体及其制备方法。授权公告日:2015.03.25

  23. ZL201410310087.2,基于枝状聚合物的微阵列抗体芯片的制备方法及其产品。授权公告日:2016.08.24

  24. ZL 201610058283.4,一种基于聚多巴胺的制备图案化金属薄膜的方法及其产品。授权公告日:2018.08.10

  25. ZL 201610505460.9一种基于聚多巴胺薄膜界面分离实现潜指纹显影及转移的一体化方法。授权公告日:2018.11.23

  26. ZL 201611245830.6聚多巴胺修饰n型半导体材料在构建光电免疫传感器中的应用。授权公告日:2019. 03.08

  27. ZL 201710742765.6,一种用于潜指纹转移、显影或内含物一体化全干态检测的复合膜及检测方法。授权公告日:2020. 01.03

  28. 胡卫华伍秀菊一种高效铱基电解水双功能催化剂及其制备方法和应用,专利号 201910130029.4 申请日期:2019.02.21,授权公告日:2021.11.09

  29. 胡卫华梅一鸿一种微井结构SPRi芯片的制备方法及其产品和应用,专利号 201911037760.9, 申请日期:2019.10.29授权公告日:2022.03.18