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谢晓峰 当前位置:首页> 研究队伍>研究员>谢晓峰

  谢晓峰,研究员 

  纳米功能材料与光电器件课题组 

  工作电话:+86-21-52412722 

  电子邮件:xxfshcn@163.com 

    

  教育经历:  

  2005-2008,中科院上海硅酸盐研究所,材料物理与化学专业,博士。 

  2002-2005, 上海大学,应用化学专业,硕士。 

  1992-1996,北京服装学院,工业分析专业,本科。 

    

  工作经历:

  2019 -     , 中科院上海硅酸盐研究所,国家重点实验室,研究员 

  2010 - 2018,中科院上海硅酸盐研究所,国家重点实验室,副研究员 

  2012 - 2013,美国加利福尼亚大学圣芭芭拉分校(UCSB),访问学者 

  2008 - 2010,中科院上海硅酸盐研究所,国家重点实验室,助理研究员 

  1996 - 2002,金东纸业(江苏)有限公司,研发处,环境实验室主管 

    

  曾获得奖励、荣誉称号: 

  江苏省“双创人才”(2019年);江苏省“苏北发展特聘专家”(2019年);江苏省第五期“333高层次人才培养工程” 中青年学术技术带头人(2018年) 

    

  科研工作简介: 

  长期专注于光催化材料构-效关系及催化降解特性的基础研究与应用推广。创新提出的低温诱导结晶方法制备纳米氧化钛复合溶胶,溶胶具有高效催化、可见光敏感、光致超亲水等优异特性,可在环境中稳定保持活性10年以上。作为项目/课题负责人主持首批“十三五”国家重点研发计划、国家自然科学基金、产业化项目等二十余项,金额累计3000余万元。在国内外著名期刊发表SCI论文五十余篇,其中第一作者发表在Carbon上的论文被评为TOP50高引用率作者。申请专利22 项,获授权15 项。与美国、德国、日本、韩国等国外著名大学和研究所建立了良好合作关系,互访交流频繁,发表合作SCI论文12篇。与行业领先企业合作,如立邦、PPG集团、美国Fuller集团、东鹏集团、九牧卫浴、凯天环保、佛塑科技等推出一系列基于光催化应用的新产品,完成功能涂料、瓷砖洁具、自清洁玻璃、改性高分子薄膜等工程几十项,涂覆面积超过500万平米。2016年获得广东省企业科技特派员,广东省佛山市第三届创新领军人才称号,2017年受聘上海理工大学特聘研究生导师,获得江苏省盐城市515领军人才称号,2018年担任福建省重点实验室学术委员,江苏省第五期“333高层次人才”,2019年获得江苏省“双创人才”称号。 

    

     科研成果: 

  1. TiO2/TaS2 with superior charge separation and adsorptive capacity to the photodegradation of gaseous acetaldehyde, Chemical Engineering Journal 379 (2020) 122395, Qinglong Zeng, Xiao Wang, Xiaofeng Xie*, Guanhong Lu, Yan Wang, Shun Cheng Lee, Jing Sun. 
  2. Design of a rain-shower based cleaning system for simultaneous PM2.5 removal and CO2 capture of ambient air, Separation and Purification Technology 237 (2020) 116389, Sheng-Chieh Chen, Min Tang, Thomas H. Kuehn, Charles S. Lo, Dahai Zhao, Xiaofeng Xie, Jing Sun, Qingfeng Cao, David Y.H. Pui*. 
  3. Difference of photodegradation characteristics between single and mixed VOC pollutants under simulated sunlight irradiation, Journal of Photochemistry & Photobiology A: Chemistry 384 (2019) 112029, Zhuang Wang, Xiaofeng Xie*, Xiao Wang, Asad Mahmood, Hanxun Qiu, Jing Sun**. 
  4. New insights into the synergistic effect of active radicals and adsorptive ability on the photodegradation of gaseous acetaldehyde over reduced graphene Oxide/P25 composite, Journal of Hazardous Materials 380 (2019) 120814, Qinglong Zeng, Xiaofeng Xie*, Xiao Wang, Guanhong Lu, Haiwei Li, Shun Cheng Lee, Jing Sun**. 
  5. Doping effect and fluorescence quenching mechanism of N-doped graphene quantum dots in the detection of dopamine, Talanta 196 (2019) 563–571, Y. Ma, A.Y. Chen*, X.F. Xie, X.Y. Wang, D. Wang, P. Wang, H.J. Li, J.H. Yang, Y. Li. 
  6. Adsorption and Photodegradation of Acetaldehyde and Ethylene on TiO2 (001) Surface: Experimental and First Principle Studies, Catalysis Letters (2019) 149:2728–2738, Gansheng Shi, Asad Mahmood, Guanhong Lu, Xiao Wang, Shengrui Tong, Maofa Ge, Xiaofeng Xie, Jing Sun. 
  7.  Defect Chemistry of Er3+-Doped TiO2 and Its Photocatalytic Activity for the Degradation of Flowing Gas-Phase VOCs, J. Phys. Chem. C, 2019, 123 (19), pp 12321–12334, Zepeng Rao, Xiaofeng Xie*, Xiao Wang, Asad Mahmood, Shengrui Tong, Maofa Ge, Jing Sun*. 
  8. Polarity on adsorption and photocatalytic performances of N-GR/TiO2 towards gaseous acetaldehyde and ethylene, Applied Surface Science 485 (2019) 255–265, Xueping Dai, Yan Wang, Xiao Wang, Shengrui Tong, Xiaofeng Xie*. 
  9. Reversible redox behavior of Fe2O3/TiO2 composites in the gaseous photodegradation process, Ceramics International 45 (2019) 13187–13192, Xueping Dai, Guanhong Lu, Yidan Hu, Xiaofeng Xie*, Xiao Wang, Jing Sun. 
  10. Construction of nanoporous gold/g-C3N4 heterostructure for electrochemical supercapacitor, Electrochimica Acta, 2019, 294, 260-267, A.Y. Chen, T.T. Zhang, Y.J. Qiu, D. Wang, P. Wang, H.J. Li, Y. Li, J.H. Yang, X.Y. Wang*, X.F. Xie*. 
  11. Adsorption mechanism of typical oxygen, sulfur, and chlorine containing VOCs on TiO2(001) surface: First principle calculations, Applied Surface Science 2019, 471, 222–230, Asad Mahmood, Gansheng Shi, Xiaofeng Xie, Jing Sun* 
  12. Effect of Titanium Dioxide on Secondary Organic Aerosol Formation, Environ. Sci. Technol. 2018, 52, 11612-11620. Yi Chen, Shengrui Tong*, Jing Wang, Chao Peng, Maofa Ge*, Xiaofeng Xie, Jing Sun. 
  13. Ultrastable Photodegradation of Formaldehyde Under Fluorescent Lamp Irradiation by Anti-reflection Structure SnS2/TiO2 Composite, Journal of Photochemistry and Photobiology A: Chemistry, 2018, 364, 725-731, Guanhong Lu, Xiaofeng Xie*, Xiao Wang, Gansheng Shi, Qinglong Zeng, Doris Segets, Jing Sun**. 
  14. Efficient adsorption and sustainable degradation of gaseous acetaldehyde and o-xylene using rGO-TiO2 photocatalyst, Chemical Engineering Journal, 2018, 349, 708–718. Wenjiao Lin, Xiaofeng Xie*, Xiao Wang, Yan Wang, Doris Segets, Jing Sun*. 
  15. Enhanced photocatalytic performance of Ag@TiO2 for the gaseous acetaldehyde photodegradation under fluorescent lamp, Chemical Engineering Journal, 2018, 341 8392. Qinglong Zeng, Xiaofeng Xie*, Xiao Wang, Yan Wang, Guanhong Lu, David Y.H. Pui, Jing Sun. 
  16. Visible-Light Upconversion Carbon quantum dots decorated TiO2 for the Photodegradation of Flowing Gaseous Acetaldehyde, Applied Surface Science, 2018, 440(15): 266-274. Yidan Hu, Xiaofeng Xie*, Xiao Wang, Yan Wang, Yi Zeng, David Y.H. Pui, Jing Sun. 
  17. Filtration efficiency and loading characteristics of PM2.5 through composite filter media consisting of commercial HVAC electret media and nanofiber layerSeparation and Purification Technology 198 (2018) 137145. Min Tang, Sheng-Chieh Chen*, De-Qiang Chang, Xiaofeng Xie, Jing Sun, David Y.H. Pui. 
  18. Cu-Ni nanowire-based TiO2 hybrid for the dynamic photodegradation of acetaldehyde gas pollutant under visible light, Shuying Zhu, Xiaofeng Xie*, Sheng-Chieh Chen, Shengrui Tong, Guanhong Lu, David Y.H. Pui, Jing Sun, Applied Surface Science, 408(2017), 117-124. 
  19. Enhanced photoelectrochemical performance of planar p-Silicon by APCVD deposition of surface mesoporous hematite coating, Shipu Li, Peng Zhang*, Xiaofeng Xie, Xuefeng Song, Jing Liu, Liping Zhao,Han Chen, Lian Gao, Applied Catalysis B: Environmental, 2017 (200), 372-377. 
  20. Cesium-doped graphene grown in situ with ultrasmall TiO2 nanoparticles for high-performance lithium-ion batteries, Xiaoyu Lu, Xiaofeng Xie, Jianqiang Luo and Jing Sun*, New Journal of Chemistry, 41,7938-7946, (2017). 
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