中山大学副教授,博士生导师
邮箱:fangpp3@mail.sysu.edu.cn
通讯地址:深圳市光明区公常路66号工学园
邮编:518107
教育经历
2001.09—2005.07 山东大学化学与化工学院获得学士学位;
2005.09—2011.06 厦门大学化学化工学院获得博士学位;
2008.09—2011.06 法国巴黎第六大学化学系获得博士学位。
工作经历
2011.07—2013.06 瑞士洛桑联邦理工学院化学系博士后;
2013.07—至今 中山大学,讲师、副教授。
研究领域
能源催化;谱学电化学;表面增强拉曼光谱;CO2电催化还原。
科研项目
国家自然科学基金面上项目,主持, (2021)
广东省自然科学基金面上项目,主持, (2019)
广州市珠江科技新星,主持,(2017)
高校基本科研业务费青年教师重点培育项目,主持,(2017)
国家自然科学基金青年项目,主持,(2014)
高校基本科研业务费青年教师培育项目,主持,(2014);
主持教育部留学归国人员基金,主持,(2014)。
获奖情况
中山大学一流课程(2022)
中山大学芙兰奖(2018)
广东省青年珠江学者(2017)
代表性论著
1. Zhang, Y.-J.; Ze, H.; Fang, P.-P.*; Huang, Y.-F.*; Kudelski, A.*; Fernandez-Vidal, J.*; Hardwick, L. J.*; Lipkowski, J.*; Tian, Z.-Q.*; Li, J.-F.*, Shell-isolated nanoparticle-enhanced Raman spectroscopy. Nature Reviews Methods Primers 2023, 3 (1), 36.
2. Li, Y.-F.; Zou, C.-J.; Liu, X.-B.; Gan, F.*; Fang, P.-P.*, Highly Sensitive and Selective Detection of Pharmaceuticals on Au/MIL-101(Cr) by SERS. Analytical Chemistry 2023, 95 (20), 7933-7940.
3. Liu, Q.; Zhang, X.-G.; Du, Z.-Y.; Zou, C.-J.; Chen, H.-Y.; Zhao, Y.; Dong, J.-C.; Fang, P.-P.*; Li, J.-F.*, Converting CO2 to ethanol on Ag nanowires with high selectivity investigated by operando Raman spectroscopy. Science China-Chemistry 2023, 66 (1), 259-265.
4. Wang, Q.-Y.; Li, Y.-H.; Zhao, Y.; Chen, Y.-Y.; Geng, B.-J.; Ye, R.-K.; Liu, Q.; Liu, X.-Q.; Tong, Y.-X.; Zhang, Y.-J.; Cheng, J.; Fang, P.-P.*; Hu, J.-Q.*; Li, J.-F.*; Tian, Z.-Q., Investigating Why Sulfurization Can Greatly Improve Ethanol Selectivity for Carbon Dioxide Electroreduction. CCS Chemistry 2022, 4 (10), 3319-3328.
5. Sun, Y. L.; A, Y. L.; Yue, M. F.; Chen, H. Q.; Ze, H.; Wang, Y. H.; Dong, J. C.; Tian, Z. Q.; Fang, P. P.*; Li, J. F.*, Exploring the Effect of Pd on the Oxygen Reduction Performance of Pt by In Situ Raman Spectroscopy. Analytical Chemistry 2022, 94 (11), 4779-4786.
6. Fu, B.-B.; Tian, X.-D.*; Song, J.-J.; Wen, B.-Y.; Zhang, Y.-J.; Fang, P.-P.*; Li, J.-F.*, Self-Calibration 3D Hybrid SERS Substrate and Its Application in Quantitative Analysis. Analytical Chemistry 2022, 94 (27), 9578-9585.
7. Wang, Q. Y.; Chen, Y. Y.; Ye, R. K.; Liu, Q.; Chen, H. Y.; Yang, H.; Li, M. Y.; Hu, J. Q.*; Fang, P. P.*, Instantly Detecting Catalysts' Hot Spots Temperature In Situ during Photocatalysis by Operando Raman Spectroscopy. Analytical Chemistry 2021, 93 (46), 15517-15524.
8. Ye, R. K.; Sun, S. S.; He, L. Q.; Yang, S. R.; Liu, X. Q.; Li, M. D.*; Fang, P. P.*; Hu, J. Q.*, Surface engineering of hematite nanorods by 2D Ti3C2-MXene: Suppressing the electron-hole recombination for enhanced photoelectrochemical performance. Applied Catalysis B: Environmental 2021, 291, 120107.
9. Yang, H.; Wang, Z.-H.; Zheng, Y.-Y.; He, L.-Q.; Zhan, C.; Lu, X.; Tian, Z.-Q.; Fang, P.-P.*; Tong, Y., Tunable Wavelength Enhanced Photoelectrochemical Cells from Surface Plasmon Resonance. Journal of the American Chemical Society 2016, 138 (50), 16204-16207.
10. Yang, H.; He, L.-Q.; Hu, Y.-W.; Lu, X.; Li, G.-R.; Liu, B.; Ren, B.*; Tong, Y.*; Fang, P.-P.*, Quantitative Detection of Photothermal and Photoelectrocatalytic Effects Induced by SPR from Au@Pt Nanoparticles. Angewandte Chemie-International Edition 2015, 54 (39), 11462-11466.

