袁珮

教授/博士生生导师/闽江学者/材料科学与工程学院执行院长

最高学历:

复旦大学化学专业博士

研究领域:

新材料与催化剂工程以及新能源化工                   

E-mail:

yuanpei@fzu.edu.cn

袁珮,福州大学教授,博士生导师,现任材料科学与工程学院执行院长。研究方向为新材料与催化剂工程以及新能源化工,主持国家自然科学基金面上项目3项、青年基金1项,省部级基金5项,发表高水平论文70余篇,申请发明专利20余件,入选教育部青年长江学者、福建省闽江学者特聘教授、福建省特殊支持人才“双百计划” 青年拔尖创新人才、北京市科技新星等人才计划。曾获教育部霍英东教育基金青年教师奖、福建省向上向善好青年荣誉称号、福州市五四青年奖章。

 教育经历:

2010年毕业于复旦大学化学系,获博士学位。

2006-20072008-2009获国家留学基金委资助赴澳大利亚昆士兰大学访学。

20087-9月赴瑞典斯德哥尔摩大学交流访问。

2010-2011在澳大利亚昆士兰大学从事博士后研究。

 代表性著作:

(1)  Qin Yang+, Yi Jia+, Fenfei Wei, Linzhou Zhuang, Dongjiang Yang, Jizi Liu, Xin Wang, Sen Lin, Pei Yuan,* and Xiangdong Yao*, Understanding the Activity of Co-N4-xCx in Atomic Metal Catalysts for Oxygen Reduction Catalysis, Angew. Chem. Int. Ed. 2020, 59, 6122-6127.

(2)  Zimeng Li, Hongwei Liang, Xiaoling Li, Chen Yang, Bingqing Ge, Shaohui Xiong, Hongwei Zhang*, Tinghai Wang, Pei Yuan*, Adjusting surface acidity of hollow mesoporous carbon nanospheres for enhanced adsorptive denitrogenation of fuels, Chemical Engineering Science, 2020, 228, 115963.

(3)  Yan Guo, Jiangtao Yang, Jiayuan Zhuang, Hongming Sun, Hongwei Zhang, Yuanyuan Yue, Haibo Zhu, Xiaojun Bao, Pei Yuan*, Selectively Catalytic Hydrogenation of Styrene-Butadiene Rubber over Pd/g-C3N4 Catalyst, Applied Catalysis A, General, 2020, 117312

(4) Shuhan Wang†, Bingqing Ge†, Yixuan Yin, Xinru Wu, Haibo Zhu, Yuanyuan Yue, Zhengshuai Bai, Xiaojun Bao, Pei Yuan*, Solvent Effect in Heterogeneous Catalytic Selective Hydrogenation of Nitrile Butadiene Rubber: Relationship between Reaction Activity and Solvents with Density Functional Theory Analysis, ChemCatChem, 2020, 12, 663-672.

(5) Jian Chen, Zhijie Wu, Haiyan Liu, Xiaojun Bao, and Pei Yuan*, A Surface-Cofunctionalized Silica Supported Palladium Catalyst for Selective Hydrogenation of Nitrile Butadiene Rubber with Enhanced Catalytic Activity and Recycling Performance, Ind. Eng. Chem. Res. 2019, 58, 11821−11830

(6)  P. Yuan, N. Liu, L. Zhao, X. Zhou, L. Zhou, G. Auchterlonie, X. Yao, J. Drennan, G. Lu, J. Zou* and C. Yu*, Solving Complex Concentric Circular Mesostructures Using Electron Tomography, Angew. Chem. Int. Ed., 2008, 47, 6670.

(7)  P. Yuan, X. Zhou, H. Wang, N. Liu, Y. Hu, G. Auchterlonie, J. Drennan, X. Yao, G. Lu, J. Zou,* and C. Yu* Electron-Tomography Determination of the Packing Structure of Macroporous Ordered Siliceous Foams Assembled From Vesicles, Small, 2009, 5, 377.

(8)  P. Yuan; Sun, J. L.; Xu, H. Y.; Zhou, L.; Liu, J. Z.; Zhang, D. L.; Wang, Y. H.; Jack, K. S.; Drennan, J.; Zhao, D. Y.; Lu, G. Q.; Zou, X. D.; Zou, J.; Yu, C. Z. Extensive Inspection of an Unconventional Mesoporous Silica Material at All Length-scales, Chem. Mater., 2011, 23, 229.

(9) P. Yuan*, J. X. Liu, Y. T. Li, Y. Fan, G. Shi, H. Y. Liu, X. J. Bao, Effect of pore diameter and structure of mesoporous sieve supported catalysts on hydrodesulfurization performance, Chem. Eng. Sci., 2014, 111, 381-389.

(10)  S. F. Shan, P. Yuan*, W. Han, G. Shi, X. J. Bao* Supported NiW catalysts with tunable size and morphology of active phases for highly selective hydrodesulfurization of fluid catalytic cracking naphtha, J. Catal, 2015, 330, 288.

(11)  P. Yuan, J. Yang, H. W. Zhang, H. Song, X. D. Huang, X. J. Bao, J. Zou, and C. Z. Yu*, New Insight into Ordered Cage-Type Mesostructures and Their Pore Size Determination by Electron Tomography, Langmuir, 2015, 31, 2545.

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