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Name: | Xufeng LIN | |||||
Academic Title: | Professor | |||||
Advisor Type: | PhD director | |||||
Department: | Chemistry | |||||
Research Interests: | Catalytic chemistry, industrial catalysis | |||||
E-Mail: | ||||||
Telephone: | 260291732(QQ) | |||||
◎Educational Background | ||||||
Ph.D. Physical Chemistry, The University of Hong Kong (Hong Kong), 2003-2007 M.Sc. Physical Chemistry, Xiamen University (Xiamen, China), 2000-2003 B.Sc. Chemistry, Xiamen University (Xiamen, China), 1996-2000 | ||||||
◎Work Experience | ||||||
Postdoctoral Research Fellow in Catalysis Center, Northwestern University, Evanston, IL, USA, in 2007-2009. Associate Professor in Chemistry Department in College of Chemistry and Chemical Engineering (belonged to College of Science from May, 2011) in 2009-2015. Professor in Chemistry Department in College of Chemistry and Chemical Engineering (belonged to College of Science before Dec,2021) from 2016 to present. | ||||||
◎Research Direction | ||||||
[1] To develop new catalyst preparation method for achieving atomically dispersion of catalytic active components. Such prepared catalysts are hopeful for improving catalytic activity, able to help unraveling the structure-activity relationship, [2] To develop new modification method for catalytic active components in order to change the catalytic stability of active components and selectivity to particular products. Such prepared catalysts are hopeful and useful for developing processes for producing chemical commodities and/or protecting environments with improved efficiency and/or being less energy-cost. [3] To study the kinetic and thermodynamic features of interested catalytic reaction processes, and to unravel the reaction mechanism of interested catalytic processes, using the first-principle quantum chemical tools, in order to provide theoretical insights for developing good-performance catalytic materials. To combine experimental and theoretical studies for better understanding and help design new catalytic active sites. | ||||||
◎Research Project | ||||||
[1] Single-site metal center Cr catalysts for dehydrogenation of light alkanes: preparation, structure and the structure-performance relationship, with 770 K CNY funded by National natural science foundation of China from Jan 2016 to Dec 2019. [2] The study of bifuctional catalysts for the hydro-deoxygenation of polyols and monosaccharides, with 210 K CNY funded by National natural science foundation of China for Young Scientists from Jan 2011 to Dec 2013. | ||||||
◎Representative Papers and Patents | ||||||
1. Paper [1] Unraveling how the H2-treatment helps improve the performances of Cu and Ag loaded Y zeolites for adsorptive desulfurization, Zhengjian Hou, Ling Wei, Xinyuan Feng, Neng Qin, Yanyan Xi*, Xufeng Lin*, Chuangye Wang, ACS Omega, 2020, 5, 6309-6320. [2] The electronic and steric effects of neutral and ionic phosphines on Ir(I)-complex catalyzed hydroaminomethylation of olefins Huan Liu, Da Yang, Yixuan Yao, Yongqiang Xu, Hongyan Shang*, Xufeng Lin*, Molecular Catalysis, 2020, 485, 110843. [3] Remote Directed Isocyanation of Unactivated C(sp3)-H Bonds: Forging Seven-Membered Cyclic Ureas Enabled by Copper Catalysis, Hongwei Zhang, Peiyuan Tian, Lishuang Ma, Yulu Zhou, Cuiyu Jiang, Xufeng Lin, Xiao Xiao, Organic Letters, 2020, 22, 997-1002. [4] UiO-66 supported Fe catalyst: A vapor deposition preparation method and its superior catalytic performance for removal of organic pollutants in water Huimin Zhuang, Bili Chen, Wenjin Cai, Yanyan Xi*, Tianxu Ye, Chuangye Wang, Xufeng Lin*, R. Soc. open sci. 2019, 6, 182047. [5] SiO2-Modified Pt/Al2O3 for Oxidative Dehydrogenation of Ethane: A Preparation Method for Improved Catalytic Stability, Ethylene Selectivity, and Coking Resistance Yanyan Xi, Jianmei Xiao, Xufeng Lin*, Weining Yan, Chuangye Wang, Chenguang Liu, Industrial & Engineering Chemistry Research 2018,57,10137-10147 [6] Surface concentration or surface excess, which one dominates the surface tension of multicomponent mixtures? Chuangye Wang, Xueling, Wang, Feng Liu, Zhiyang Jiang, Xufeng Lin, Coll. Poyl. Sci. 2018, 296, 89-93. [7] Methane activation on nickel oxide clusters with a concerted mechanism: a density functional theory study of the effect of silica support. Yanyan Xi, Bili Chen, Xufeng Lin*, Chuangye Wang, Hui Fu, J. Mol. Model. 2016, 22, R79. [8] The substituent effect of the pentafluorophenyl groups on ruthenium- porphyrin- catalyzed intramolecular amidation of sulfamate ester: A DFT study. Xufeng Lin*, Bili Chen, Yanyan Xi, Chuangye Wang, Hui Fu, Comp. Theo. Chem. 2016, 1080, 1-9. [9] The effect of a silica support: a density functional theory study of the C-H bond activation of ethane on a nickel oxide cluster, Xufeng Lin*, Bili Chen, Yanyan, Xi, David L. Phillps, Wenyue Guo, J. Phys. Org. Chem. 2016, 29, 134-144. [10] A density functional theory study on the effect of silica support: Methane activation on nickel oxide clusters through a radical mechanism. Yanyan Xi, Bili Chen, Xufeng Lin*, Hui Fu, Chuangye Wang, Comp. Theo. Chem. 2016, 1076, 65-73. [11] Surface structure of aqueous ionic surfactant solutions and effects of solvent therein-a computer simulation study Chuangye Wang, Zhiyang Jiang, Ling Xu, Aiting Kan, Hui Fu, Xufeng Lin, Coll. Poly. Sci. 2016, 294,575-581.
2.Patent [1] Xufeng Lin et al. Supported Platinum Catalysts modified with Ti components and their application in hydrogenation reactions. Patent No. ZL 201810463014.5. [2] Xufeng Lin et al. A device for oxidative dehydrogenation of ethane to ethylene and its operation method. Patent No. ZL 201410193452.6. | ||||||
◎Representative Works | ||||||
N. A. | ||||||
◎Awards and Honors | ||||||
[1] Scientific award: Design, preparation and catalytic mechanism study of the catalytic systems for upgrading small-molecule organic compounds. [2] Teaching award: Resource construction and teaching practice based on the combined teaching modes for physical chemical course, 2nd class award by China University of Petroleum (East China) in Nov. 2017, No. 5 out of 7 team members. [3] Outstanding Teacher of China University of Petroleum (East China) in Sep. 2013. [4] Active Member in Trade Union of China University of Petroleum (East China) in Dec. 2013. | ||||||
◎Courses Offered | ||||||
For Undergraduate: Physical Chemistry 2-1&2-2, Physical Chemistry, Physical Chemistry Experiments 2-1 & 2-2, Physical Chemistry Experiments, Freshman Seminar (Chemistry), Computational Chemistry. For Postgraduate:Advanced Physical Chemistry. | ||||||
◎Student Training | ||||||
1.Supervise Postgraduate Students 3 PhD students and 24 master students join/ had joined in our group. To date, 15 master students had achieving their M.Sc degree, with 4 of them continuing to perform PhD study, and 11 of them participating in industrial enterprises. 2.Admissions Instructions PhD program: Chemistry; MSc program: Chemistry, Chemical engineering and technology, Chemical engineering. All students with chemistry background (e.g. chemistry, chemical engineering, material, environment specialties) and being interested in chemistry and/or chemical engineering, are welcome to join our group. | ||||||
◎Part-time Academic Job | ||||||
[1] Referee for several academic journals like J. Phys. Chem. C and Appl. Catalysis A/B. | ||||||
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