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Name: | Nan Shi | ||||
Academic Title: | Associate Professor | ||||
Advisor Type: | Master's Supervisor | ||||
Department: | Applied Chemistry | ||||
Research Interests: | Biomass conversion, Biomass materials | ||||
E-Mail: | shinan@upc.edu.cn | ||||
Telephone: | 15092251580 | ||||
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◎Educational Background | |||||
2008.9-2012.6,Bachelor, Department of Chemistry, Nankai University 2012.9-2017.6,Doctor of Natural Science, Department of Polymer Chemistry and Physics,Peking University 2015.9-2015.10,Visitor,Department of Chemistry, New York University, USA | |||||
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◎Work Experience | |||||
2017.7-2019.12,Lecturer, Department of Applied Chemistry, China University of Petroleum 2017.7-2019.12,Post Doc., China University of Petroleum 2020.1-,Associate Professor, Department of Applied Chemistry,China University of Petroleum | |||||
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◎Research Direction | |||||
[1] Biomass Conversion and Utilization New inorganic catalysts will be developed to realize efficient and selective decomposition of biomass, obtain aromatic valuable products, and resolve the problems in biomass conversion. Representative researches were published in Bioresouce Technology, 2019, 283, 174-183,Bioresouce Technology, 2019, 273, 677-681。
[2] Novel Photocatalyst Development Facets adjusted and multimetallic photocatalyst composites based on semiconductors and inorganic clusters will be developed. Photocatalytic cleavage of C-O and C-C bond will be researched, and green conversion of biomass will be investigated.
[3] Biomass Materials and Polymeric Smart Materials In this realm, stimuli-responsive materials composed of natural polymers will be constructed, the inter- and intramolecular interactions will be investigated, and the new applications in self-healing, displaying, sensing, and etc. will be developed. Representative researches were published in Int. J. Biol. Macromo, 2021, 187, 722-731, Chem. Commun., 2019, 55, 1136-1139 and Chem. Commun., 2017, 53, 4390-4393.
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◎Research Project | |||||
[1] Lignin-based polyelectrolytes/metal cations non-conventional luminescent hybrid materials driven by electrostatic interactions. NSFC. [2] Differential upgrading characteristics of petroleum contaminated soil and guiding remediation strategy (pyrolysis remediation strategy). National Key Research and Development Program of China. [3] The decomposition of lignin by polyoxometalates-based bifunctional catalysts to produce high value-added chemicals. Chinese Postdoctoral Science Foundation. [4] Assessment of the oxidative catalyzation of sawdust by heteropoly acid to produce value-added chemicals. Application Research Project in Qingdao. [5] V-containing inorganic clusters oxidative catalyze aromatic biomass decomposition. Fundamental Research Funds for the Central Universities of China. [6] Dawson-type polyoxometalates degrade lignin to produce aromatic compound. Talent introduction fund of China University of Petroleum. [7] Temporal and spatial characteristics of high concentration oil contaminated soil and decision system of remediation technology. National Key Research and Development Program of China. | |||||
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◎Representative Papers and Patents | |||||
1. Paper [1] Nan Shi, Yuanyuan Ding, Dong Wang, Xinyi Hu, Lin Li, Caili Dai, Dong Liu, Lignosulfonate/diblock copolymer polyion complexes with aggregation-enhanced and pH-switchable fluorescence for information storage and encryption. Int. J. Biol. Macromo, 2021, 187, 722-731. IF = 6.953 [2] Nan Shi, Dong Liu, Qiang Huang, Zhongshan Guo, Ruixue Jiang, Feng Wang, Qingtai Chen, Min Li, Guobo Shen, Fushan Wen, Product-oriented decomposition of lignocellulose catalyzed by novel polyoxometalates-ionic liquid mixture. Bioresource Technol., 2019, 283, 174-183. IF = 6.669 [3] Nan Shi, Rong Wang, Xiaoshi Wang, Junyan Tan, Yan Guan, Zhibo Li, Xinhua Wan, Surface plasmon resonance-assisted circularly polarized luminescent hybrid assemblies of Eu-containing polyoxometalates. Chem. Commun., 2019, 55, 1136-1139. IF = 6.164 [4] Nan Shi, Dong Liu, Falu Dang, Qingtai Chen, Min Li, Fushan Wen, Bifunctional and recyclable Dawson-type polyoxometalates catalyze oxidative degradation of lignocellulose to selectively produce phthalates. Bioresource Technol., 2019, 273, 677-681. IF = 6.669 [5] Qingtai Chen, Dong Liu, Chongchong Wu, Kaisheng Yao, Zhiheng Li, Nan Shi, Fushan Wan, Ian D, Gates, Co-immobilization of cellulase and lysozyme on amino-functionalized magnetic nanoparticles: An activity-tunable biocatalyst for extraction of lipids from microalgae. Bioresource Technol., 2018, 263, 317-324. IF = 5.807 [6] Zhiheng Li, Dong Liu, Zhuowu Men, Linhua Song, Yijun Lv, Pingping Wu, Bin Lou, Yadong Zhang, Nan Shi, Qingtai Chen, Insight into effective denitrification and desulfurization of liquid fuel with deep eutectic solvents: an innovative evaluation criterion to filtrate extractants using the compatibility index. Green Chem., 2018, 20, 3112–3120. IF = 8.586 [7] Min Li, Dong Liu, Xingshun Cong, Qingtai Chen, Nan Shi, Junhui Wu, Yuanxi Yang, Xuebing Zhang, Chongchong Wu, Isolation and Identification of Six Difunctional Ethyl Esters from Bio-oil and Their Special Mass Spectral Fragmentation Pathways. E & F, 2018, 32, 10649−10655. IF = 3.024 [8] Nan Shi, Junyan Tan, Xinhua Wan, Yan Guan, Jie Zhang, Induced salt-responsive circularly polarized luminescence of hybrid assemblies based on achiral Eu-containing polyoxometalates. Chem. Commun., 2017, 53, 4390-4393. IF = 6.319 [9] Nan Shi, Jie Zhang, Xinhua Wan, Polyoxometalates/Block Copolymer Based Stimuli-responsive Hybrid Materials. Acta. Polym. Sin., 2016, 12, 1645-1653. IF = 0.508. [10] Jinlong Zhang, Nan Shi, Jie Zhang, Yan Guan, Weihong Qiao, Xinhua Wan, Light Triggered Co-Assembly of Photocleavable Copolymers and Polyoxometalates with Enhanced Photoluminescence. Macromol. Rapid Commun. 2017, 38, 1600550. IF = 4.638 [11] Nan Shi, Yan Guan, Jie Zhang, Xinhua Wan, Multicolor luminescent hybrid assembled materials based on lanthanide-containing polyoxometalates free from energy transfer crosstalk. RSC Adv., 2015, 5, 34900-34907. IF = 3.708 [12] Haibing Wei, Jinlong Zhang, Nan Shi, Yang Liu, Ben Zhang, Jie Zhang, Xinhua Wan, A recyclable polyoxometalate-based supramolecular chemosensor for efficient detection of carbon dioxide. Chem. Sci., 2015, 6, 7201-7205. IF = 9.144 [13] Haibing Wei,a Nan Shi,a Jinlong Zhang, Yan Guan, Jie Zhang, Xinhua Wan, pH-responsive inorganic–organic hybrid supramolecular hydrogels with jellyfish-like switchable chromic luminescence. Chem. Commun., 2014, 50, 9333-9335. IF = 6.718. 2. Patent [1] ZL201810509988.2,A new method for catalytic oxidative degradation of sawdust by polyoxometalates. [2] ZL 201810511555.0,A method for rapid catalytic oxidation degradation of sawdust to produce aromatic compounds. | |||||
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◎Representative Works | |||||
[1] Principles of hydrocarbon reaction in petrochemical process, petroleum industry press, 2021.3 | |||||
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◎Awards and Honors | |||||
[1] Third award for teacher teaching innovation competition of China University of Petroleum, 2022; [2] Excellent instructor of college students' environmental protection creativity competition of Shandong province, 2021; [3] Second award for technical invention of China Petrochemical Federation, second prize, 2019; [4] First award for Young teachers' lecture competition of China University of Petroleum, 2019. | |||||
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◎Courses Offered | |||||
Undergraduate:《Modern Organic Synthesis》 Postgraduate:《Polymer Materials and Chemistry》 | |||||
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◎Student Training | |||||
1. Supervise Postgraduate Students Supervising two academic graduate students, and assisted supervising PhD candidate. 2. Admissions Instructions: Master students majored in Chemical Engineering and Technology (academic graduates), and Materials and Chemical Engineering
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◎Part-time Academic Job | |||||
[1] Member of Chinese Chemical Society | |||||