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个人简介

彭慧胜,复旦大学特聘教授,1999年在东华大学材料科学与工程学院获学士学位,2003年在复旦大学高分子科学系获硕士学位,2006年在美国杜兰大学化学与生物分子工程系获博士学位,然后在美国能源部洛斯阿拉莫斯国家实验室从事研究,2008年回到复旦大学先进材料实验室、高分子科学系和纤维电子材料与器件研究院工作。2012年获国家杰出青年科学基金资助,2014年获教育部“长江学者”特聘教授,国家有突出贡献中青年专家等人才项目支持,2018年获享国务院特殊津贴专家,2023年当选中国科学院院士。 主要在高分子材料化学领域开展研究,提出和合成出新型金属主链高分子;构建出具有多尺度螺旋取向结构的高分子复合纤维,揭示了电荷在高曲率纤维表界面分离与传输的机制,建立了纤维器件的设计思路,赋予纤维器件发电、储能、显示等重要功能;若干基础性研究成果已进入工业应用。在Nature等期刊上发表了360多篇论文。其中1篇入选2021年中国百篇最具影响国际学术论文,被Science、Nature及其子刊亮点报道了18次。出版了4部教材/专著。获授权国内外发明专利98项,其中47项实现了转让转化,产生了良好的社会经济效应;建立了纤维器件评价标准。先后主持2项国家重点研发计划、1项国家自然科学基金委创新研究群体项目和2项国家战略领域重要项目。 先后担任教育部科学技术委员会学部委员、科技部高端功能与智能材料专项指南编制专家组成员。先后担任National Science Review的Section Editor、Science Bulletin副主编、Progress in Polymer Science和Advanced Functional Materials等19个期刊(顾问)编委。获2022年国家级教学成果奖一等奖(第一完成人)和2023年宝钢教育基金会优秀教师特等奖。获2019年国家自然科学奖二等奖(第一完成人)、2021年中国科学十大进展(第一完成人)、2022年德国跨界创新基金会科学突破奖,领衔的成果入选2022年国际纯粹与应用化学联合会化学领域十大新兴技术(2项)。 教育和工作经历 1995-1999 东华大学 本科 2000-2003 复旦大学 硕士 2003-2006 美国Tulane 大学 博士 2006-2008 美国能源部Los Alamos国家实验室 Director's Fellow 2008-至今 复旦大学 教授 2023-至今 复旦大学 院士 主要荣誉与奖励 爱思唯尔的中国高被引学者(2020.05) 国家自然科学奖二等奖(第一完成人,2020.01) 钱宝钧纤维材料奖(2019.11) 科睿唯安的全球高被引科学家(2019.11) 上海市“四有”好教师(教书育人楷模)(2019.08) 科睿唯安的全球高被引科学家(2018.11) 国务院政府特殊津贴专家(2018.08) 瑞士日内瓦国际发明展金奖(2018.04) 国家领军人才(2017.12) 国家有突出贡献中青年专家(2017.11) 复旦大学十佳“三好”研究生导学团队(2017.11) FastCompany 2017年中国商业最具创意人物100(2017.08) “新型纤维状能源器件”入选“十二五”期间《国家自然科学基金资助优秀成果选编》(2017.04) 科技部中青年创新领军人才(2017.01) 上海市自然科学牡丹奖(2016.10) 国家重点研发计划首席科学家(2016.07-2021.07) “新型纤维状能源器件”被推荐参加“国家十二五科技创新成就展”(2016.06) 中国化学会英国皇家化学会青年化学奖(2015.12) 中国复合材料学会青年科学家奖(2015.06) 上海市优秀学术带头人(2015.02) 中国材料研究学会优秀组织奖(2015.01) 上海十大杰出青年(2014.12) 全国复合材料行业优秀科技工作者(2014.07) 复旦大学研究生心目中的好导师(2014.06) 英国皇家化学会会士(2014.04) 中国青年科技奖(2013.12) 复旦大学青年五四奖章(2013.06) 美国杜邦青年教授奖(2013.05) 中美化学与化学生物学教授协会杰出教授奖(2013.04) 国家杰出青年基金获得者(2012.12) 中组部青年拔尖人才(2012.12) 上海高校特聘教授(东方学者)(2011.12) 霍英东青年教师基金获得者(2011.03) 美国李氏基金会杰出成就奖(2010.05) 中国化学会青年化学奖(2010.12) 上海领军人才(2010.12) 复旦大学优秀研究生导师(2010.09) 中国化学会?约翰威立出版公司青年化学论文奖(2009.12) 教育部新世纪优秀人才(2009.09) 上海市浦江人才(2009.06)

研究领域

功能高分子 能源高分子化学 高分子纤维器件

近期论文

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Healthcare Mater. 2023, 12, 2203247. Jiang, H.; Liao, M.; Chang, Y.; Zhang, K.; Jiang, Y.; Wang, B.; Peng, H. “Design and Application of Fiber Batteries”, Acta Polym. Sin. 2023, 54, 1-18. Feng, J.; Fang, Y.; Wang, C.; Chen, C.; Tang, C.; Guo, Y.; Wang, L.; Yang, Y.; Zhang, K.; Wang, J.; Chen, J.; Sun, X.; Peng, H. “All-polymer fiber organic electrochemical transistor for chronic chemical detection in the brain”, Adv. Funct. Mater. 2023, 33, 2214945. Zhang, Y.; Zeng, K.; Yang, Y.; Tang, W.; Peng, H. “Quantum Chemical Calculation of Metal-backboned Polymer”, Acta Polym. Sin. 2023, 54, 413-417. Liu, Y.; Chen, P.; Peng, H. “Polyelectrolyte-confined fluidic memristor for neuromorphic computing in aqueous environment”, Sci. Bullet. 2023, CSB-2023-0269. 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Deng, J.; Sun, X.; Peng, H. “Power supplies for cardiovascular implantable electronic devices”, EcoMat 2022, EOM2-2022-0174. Ye, L.; Cheng, X.; Liao, M.; Zhao, T.; Huang, X.; Kang, X.; Sun, X.; Wang, B.; Peng, H. “Deformation-Tolerant Metal Anodes for Flexible Sodium-Air Fiber Batteries”, eScience 2022, 2, 606-614. Zhai, W.; Zhu, Z.; Peng, H. “Fiber solar cells from high performances towards real applications”, Adv. Fiber. Mater. 2022, 4, 1293-1303. Wu, HY.; Shi, X.; Zhou, ZH.; Liu, Y.; Cheng, X.; Yang, Y.; Kang, X.; Guo, Y.; Wang, B.; Sun, X.; Chen, P.; Peng, H.“Seamlessly-integrated Textile Electric Circuit Enabled by Self-connecting Interwoven Points", Chin. J Polym. Sci. 2022, 40, 1323-1330. Yang, H.;Qian, Z.;Wang, J.;Feng, J.;Tang, C.;Wang, L.;Guo, Y.;Liu, Z.;Yang, Y.;Zhang, K.;Chen, P.;Sun, X.;Peng, H., “Carbon Nanotube Array-Based Flexible Multifunctional Electrodes to Record Electrophysiology and Ions on the Cerebral Cortex in Real Time", Adv. Funct. Mater. 2022, 32, 2204794. Wang, J.; Liao, M.; Huang, X.; Li, P.; Li, J.; Ye, L.; Gao, Y.; Peng, H.; Wang, B.“Enhanced cathode integrity for zinc-manganese oxide fiber batteries by a durable protective layer”J. Mater. Chem. A 2022, 10, 10201-10208. Li, P.; Liao, M.; Li, J.; Ye, L.; Cheng, X.; Wang, B.; Peng, H. "Rechargeable Micro-Batteries for Wearable and Implantable Applications", Small Struct. 3, 2200058. Feng, J.; Peng, H. “Responsive polymer composite fiber”, Chin. J. Chem. 2022, 40, 1705-1713. Guo, Y.; Sun, X.; Peng, H. “Flexible Fiber Bioelectronic Composite Materials and Devices”, Acta Polym Sin. 2022, 53, 707-721. 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Zhang, K.; Li, J.; Zhai, W.; Li, C.; Zhu, Z.; Kang, X.; Liao, M.; Ye, L.; Wang, C.; Zhao, Y.; Gao, Y.; Wang, B.; Peng, H. “Boosting cycling stability and rate capability of Li-CO2 battery via synergistic photoelectric effect and plasmonic interaction”, Angew. Chem. Int. Ed. 2022, e202201718 Guo, Y.; Chen, C.; Feng, J.; Wang, L.; Wang, J.; Tang, C.; Sun, X.; Peng, H. “An anti-biofouling flexible fiber biofuel cell working in the brain”, Small Methods, 2022, 2200142. Bonnassieux, Y.; Brabec, C. J.; Cao, Y.; Carmichael, T. B.; Chabinyc, M. L.; Cheng, K.; Cho, G.; Chung, A.; Cobb, C. L.; Distler, A.; Egelhaaf, H.; Grau, G.; Guo, X.; Haghiashtiani, G.; Huang, T.; Hussain, M. M.; Iniguez, B.; Lee, T.; Li, L.; Ma, Y.; Ma, D.; McAlpine, M. C.; Ng, T. N.; ?sterbacka, R.; Patel, S. N.; Peng, H.; Peng, J.; Rivnay, J.; Shao, L.; Steingart, D.; Street, R. A.; Subramanian, V.; Torsi, L.; Wu, Y. “The 2021 Flexible and Printed Electronics Roadmap”, Flex. Print. 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Li, S.; Ma, Y.; Zhao, T.; Li, J.; Kang, X.; Guo, W.; Wen, Y.; Wang, L.; Tan, H.; Peng, H.; Zhang, B. “Polymer-supported liquid layer electrolyzer enabled electrochemical CO2 reduction to CO with high energy efficiency”, ChemistryOpen, 2021, 10, 639-644. Li, L.; Chen, H.; He, E.; Wang, L.; Ye, T.; Lu, H.; Jiao, Y.; Wang, J.; Gao, R.; Peng, H.; Zhang, Y. “High-energy-density magnesium-air battery based on dual-layer gel electrolyte”, Angew. Chem. Int. Ed., 2021, 60, 15317-15322. Mei, T.; Wang, C.; Liao, M.; Li, J.; Wang, L.; Tang, C.; Sun, X.; Wang, B.; Peng, H. “Biodegradable and Rechargeable Fiber Battery”, J. Mater. Chem. A, 2021, 9, 10104-10109. Liao, M.; Wang, J.; Ye, L.; Sun, H.; Li, P.; Wang, C.; Tang, C.; Wen, Y.; Zhou, X.; Cheng, X.; Wang, B.; Peng, H. “A high-capacity aqueous zinc-ion battery fiber with air-recharging capability”, J. Mater. Chem. A, 2021, 9, 6811-6818. 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学术兼职

Advanced Materials Technologies国际顾问编委(2018.05) 中国材料与试验团体标准委员会电池及其相关材料领域委员会委员(2018.05) Science Bulletin的副主编(2018.01) 中国复合材料学会纳米复合材料委员会副主任委员(2017.12) Chemistry–An Asian Journal顾问编委(2017.11) Batteries & Supercaps国际顾问编委(2017.11) 中央瞭望智库首批专家(2017.03) 中国复合材料学会第七届理事会荣誉理事(2016.11) 中南林业科技大学客座教授(2016.11) Small Methods 编委(2016.08) Chinese Journal of Polymer Science编委(2016.04) 《化学学报》编委(2015.08) 中国工程物理研究院客座教授(2015.05) 上海市杨浦区青年联合会委员(2015.03) 《科技导报》编委(2015.01) 上海市青年联合委员会委员(2014.12) 全国材料新技术发展研究会副理事长(2014.11) Chairman of Editorial Board of ChemNanoMat (by Wiley-VCH)(2014.10) Science China Materials编委(2014.07) 中国材料研究学会纳米材料与器件分会理事(2014.04) 中国能源环保高新技术产业协会常务理事(2013.10) 国家芳纶工程技术研究中心工程技术委员会委员(2013.05) Polymer Chemistry客座编辑(2012.10) 中国复合材料学会理事(2012.9) Advanced Materials客座编辑(2012.9) Scientific Reports编委(2012.01) 同济大学兼职教授(2008.10)

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