巩峰

能源工程系副教授/副研究员,博士生导师,至善学者A类
经理助理,重点实验室副主任

通讯方式:frankgong1115@163.com/ 巩峰(英文)@seu.edu.cn

研究方向:

1.碳中和背景下的可再生能源合成零碳燃料

2.化学链合成燃料技术

3.能源催化转化多尺度理论模拟 

4.微能源高效回收利用

5.生物质固废高值化利用



办公地点:热能所402

 

 

个人简介

江苏宿迁人。2011年本科毕业于四川大学,2015年博士毕业于新加坡国立大学,回国工作前在在美国俄克拉荷马大学从事博士后研究工作。2019年3月入选4008云顶集团“至善学者A类”人才计划回到4008云顶集团工作,担任能源热转换及其过程测控教育部重点实验室副主任。在能源催化转化能质传递领域开展大量的研究,近5年来,在Nano Energy(3篇), Advanced Science, Applied Catalysis B: Environmental, Applied Energy,Advanced MaterialsAdvanced Functional MaterialsJournal of American Chemistry Society等知名期刊发表文章60余篇,其中第一作者和通讯作者文章50余篇,影响因子大于10论文18篇,总引用2800余次,H-index 28。所发表的第一与通讯作者论文中有9篇高被引论文和2篇热点论文。申请发明专利16项;主持国家自然科学基金两项、国家重点研发项目子课题一项,省部级项目两项;作为第二主持人参与国家级项目6项。

Dr. Gong was born in Suqian city, Jiangsu Province, China. After finished his bachelor in Sichuan University in 2011, he went to National University of Singapore for his PhD study. Before coming back to China, he worked as postdoc research fellow in the University of Oklahoma for one year. In recent years, he did a lot of research on thermal energy conversion, transfer and storage, including materials, devices and systems. In the past 4 year, he has published more than 40 peer-reviewed papers as the first author or corresponding author.The total citation is around 2500 and my H-index is 24. Among those papers,there are 9 highly-cited papers and 2 hot papers. The journals include Nano EnergyAdvanced MaterialsAdvanced Functional MaterialsJournal of American Chemistry SocietyAdvanced ScienceCarbon and so on. He also applied 16 patents. He hosted two NSFC funding and 2 funding from the ministry of science and technology of China.


教学课程

《Computational Materials Science》

《专业人才论坛》

《新能源技术基础》全英文

《工程创新体验课程》

《能源材料设计与合成》(英文,研究生)

科研 教改项目

国家自然科学基金面上项目(2021-2024)主持

国家自然科学基金青年基金 (2017-2019)主持

科技部重点研发计划项目子课题(2020-2022)主持

省科技厅双碳专项子课题 (2022-2024)主持

省科技厅中韩国际合作项目

省科技厅科技支撑项目

国家重点实验室开放基金 主持

2019年南京市留学人员科技创新项目择优资助 主持

4008云顶集团学科振兴计划课题  主持

4008云顶集团至善学者A类计划项目 主持

4008云顶集团引进人才启动项目 主持

中国能建集团技术开发项目 主持

中国能源集团技术开发项目 主持

论文 专著

   

表性论文(IF:影响因子,*通信作者,#共同一作)最新发表论文请参阅本人的researchgate或Scopus,这里就不定期更新,感谢理解。

https://www.researchgate.net/profile/Feng_Gong2

https://scholar.google.com/citations?hl=en&user=h5msyd4AAAAJ&view_op=list_works&sortby=pubdate

  

近五年以第一作者或通讯作者在本学科SCI收录期刊发表45篇,其中一区26篇,总IF>435.521

1.      Bing Song, Zejian Zhi, Qiang Zhou, Di Wu, Lei Yu, Feng Gong*, Ying Yin, Fanyue Meng, Chengming Li, Zhiliang Chen, Min Song, Enhanced arsenic removal by reusable hexagonal CeO2/Fe2O3 nanosheets with exposed (0001) facet, Science of The Total Environment, (2022), 157490 (*通讯作者)  JCR分区:1区,IF10.753

2.      Ya Zhang, Qiang Zhou, Zhao‐Feng Qiu, Xiao‐Yu Zhang, Jia‐Qi Chen, Yue Zhao, Feng Gong*, Wei‐Yin Sun, Tailoring Coordination Microenvironment of Cu(I) in Metal–Organic Frameworks for Enhancing Electroreduction of CO2 to CH4, Advanced Functional Materials, (2022), 2203677 (*通讯作者)  JCR分区:1区,IF19.924

3.      Qiang Zhou, Feng Gong#, Yunlong Xie, Rui Xiao, 1+ 1> 2: Learning from the interfacial modulation on single-atom electrocatalysts to design dual-atom electrocatalysts for dinitrogen reduction, Green Energy & Environment, (2022) (#共同一作,通讯作者)  JCR分区:1区,IF12.782

4.      Ling Ouyang, Qiang Zhou, Jie Liang, Longcheng Zhang, Luchao Yue, Zerong Li, Jun Li, Yongsong Luo, Qian Liu, Na Li, Bo Tang, Abdulmohsen Ali Alshehri, Feng Gong*, Xuping Sun*, High-efficiency NO electroreduction to NH3 over honeycomb carbon nanofiber at ambient conditions, Journal of Colloid and Interface Science, (2022) 616, 261-267*通讯作者)  JCR分区:1区,IF9.965

5.      Longcheng Zhang, Qiang Zhou, Jie Liang, Luchao Yue, Tingshuai Li, Yongsong Luo, Qian Liu, Na Li, Bo Tang, Feng Gong*, Xiaodong Guo, Xuping Sun*, Enhancing Electrocatalytic NO Reduction to NH3 by the CoS Nanosheet with Sulfur Vacancies, Inorganic Chemistry (2022) (*通讯作者)  JCR分区:1区,IF7.791

6.      Jie Liang, Qiang Zhou, Ting Mou, Hongyu Chen, Luchao Yue, Yongsong Luo, Qian Liu, Mohamed S Hamdy, Abdulmohsen Ali Alshehri, Feng Gong*, Xuping Sun*, FeP nanorod array: A high-efficiency catalyst for electroreduction of NO to NH3 under ambient conditions, Nano Research, (2022) 15, 4008-4013 (*通讯作者)  JCR分区:1区,IF10.269

7.      Qiang Zhou#, Feng Gong#*, Yunlong Xie, Dawei Xia, Zhigang Hu, Sijun Wang, Lishan Liu, Rui Xiao, A general strategy for designing metal-free catalysts for highly-efficient nitric oxide reduction to ammonia, Fuel, (2022) 310, 122442 (#共同一作,*通讯作者)  JCR分区:2区,IF8.035

8.      Yu Qiu, Enkang Fu, Feng Gong, Rui Xiao*, Catalyst support effect on ammonia decomposition over Ni/MgAl2O4 towards hydrogen production, International Journal of Hydrogen Energy, (2022) 47, 5044-5052 (*通讯作者)  JCR分区:2区,IF7.139

9.      Ya Zhang, Qiang Zhou, Peng Wang, Yue Zhao, Feng Gong*, Wei-Yin Sun*, Hydroxyl Groups Functionalized Single Crystal of Copper (II)‐Porphyrin Complex for Electroreduction CO2 to CH4, ChemSusChem (2022) (*通讯作者)  JCR分区:1区,IF9.140    

10.  Xiangyang Sun, Feng Gong*, Menglong Hao, Lei Wu, Chunyu Yin, Zhipeng Sun, Rui Xiao, Enhanced thermal transport and corrosion resistance by coating vertically-aligned graphene on zirconium alloy for nuclear reactor applications, Applied Surface Science, (2022) 152484 (*通讯作者)  JCR分区:2区,IF7.392

11.  Jie Chen, Qiang Zhou, Luchao Yue, Donglin Zhao, Longcheng Zhang, Yongsong Luo, Qian Liu, Na Li, Abdulmohsen Ali Alshehri, Mohamed S Hamdy, Feng Gong*, Xuping Sun*, Co–NCNT nanohybrid as a highly active catalyst for the electroreduction of nitrate to ammonia, Chemical Communications, (2022) 58, 3787-3790 (*通讯作者)  JCR分区:2区,IF6.065    

12.  Feng Gong*, Hao Li, Jigang Huang, Yuhang Jing, Zhigang Hu, Dawei Xia, Qiang Zhou, Rui Xiao*, Low-grade energy harvesting from dispersed exhaust steam for power generation using a soft biomimetic actuator, Nano Energy, (2022) 91, 106677 (一作,*通讯作者)  JCR分区:1区,IF19.069

13.  Feng Gong, Hao Li, Xiangzhou Yuan, Jigang Huang, Dawei Xia, Dimitrios V Papavassiliou, Rui Xiao, Yusuke Yamauchi, Kevin C‐W Wu, Yong Sik Ok, Recycling Polymeric Solid Wastes for Energy‐Efficient Water Purification, Organic Distillation, and Oil Spill Cleanup, Small, (2021) 17, 2102459.  JCR分区:1区,IF15.153

14.  Enkang Fu, Yu Qiu, Huaichang Lu, Sijun Wang, Lishan Liu, Hanjun Feng, Yanxin Yang, Zizhan Wu, Yunlong Xie, Feng Gong*, Rui Xiao*, Enhanced NH3 decomposition for H2 production over bimetallic M (M= Co, Fe, Cu) Ni/Al2O3, Fuel Processing Technology, (2021) 221, 106945 (*通讯作者)  JCR分区:2区,IF8.129

15.  Dawei Xia, Dongdong Wang, Wenlong Liu, Feng Gong*, Rational Synthesis of “Grape‐like” Ni2V2O7 Microspheres as High‐capacity Anodes for Rechargeable Lithium Batteries, Chemistry–An Asian Journal, (2021) 16, 775-782 (*通讯作者)  JCR分区:2区,IF4.839

16.  Dawei Xia, Hongpeng Gao, Mingqian Li, Feng Gong*, Ming Li, Transition metal vanadates electrodes in lithium-ion batteries: A holistic review, Energy Storage Materials, (2021) 35, 169-191 (*通讯作者)  JCR分区:1区,IF20.831

17.  Dawei Xia, Jian Yang, Mingqian Li, Hongpeng Gao, Feng Gong*, Hybridized cobalt/manganese vanadates as high-performance anodes in lithium ion battery, Materials Letters, (2021) 283, 128782 (*通讯作者)  JCR分区:2区,IF3.574

18.  Yulin Lv, Feng Gong*, Hao Li, Qiang Zhou, Xinlin Wu, Wenbin Wang, Rui Xiao*, A flexible electrokinetic power generator derived from paper and ink for wearable electronics, Applied Energy, (2020) 279, 115764 (*通讯作者)  JCR分区:1区,IF11.446

19.  Feng Gong, Hao Li, Qiang Zhou, Mingzhou Wang, Wenbin Wang, Yulin Lv, Rui Xiao*, Dimitrios V Papavassiliou*, Agricultural waste-derived moisture-absorber for all-weather atmospheric water collection and electricity generation, Nano Energy, (2020) 74, 104922   JCR分区:1区,IF19.069

20.  Dawei Xia, Songzi Xu, Wenbin Wang, Dongdong Wang, Mengqiang Wu, Feng Gong*, Pure-phase β-Mn2V2O7 interconnected nanospheres as a high-performance lithium ion battery anode, Chemical Communications, (2020), 56, 8043-8046 (*通讯作者)  JCR分区:2区,IF6.065

21.  Feng Gong, Dawei Xia, Mingqian Li, Qiang Zhou, Dongdong Wang, Pu Zhang, Yi Zhang, Direct thermal pyrolysis enabling the use of cobalt oxides nanoparticles from commercial acetates as high-capacity anodes for lithium-ion batteries, Industrial & Engineering Chemistry Research, (2020) 59, 13564-13571.  JCR分区:2区,IF4.326

22.  Yang Li#, Feng Gong#, Qiang Zhou#, Xionghan Feng, Jiajie Fan, Quanjun Xiang, Crystalline isotype heptazine-/triazine-based carbon nitride heterojunctions for an improved hydrogen evolution, Applied Catalysis B: Environmental, (2020) 268, 118381 (#共同一作)  JCR分区:1区,IF24.319

23.  Feng Gong, Qiang Zhou, Jiahao Liu, Dongdong Wang, Shiliang Wu, Dawei David Xia, Facile and Controllable Synthesis of Co2V2O7 Microplatelets Anchored on Graphene Layers toward Superior Li-Ion Battery Anodes, Energy & Fuels, (2020) 34, 7616-7621.  JCR分区:2区,IF4.654

24.  Feng Gong*, Wenbin Wang, Hao Li, Dawei David Xia, Qingwen Dai, Xinlin Wu, Mingzhou Wang, Jian Li, Dimitrios V Papavassiliou, Rui Xiao, Solid waste and graphite derived solar steam generator for highly-efficient and cost-effective water purification, Applied Energy, (2020) 261, 114410 (*通讯作者)  JCR分区:1区,IF11.446

25.  Jigang Huang, Jun Tan, Hui Fang, Feng Gong*, Jie Wang*, Tribological and wear performances of graphene-oil nanofluid under industrial high-speed rotation, Tribology International, (2019) 135, 112-120 (*通讯作者)  JCR分区:1区,IF5.620

26.  Hong Huang#, Feng Gong#, Yuan Wang, Huanbo Wang, Xiufeng Wu, Wenbo Lu, Runbo Zhao, Hongyu Chen, Xifeng Shi, Abdullah M Asiri, Tingshuai Li, Qian Liu, Xuping Sun*, Mn3O4 nanoparticles@ reduced graphene oxide composite: An efficient electrocatalyst for artificial N2 fixation to NH3 at ambient conditions, Nano Research, (2019) 12, 1093-1098 (#共同一作)  JCR分区:1区,IF10.269

27.  Feng (Frank) Gong#*, Hao Li, Wenbin Wang, Jigang Huang, Dawei David Xia, Jiaxuan Liao, Mengqiang Wu, Dimitrios V Papavassiliou, Scalable, eco-friendly and ultrafast solar steam generators based on one-step melamine-derived carbon sponges toward water purification, Nano Energy, (2019) 58, 322-330 (一作,通讯作者)  JCR分区:1区,IF19.069

28.  Bo Xu, Li Xia, Fuling Zhou, Runbo Zhao, Hongyu Chen, Ting Wang, Qiang Zhou, Qian Liu, Guanwei Cui, Xiaoli Xiong, Feng Gong*, Xuping Sun, Enhancing Electrocatalytic N2 Reduction to NH3 by CeO2 Nanorod with Oxygen Vacancies, ACS Sustainable Chemistry & Engineering, (2019) 7, 2889-2893 (通讯作者)  JCR分区:1区,IF9.224

29.  Wenhan Kong, Feng Gong#, Qiang Zhou, Guangsen Yu, Lei Ji, Xuping Sun, Abdullah M Asiri, Ting Wang, Yonglan Luo, Yuanhong Xu, MnO₂–Ti₃C₂Tₓ MXene nanohybrid: an efficient and durable electrocatalyst toward artificial N₂ fixation to NH₃ under ambient conditions, Journal of materials chemistry A, (2019) 7, 18823-18827 (共同一作)  JCR分区:1区,IF14.511

30.  Jinxiu Zhao, Bo Wang, Qiang Zhou, Huanbo Wang, Xianghong Li, Hongyu Chen, Qin Wei, Dan Wu, Yonglan Luo, Jinmao You, Feng Frank Gong*, Xuping Sun, Efficient electrohydrogenation of N 2 to NH 3 by oxidized carbon nanotubes under ambient conditions, Chemical Communications, (2019) 55, 4997-5000 (通讯作者)  JCR分区:2区,IF6.065

31.  Zao Wang, Feng Gong#, Ling Zhang, Rui Wang, Lei Ji, Qian Liu, Yonglan Luo, Haoran Guo, Yuehui Li, Peng Gao, Xifeng Shi, Baihai Li, Bo Tang, Xuping Sun, Electrocatalytic Hydrogenation of N2 to NH3 by MnO: Experimental and Theoretical Investigations, Advanced Science, (2019) 6, 1801182 (共同一作)  JCR分区:1区,IF17.521

32.  Tengteng Wu, Peipei Li, Huanbo Wang, Runbo Zhao, Qiang Zhou, Wenhan Kong, Meiling Liu, Youyu Zhang, Xuping Sun, Feng Frank Gong*, Biomass-derived oxygen-doped hollow carbon microtubes for electrocatalytic N 2-to-NH 3 fixation under ambient conditions, Chemical Communications, (2019) 55, 2684-2687 (通讯作者)  JCR分区:2区,IF6.065

33.  Feng Gong#*, Dawei David Xia, Qiang Zhou, Jiaxuan Liao, Mengqiang Wu, Novel spherical cobalt/nickel mixed-vanadates as high-capacity anodes in lithium ion batteries, Journal of Alloys and Compounds, (2018) 766, 442-449 (共同一作,通讯作者)  JCR分区:1区,IF6.371

34.  Dawei David Xia, Feng Gong#*, Xudong Pei, Wenbin Wang, Hao Li, Wei Zeng, Mengqiang Wu, Dimitrios V Papavassiliou, Molybdenum and tungsten disulfides-based nanocomposite films for energy storage and conversion: A review, Chemical Engineering Journal, (2018) 348, 908-928 (共同一作,通讯作者)  JCR分区:1区,IF16.744    

35.  Feng Gong#*, Wenbin Wang, Hao Li, Dawei Xia, Dimitrios V Papavassiliou, Predictions of the thermal conductivity of multiphase nanocomposites with complex structures, Journal of Materials Science, (2018) 53, 12157-12166 (共同一作,通讯作者)  JCR分区:2区,IF4.682      

36.  Sizhe Wang, Feng Gong#, Shize Yang, Jiaxuan Liao, Mengqiang Wu, Ziqiang Xu, Cheng Chen, Xiaofei Yang, Feipeng Zhao, Bin Wang, Yuesheng Wang, Xueliang Sun, Graphene Oxide‐Template Controlled Cuboid‐Shaped High‐Capacity VS4 Nanoparticles as Anode for Sodium‐Ion Batteries, Advanced Functional Materials, (2018) 28, 1801806 (共同一作)  JCR分区:1区,IF19.924

37.  Xiong Fang Huang, Meng Qiang Wu, Jia Xuan Liao, Zi Qiang Xu, Feng Gong*, Si Zhe Wang, Ultralow dielectric loss of Y and Mn alternately doped nonstoichiometric BST films, Integrated Ferroelectrics, (2018) 191, 158-168 (通讯作者)  

38.  W Wang, MQ Wu, JX Liao, ZQ Xu, F Gong*, SZ Wang, Effect of potassium and magnesium codoping on the dielectric properties of BST powders, Integrated Ferroelectrics, (2018) 191, 60-71 (通讯作者)  

39.  Kai Lu, Meng Qiang Wu, Jia Xuan Liao, Zi Qiang Xu, Feng Gong*, Si Zhe Wang, Growth behavior and dielectric properties of K/Mg alternately doped BST films, Integrated Ferroelectrics, (2018) 191, 8-19 (通讯作者)  

40.  Feng Gong*, Zhiwei Ding, Yin Fang, Chuan-Jia Tong, Dawei Xia, Yingying Lv, Bin Wang, Dimitrios V Papavassiliou, Jiaxuan Liao, Mengqiang Wu, Enhanced Electrochemical and Thermal Transport Properties of Graphene/MoS2 Heterostructures for Energy Storage: Insights from Multiscale Modeling, ACS applied materials & interfaces, (2018) 10, 14614-14621 (一作,通讯作者)  JCR分区:1区,IF10.383

41.  Feng Gong#*, Dawei Xia, Cheng Bi, Jian Yang, Wei Zeng, Cheng Chen, Yuanli Ding, Ziqiang Xu, Jiaxuan Liao, Mengqiang Wu, Systematic comparison of hollow and solid Co3V2O8 micro-pencils as advanced anode materials for lithium ion batteries, Electrochimica Acta, (2018) 264, 358-366 (一作,通讯)  JCR分区:1区,IF7.336

42.  Feng Gong#*, Hao Li, Wenbin Wang, Dawei Xia, Qiming Liu, Dimitrios V Papavassiliou, Ziqiang Xu, Recent advances in graphene-based free-standing films for thermal management: Synthesis, properties, and applications, Coatings, (2018) 8, 63 (一作,通讯)  JCR分区:2区,IF3.236

43.  Feng Gong*, Xiongxiong Liu, Yunlong Yang, Dawei Xia, Wenbin Wang, Hai M Duong, Dimitrios V Papavassiliou, Ziqiang Xu, Jiaxuan Liao, Mengqiang Wu, A facile approach to tune the electrical and thermal properties of graphene aerogels by including bulk MoS2, Nanomaterials, (2017) 7, 420 (一作,通讯)  JCR分区:1区,IF5.719

44.  Jian Yang, Mengqiang Wu, Feng Gong#*, Tingting Feng, Cheng Chen, Jiaxuan Liao, Facile and controllable synthesis of solid Co 3 V 2 O 8 micro-pencils as a highly efficient anode for Li-ion batteries, RSC advances, (2017) 7, 24418-24424 (共同一作,通讯作者)  JCR分区:2区,IF4.036

45.  Feng Gong, Jin Liu, Jian Yang, Jingang Qin, Yunlong Yang, Tingting Feng, Wenlong Liu, Hai M Duong, Dimitrios V Papavassiliou, Mengqiang Wu, Effective thermal transport properties in multiphase biological systems containing carbon nanomaterials, RSC advances, (2017) 7, 13615-13622  JCR分区:2区,IF4.036


专利申请

申请国家发明专利20余项,授权5项


荣誉 奖励

江苏省科协“青年托举人才”(2022)

江苏省科学技术奖三等奖(2021)

江苏省“六大人才高峰”创新团队成员(2021)

中国能源研究会“优秀能源青年科技工作者”(2021)

江苏省能源研究会能源科技进步一等奖(2020)

第十三届全国老员工节能减排社会实践与科技竞赛全国特等奖 指导教师

第十三届全国老员工节能减排社会实践与科技竞赛全国三等奖 指导教师

第十七届江苏省老员工课外学术科技作品竞赛暨“挑战杯”全国竞赛江苏省选拔赛特等奖 指导教师

第一届江苏省节能减排社会设计与科技竞赛特等奖 指导教师

4008云顶集团授课竞赛三等奖(2022)

第一届能源与环境会议最佳报告奖

第十届中泰可再生能源会议邀请报告

获得院级青年教师教学竞赛一等奖一次,三等奖两次。


  

微能源回收利用领域的研究工作被4008云顶集团主页报道:
https://www.seu.edu.cn/2020/0515/c17409a328055/page.htm

废弃物新型利用被中国科学报报道:

http://news.sciencenet.cn/htmlnews/2020/5/440567.shtm

担任Nano EnergyChemical Engineering Journal, International Journal of Heat and Mass Transfer等期刊审稿人。


指导员工

研究生(含协助指导):

2021级 敬语航,杨鹏,刘朝镇(东蒙)

2020级 王思珺,刘丽珊

2019级 孙向阳

2018级 吕玉林

本科生:夏大维(美国弗吉利亚理工学院),周强(东京大学),王文彬(香港城市大学),李昊(香港大学),丁业煊(香港大学),郭依庆(清华大学),熊再立(上海交通大学),魏翰泽(上海交通大学),裴旭东(南京大学),曾伟(中南大学)。

目前,已经指导本科生发表高水平论文10余篇,和新加坡国立大学、剑桥大学、伦敦大学学院(UCL)、英国帝国理工学院,英国伯明翰大学,韩国高丽大学、日本东京大学、美国麻省理工大学、普林斯顿大学、俄克拉荷马大学、泰国清迈大学等高校保持良好的合作关系。


欢迎有出国计划或对科研感兴趣的本科同学联系进行科研训练,我们将努力raise you up。

欢迎优秀的本科生来组攻读研究生、博士生。我们彼此成全,一同成为更好的自己。