代表性论文专著
论文:
1. Niyi Olukayode; Weijing Yang; Kang Xiang; Shenrong Ye; Zhigang Su; Zhenfei Han; Sheng Sui*. A Novel Chemical−Electrochemical Hydrogen Production from Coal Slurry by a Two-Step Process: Oxidation of Coal by Ferric Ions and Electroreduction of Hydrogen Ions, ACS Omega, 2022, 7: 7865-7873.
2. Hao⁃Jie WANG, Rui⁃Qing WANG, Bing LI, Sheng SUI. Effects of Preformed Pt Nanoparticles on Structure of Platinum Nanowire Cathode for Proton Exchange Membrane Fuel Cells. Chinese J. Inorg. Chem., 2022,38(5):787⁃799. (封面文章)
3. 王睿卿, 隋 升*. PEMFC阴极催化层结构分析. 电化学, 2021,595: 595-604.(封面文章)
4. Haojie Wang, Ruiqing Wang, Sheng Sui*, Tai Sun, Shangfeng Du**. Cathode Design for Proton Exchange Membrane Fuel Cells in Automotive Applications. Automotive Innovation (2021). https://doi.org/10.1007/s42154-021-00148-y.
5. Ruiqing Wang, Xiaolan Cao, Sheng Sui*, Bing Li**, Qingfeng Li. Study on the growth of platinum nanowires as cathode catalysts in proton exchange membrane fuel cells. Front. Chem. Sci. Eng., . 2021. doi: 10.1007/s11705-021-2052-z.
6. Sheng Sui*, Rizwan Rasheed*, Qinglin Li, Yuehong Su,Saffa Riffat.Technoeconomic modelling and environmental assessment of a modern PEMFC CHP system: a case study of an eco-house at University of Nottingham, Environmental Science and Pollution Research, 2019, 26(29), 29883-29895. https://doi.org/10.1007/s11356-019-06054-5.
7. Sheng Sui*, Zhaoxu Wei, Kaihua Su, An He, Xiaoying Wang, Yuehong Su,*, Xianghui Hou, Saffa Raffet and Shangfeng Du. Pt nanowire growth induced by Pt nanoparticles in application of the cathodes for Polymer Electrolyte Membrane Fuel Cells (PEMFCs), International Journal of Hydrogen Energy, 2018, 43: 20041-20029.
8. Sheng Sui*, Xiaoying Wang, Xintong Zhou, Yuehong Su, Saffa B Riffat and Chang-jun Liu*. A comprehensive review of Pt electrocatalysts for oxygen reduction reaction: nanostructure, activity, mechanism and carbon support in PEM fuel cells, J. Mater. Chem. A, 2017,( 5):1808 – 1825.(ESI 高被引论文和热点论文)
9. Su, K.; Yao, X.; Sui, S.*; Wei, Z.; Zhang, J.; Du, S.Matrix Material Study for in situ Grown Pt Nanowire Electrocatalyst Layer in Proton Exchange Membrane Fuel Cells (PEMFCs). Fuel Cells, 2015,15( 3) 449-455.
10. Zhaoxu Wei, Kaihua Su, Sheng Sui*, An He, Shangfeng Du. High performance polymer electrolyte membrane fuel cells (PEMFCs) with gradient Pt nanowire cathodes prepared by decal transfer method. International Journal of Hydrogen Energy,2015, 40(7):3068-3074.
11. Zhaoxu Wei, An He, Kaihua Su, Sheng Sui*. Carbon matrix effects on the micro-structure and performance of Pt nanowire cathode prepared by decal transfer method. Journal of Energy Chemistry, 2015,24(2):213-218.
12. Kaihua Su, Xianyong Yao, Sheng Sui*, Zhaoxu Wei, Junliang Zhang, Shangfeng Du.Ionomer content effects on the electrocatalyst layer with in-situ grown Pt nanowires in PEMFCs. International Journal of Hydrogen Energy,2014, 39 :3219-3225.
13. Kaihua Su, Sheng Sui*, Xianyong Yao,Zhaoxu Wei, Junliang Zhang, Shangfeng Du.Controlling Pt loading and carbon matrix thickness for a high performance Pt-nanowire catalyst layer in PEMFCs. International Journal of Hydrogen Energy,2014,39 :3397-3403
14. Xianyong Yao,Kaihua Su, Sheng Sui*, Liwei Mao, An He, Junliang Zhang, Shangfeng Du. A novel catalyst layer with carbon matrix for Pt nanowire growth in proton exchange membrane fuel cells (PEMFCs). International Journal of Hydrogen Energy,2013, 38(28):12374-12378.
15. Sheng Sui∗, Xiaolong Zhuo, Kaihua Su, Xianyong Yao,Junliang Zhang, Shangfeng Du, Kevin Kendall. In situ grown nanoscale platinum on carbon powder as catalyst layer in proton exchange membrane fuel cells (PEMFCs).Journal of Energy Chemistry, 2013, 22:477–483.
16. Sheng Sui*, Xioalong Zhuo, Kaihua Su, Junliang Zhang, Shuangfeng Du, Kevin Kendall.Investigation on in-situ grown nanoscale platinum on the carbon powder layer as a catalyst layer in PEMFCs. The 5th Conference on Fundamentals and Development of Fuel Cells in Karlsruhe, Germany from the 16th to the 18th of April, 2013.
17. Xiaolong Zhuo, Sheng Sui*, Junliang Zhang.Electrode Structure Optimization Combined with Water feeding modes for Bi-functional Unitized Regenerative Fuel Cells.International Journal of Hydrogen Energy, 2013,38(11):4792-4797(DOI information: 10.1016/j.ijhydene.2013.01.137)
18. Sheng Sui*, Yaping Zeng. SHELL-CORE COMPOSITE PREPARED IN FLUIDIZED-BED MICRO-REACTOR AS SUPPORT OF FUEL CELL ELECTROCATALYSTS(poster). Hydrogen+Fuel Cells 2011 international conference and exhibition, Vancouver, Canada, May 15-18, 2011
19. Sheng Sui*, Lirong Ma, Yuchun Zhai.TiC supported Pt–Ir electrocatalyst prepared by a plasma process for the oxygen electrode in unitized regenerative fuel cells. J. Power Sources, 2011, 196: 5416-5422
20. Sheng Sui*, Elton J. Cairns. Effects of anode diffusion on direct methanol fuel cell (DMFC) performance. The 239th ACS National Meeting, San Francisco, CA, March 21-25, 2010.
21. Sheng Sui*, Wei Yan, Silin LI. TiO2-TiC composite with porous shell-core structure for the support of anode electrocatalyst in proton exchange membrane water electrolyzer (PEMWE). The 239th ACS National Meeting, San Francisco, CA, March 21-25, 2010.
22. Wei Yan, Sheng Sui*, Guohua Xiu, Yanfeng He. Combination of Sorption-Enhanced Steam Methane Reforming and Electricity Generation by MCFC: Concept and Numerical Simulation Analysis. Separation Science and Technology, 2009, 44(13):3013 – 3044.
23. Sheng Sui*, Lirong Ma, Yuchun Zhai. Investigation on the Proton Exchange Membrane Water Electrolyser Using Supported Anode Catalyst. Asia-Pacific J. Chem. Eng., 2009, 4 (1):8-11.
24. Lirong Ma, Sheng Sui*, Yuchun Zhai. Investigations on high performance proton exchange membrane water electrolyzer. Int. J. Hydrogen Energy, 2009, 34: 678-684
25. Lirong Ma, Sheng Sui*, Yuchun Zhai. Preparation and characterization of Ir/TiC catalyst for oxygen evolution. J. Power Sources, 2008, 177 :470-477.
26. Lirong Ma, Sheng Sui*, Yuchun Zhai. Electrochemical Impedance Spectroscopy Characterization of Pt-Ir Catalyst Supported on TiC, The 235th ACS National Meeting, New Orleans, LA, April 6-10, 2008.
27. Mingruo Hu, Sheng Sui, Xinjian Zhu, Qingchun Yu, Guangyi Cao, Xueying Hong, Hengyong Tu. A 10 kW class PEM fuel cell stack based on the catalyst-coated membrane (CCM) method. Int. J. Hydrogen Energy, 2006, 31:1010-1018
28. Chun-Hua Li, Xin-Jian Zhu, Guang-Yi Cao, Sheng Sui, Ming-Ruo Hu. Identification of the Hammerstein model of a PEMFC stack based on least squares support vector machines. J. Power Sources,2008, 175: 303-316.
29. Chun-Hua Li, Xin-Jian Zhu, Guang-Yi Cao, Sheng Sui, Ming-Ruo Hu. Dynamic modeling and sizing optimization of stand-alone photovoltaic power systems using hybrid energy storage technology. Renewable Energy, 2009, 34:815-826
30. Chun-hua Li, Xin-jian Zhu, Guang-yi Cao, Wan-qi Hu, Sheng Sui, Ming-ruo Hu. Maximum power point tracking of a photovoltaic energy system using neural fuzzy techniques. Journal of Shanghai university, 2009, 13(1): 29-36
31. Chun-hua Li, Xin-jian Zhu,Guang-yi Cao, Wan-qi Hu, Sheng Sui, Ming-ruo Hu. A maximum power point tracker for photovoltaic energy systems based on fuzzy neural networks. Journal of Zhejiang University SCIENCE A, 2009, 10(2):263-270.
32. 隋升*, 马丽荣. 负载型氧电极PtRuIr/TiC催化剂的制备、结构及CV研究. 电化学, 2007, 13: 302-305.
33. 隋升*, 王明华, 余晴春, 朱新坚. 可逆质子交换膜燃料电池研究进展. 电源技术, 2004, 28: 55-58。
34. 冯锦, 隋升*. 基于STC89C52RC的DMFC电源监控系统. 电源技术, 2009, 33: 991-993
35. 常一琳, 隋升*,杨永胜,李海滨. 一种复合可再生能源管理系统. 电源技术, 2009, 33: 618-620
36. 闫巍, 隋升*, 李斯琳. 多孔TiC/TiO2壳-芯复合物制备、表征分析及应用研究. 电源技术, 2010, 34: 139-143
37. 李斯琳, 隋升*, 史惟澄. 一体式可再生燃料电池膜电极和流场研究. 电源技术, 2011, 35(10): 1235-1239
38. 曾亚平, 隋升*. 微乳法合成Pt/C、PtIr/C催化剂及其电化学性能表征. 电化学, 2011, 17(4): 393-398
39. 贾杰, 隋升*, 朱新坚, 黄波. 煤浆电解制氢的动力学研究.燃料化学学报,2013,41(2):139-143
40. 王山领, 隋升*, 陈守超. 质子交换膜燃料电池不锈钢双极板表面的复合镀层改性研究. 电源技术,2013,37(4):572-574
41. 王山领, 隋升*, 陈守超,郭雪岩. 不锈钢冲压双极板及其实验验证和仿真. 电源技术,2013,37(10):1760-1763
42. 向康, 孙志刚, 何建波, 贾杰, 隋升. Fe3+辅助煤浆氧化制氢研究. 燃料化学学报, 2016, 44 (05): 621-627.
43. 曹晓兰, 隋升,李冰. 还原剂浓度对原位沉积铂纳米线催化层结构和性能的影响. 中国有色金属学报, 2020, (3):604 - 612
44. 隋升. 再生燃料电池技术及其应用. 燃料電池核心技術研讨會, 台湾新竹, 2010
45. 隋升. PEMFC的双极板及其流场研究. 燃料電池核心技術研讨會, 台湾新竹, 2011
46. 隋升. Research and development status and prospect on regenerative fuel cells. “2013年可再生能源研讨会议” 大会邀请报告, 2013年12月5-6日,长沙
47. 隋升等,Hydrogen and Fuel Cells in China(Invited speech). 10th International Hydrogen & Fuel Cell Conference, Partnering & Exhibition, 25th March 2014,Birmingham, UK
48. 隋升.精细化学行业在燃料电池技术领域应用
和机遇. "第十五届国际精细化工原料及中间体市场研讨会"大会邀请报告, 2015年11月11-12日,上海.
49. Sheng Sui, Yuehong Su, Xianghui Hou and Saffa Riffat. Pt nanoparticle wet-chemically synthesis under applied potentials, Fuel cell and hydrogen conference 2018, March 13-14, Birmingham, UK (poster).
50. Sheng Sui, Qinglin Li, Yuehong Su and Saffa Riffat. Modelling and Evaluation of energy, CO2 emission and economics for a PEMFC CHP system for application in an eco-house at University of Nottingham, The 17th International Conference on Sustainable Energy Technologies & 2018 Wuhan Forum of World-Renowned Scientists Lecturing, August 21st-23rd,Wuhan, China.
51. 隋升. 燃料电池在建筑热电联供中应用, 2018年新能源技术交流活动, 中国电工技术/动力工程学会新能源发电设备专委会, 2018年10月11日, 上海
52. 隋升. 水电解储能技术现状和展望, 2018全国先进电化学与储能材料发展研讨会, 2018年12月22日-23日,厦门
53. 隋升. 电转气(P2G)技术—水煤浆电解制氢研究和展望, 草原论坛2019,2019年7月17日,锡林浩特。
专著:
1、隋智通, 隋升, 罗冬梅. 燃料电池及其应用. 冶金工业出版社, 北京, 2004年3月, ISBN 7-5024-3464-X.
2、章俊良,蒋峰景. 燃料电池:原理·关键材料和技术(第四章再生燃料电池, 隋升). 威澳门尼斯人8188出版社,上海,2014.12,ISBN 9787 3131 24500.
3、K Kendall, M Kendall. High-temperature Solid Oxide Fuel Cells for the 21st Century: Fundamentals, Design and Applications(2nd Edition),Elsevier 2015. Chapter 14: Fuels and Fuel Processing in SOFC Applications, by Sheng Sui,Guohua Xiu. Print Book ISBN :9780124104532; eBook ISBN :9780124104839.
4、Nanoporous Materials for Molecule Separation and Conversion, Elsevier, 06 July 2020. Chapter 13: Nanoporous materials for proton exchange membrane fuel cell applications, by Sheng Sui, Huixin Zhang, Shangfeng Du*. ISBN : 978-0-12-818487-5
5、隋升, 郭雪岩, 李平 译. 氢和燃料电池:新型的技术和应用(原书第二版)(国际电气工程先进技术译丛). 机械工业出版社, 北京, 2015.12,ISBN 978-7-111-51973-7.原书:Bent Sorensen. Hydrogen and fuel cells: Emerging technologies and applications (2rd edition). Elsevier, 2012.