Zobrazeno 1 - 10
of 41
pro vyhledávání: '"Jingke Mo"'
Autor:
Zhenye Kang, Min Wang, Yingjie Yang, Hao Wang, Yanrong Liu, Jingke Mo, Jing Li, Peilin Deng, Chunman Jia, Xinlong Tian
Publikováno v:
International Journal of Hydrogen Energy. 47:5807-5816
Publikováno v:
Materials
Volume 16
Issue 3
Pages: 1310
Volume 16
Issue 3
Pages: 1310
Proton exchange membrane (PEM) water electrolysis, which is one of methods of hydrogen production with the most potential, has attracted more attention due to its energy conversion and storage potential. In this paper, a steady state, three-dimension
Autor:
Yifan Li, Bryan S. Pivovar, Guido Bender, Zhenye Kang, Jingke Mo, Gaoqiang Yang, Johney B. Green, Feng-Yuan Zhang
Publikováno v:
International Journal of Hydrogen Energy. 45:26595-26603
As the most important part of electrochemical reaction in proton exchange membrane electrolysis cells (PEMECs) for water splitting, oxygen evolution reaction (OER) occurs at the anode catalyst layer (CL). The distribution of the OER site is affected
Autor:
Bo Han, Yifan Li, Zhenye Kang, Feng-Yuan Zhang, Shule Yu, Gaoqiang Yang, Jingke Mo, Derrick A. Talley
Publikováno v:
International Journal of Hydrogen Energy. 44:28283-28293
The development of water electrolyzer is challenging as we approach theoretical limits arising from electrochemical reactions and micro-scale bubble dynamics. In this research, two-phase flow and bubble dynamics are in-situ studied in a special desig
Autor:
Shule Yu, G. Kane Jennings, Gaoqiang Yang, Yifan Li, Zhenye Kang, Feng-Yuan Zhang, Derrick A. Talley, Jingke Mo, Xuanli Deng
Publikováno v:
Electrochimica Acta. 298:704-708
Wettability of titanium thin/tunable liquid/gas diffusion layers (TT-LGDLs) may affect the oxygen bubble dynamics and detachment process, and impact the performance (cell voltage) in proton exchange membrane electrolyzer cells (PEMECs). In this study
Publikováno v:
Applied Energy. 317:119213
Autor:
Yeshi Dohrmann, Johney B. Green, Frederick Alyious List, Feng-Yuan Zhang, S. Suresh Babu, Jingke Mo, Zhenye Kang, Gaoqiang Yang, Shule Yu
Publikováno v:
Journal of Power Sources. 396:590-598
Additive manufacturing (AM) of the complex devices for energy application remains an almost unexplored area, and the harsh acidic environment also limits the application of AM parts in water splitting for hydrogen production. Here, bipolar plates (BP
Autor:
Zhenye Kang, Scott T. Retterer, Johney B. Green, Shule Yu, Guido Bender, Feng-Yuan Zhang, Jingke Mo, Gaoqiang Yang, Todd J. Toops, David A. Cullen, Bryan S. Pivovar, Michael P. Brady
Publikováno v:
International Journal of Hydrogen Energy. 43:14618-14628
Proton exchange membrane electrolyzer cells (PEMECs) have been considered one of the most promising devices for hydrogen generation and energy storage from water splitting, especially when coupled with sustainable energy resources. Microporous layers
Autor:
Shule Yu, Gaoqiang Yang, Yifan Li, Jingke Mo, Derrick A. Talley, Feng-Yuan Zhang, Zhenye Kang, Bo Han
Publikováno v:
International Journal of Hydrogen Energy. 43:11223-11233
Gas bubble dynamics and two-phase flow have a significant impact on the performance and efficiency of proton exchange membrane electrolyzer cells (PEMECs). It has been strongly desired to develop an effective experimental method for in-situ observing
Autor:
Shule Yu, Bryan S. Pivovar, Scott T. Retterer, Johney B. Green, Jingke Mo, Guido Bender, Yifan Li, Todd J. Toops, Feng-Yuan Zhang, Zhenye Kang, Gaoqiang Yang, David A. Cullen
Publikováno v:
Nano Energy. 47:434-441
Proton exchange membrane electrolyzer cells (PEMECs) have received great attention for hydrogen/oxygen production due to their high efficiencies even at low-temperature operation. Because of the high cost of noble platinum-group metal (PGM) catalysts