Zobrazeno 1 - 10
of 14
pro vyhledávání: '"Shoutao Gong"'
Autor:
Ruiting Zhou, Lingling Ma, Lv Li, Shoutao Gong, Lei Bai, Naeem Akhtar Qaisrani, Gaohong He, Fengxiang Zhang
Publikováno v:
Next Materials, Vol 3, Iss , Pp 100178- (2024)
This study reports on the synthesis, design and evaluation of a novel, interesting type of gradient-side-chain polyphenyl ether anion exchange membranes (AEMs) as the electrolytes for alkali fuel cells. Such membranes were fabricated by co-grafting o
Externí odkaz:
https://doaj.org/article/ee4c6715ded247fbbbc3c6bf7c1481b2
Autor:
Gaohong He, Lv Li, Lingling Ma, Lei Bai, Naeem Akhtar Qaisrani, Fengxiang Zhang, Shoutao Gong
Publikováno v:
International Journal of Hydrogen Energy. 46:2269-2281
High hydroxide conductivity and good stability of anion exchange membranes (AEMs) is the guarantee that anion exchange membrane fuel cells (AEMFCs) yield high power output for a long time. Balanced conductivity and stability can be better guaranteed
Autor:
Lingling Ma, Ma Yanjiao, Shoutao Gong, Naeem Akhtar Qaisrani, Lv Li, Li Panyue, Fengxiang Zhang, Gaohong He
Publikováno v:
Journal of Membrane Science. 586:98-105
A β-cyclodextrin (β-CD) based template method is proposed for fabricating high performance nanoporous anion exchange membranes for vanadium flow batteries (VFBs). The β-CD template can be uniformly dispersed in hydroxyl modified polysulfone precur
Autor:
Fengxiang Zhang, Manzoor Hussain, Jiafei Liu, Li Panyue, Naeem Akhtar Qaisrani, Gaohong He, Shoutao Gong, Lingling Ma, Lv Li
Publikováno v:
Journal of Membrane Science. 581:293-302
The anion exchange membranes (AEM) is one of the key components for alkaline electrolyte membrane fuel cells. However, poor alkaline stability and conductivity of the membrane greatly hinders its practical application. Herein, we report a novel 4-(di
Autor:
Ruiting Zhou, Yanzhen Ren, Shoutao Gong, Lingling Ma, Lv Li, Yabin Jia, Gaohong He, Fengxiang Zhang
Publikováno v:
Polymer. 238:124403
Autor:
Shoutao Gong, Lv Li, Li Panyue, Ma Yanjiao, Fengxiang Zhang, Naeem Akhtar Qaisrani, Lingling Ma, Gaohong He
Publikováno v:
Journal of Membrane Science. 560:67-76
A side-chain hydrolysis method is proposed for fabricating high performance nanoporous membranes that can be used in vanadium flow batteries (VFBs). The membranes were fabricated facilely by hydrolyzing the bulky ester groups at the side chain of a c
Autor:
Shoutao Gong, Baolin Zhao, Gaohong He, Kuibo Zhang, Fengxiang Zhang, Naeem Akhtar Qaisrani, Liu Yanxiang, Lingdong Li
Publikováno v:
Journal of Membrane Science. 550:59-71
Inadequate hydroxide conductivity of anion exchange membrane (AEM) is one of the obstacles restricting practical application of anion exchange membrane fuel cell. In this work, we report the design, fabrication and properties of AEMs based on bent-tw
Autor:
Naeem Akhtar Qaisrani, Lv Li, Jiafei Liu, Gaohong He, Fengxiang Zhang, Li Gao, Shoutao Gong, Xiaoming Yan, Ma Yanjiao, Lingling Ma
Publikováno v:
Ionics. 24:3053-3063
A new type of composite anion-exchange membrane is fabricated using benzoxazine (Bz) monomer and polytetrafluoroethylene (PTFE) via a green and facile method. Membrane fabrication is achieved via in situ ring-opening polymerization of Bz within the P
Autor:
Shoutao Gong, Fengxiang Zhang, Lingdong Li, Li Shanshan, Jie Cheng, Li Xiaoliang, Liu Yanxiang, Gaohong He
Publikováno v:
International Journal of Hydrogen Energy. 42:21016-21026
This work reports the design, fabrication and properties of 4,4′-oxydiphenylguanidinium-bridged-silsesquioxane (ODGBS) modified polysulfone anion exchange membrane (AEM). It was prepared by sol-gel polymerization of ODGBS in the network of cross-li
Autor:
Shoutao Gong, Lv Li, Gaohong He, Jiafei Liu, Naeem Akhtar Qaisrani, Fengxiang Zhang, Lingling Ma
Publikováno v:
Journal of Membrane Science. 595:117541
High hydroxide conductivity and alkali resistance of anion exchange membranes (AEMs) is the basic requirement for realizing the practical application of anion exchange membrane fuel cells. In this work, we develop a novel blend AEM incorporating poly