The Effect of the Upper and Lower Electrochemical Treatment Potentials on the Electrode Activity Towards Vanadium Redox Couples

2021 ◽  
Vol MA2021-02 (5) ◽  
pp. 1956-1956
Author(s):  
Maria Al Hajji Safi ◽  
Andrea Bourke ◽  
D. Noel Buckley ◽  
Robert P. Lynch
2021 ◽  
Vol MA2021-02 (1) ◽  
pp. 101-101
Author(s):  
Vladimir Neburchilov ◽  
Ken Tsay ◽  
Khalid Fatih ◽  
Roberto Neagu ◽  
Erik Kjeang ◽  
...  

RSC Advances ◽  
2014 ◽  
Vol 4 (98) ◽  
pp. 55666-55670 ◽  
Author(s):  
Huijun Liu ◽  
Lingxu Yang ◽  
Qian Xu ◽  
Chuanwei Yan

The electrochemical activity and the reversibility for electrode processes of vanadium ion redox couples are significantly enhanced on an EAGE, which is due to the functional groups of COOH and CO introduced on its surface.


2018 ◽  
Vol 259 ◽  
pp. 687-693 ◽  
Author(s):  
Ming-yao Liu ◽  
Zhi-peng Xiang ◽  
Jin-hua Piao ◽  
Jian-ying Shi ◽  
Zhen-xing Liang

2016 ◽  
Vol 204 ◽  
pp. 263-269 ◽  
Author(s):  
Guanjie Wei ◽  
Wei Su ◽  
Zengfu Wei ◽  
Xinzhuang Fan ◽  
Jianguo Liu ◽  
...  

2015 ◽  
Vol 3 (33) ◽  
pp. 16913-16933 ◽  
Author(s):  
Ki Jae Kim ◽  
Min-Sik Park ◽  
Young-Jun Kim ◽  
Jung Ho Kim ◽  
Shi Xue Dou ◽  
...  

The vanadium redox flow battery, which was first suggested by Skyllas-Kazacos and co-workers in 1985, is an electrochemical storage system which allows energy to be stored in two solutions containing different redox couples.


2021 ◽  
Vol 125 (2) ◽  
pp. 1234-1239
Author(s):  
Zhoulu Wang ◽  
Yudi Hu ◽  
Qiang Wei ◽  
Weishan Li ◽  
Xiang Liu ◽  
...  

MRS Advances ◽  
2018 ◽  
Vol 3 (22) ◽  
pp. 1221-1228
Author(s):  
L. Robarts ◽  
K.S.V. Santhanam

ABSTRACTAmong energy storage devices, the redox flow batteries are important for variety of applications such as for grid storage. In this class of batteries a large number of redox couples have been examined in the past. The vanadium redox couple, although is attractive for this application, suffers from a) poor charge transfer characteristics b) electrode degradation and c) deteriorating performance. We wish to report here that all these deficiencies have been overcome by using a graphene quantum dot electrodes. This electrode has the advantage of large surface area, high electrical and thermal conductivity. The cell voltage of 1.5 V and power density of about 120 mW/cm2 and coulombic efficiency of 90% can be achieved as the redox couples, V(IV)/V(V) and V(III)/V(II) undergo fast electron transfer at the interface of the quantum dots and solution resulting in higher reversibility. The cyclic voltammetric experiments carried out with quantum dots in the solutions during the oxidation of V(IV) show enhanced currents, due to the movements of the dots which is conducive for power gain in the battery operation. The electrochemical degradation is absent with the quantum dot electrode. The charge/discharge cycles have been reproducible.


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