Examination of Water Electrolysis and Oxygen Reduction As Self-Discharge Mechanisms for Carbon-Based, Aqueous Electrolyte Electrochemical Capacitors

被引:55
作者
Oickle, Alicia M. [1 ]
Andreas, Heather A. [1 ]
机构
[1] Dalhousie Univ, Dept Chem, Halifax, NS B3H 4J3, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
ACTIVATED CARBON; METAL; ELECTROCATALYSTS; SUPERCAPACITORS; INTERCALATION; PERFORMANCE; GRAPHITE; BLACK;
D O I
10.1021/jp1067439
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Water electrolysis and oxygen reduction as possible self-discharge mechanisms for carbon-based, aqueous H2SO4 electrolyte electrochemical capacitors is examined through a comparison of the predicted and actual effects of varying the dissolved oxygen an hydrogen content on self discharge. e. Water electrolysis, in the form of oxygen evolution, is no the self discharge mechanism on the positive electrode, although, the self-discharge profile is consistent with an activation-controlled Faradaic discharge or charge redistribution mechanism. The addition of hydrogen evidences no change in self-discharge from the negative electrode, and the profile is consistent with a diffusion-controlled mechanism, suggesting water electrolysis through hydrogen evolution is not the self discharge mechanism Oxygen reduction causes a large increase in self discharge on the negative electrode which necessitates purging the cell of oxygen. As such, water electrolysis is likely not the cause of self-discharge in carbon-based, aqueous electrolyte electrochemical capacitors but oxygen reduction is a cause of increased self-discharge on the negative electrode.
引用
收藏
页码:4283 / 4288
页数:6
相关论文
共 41 条
[21]   Design of aqueous redox-enhanced electrochemical capacitors with high specific energies and slow self-discharge [J].
Chun, Sang-Eun ;
Evanko, Brian ;
Wang, Xingfeng ;
Vonlanthen, David ;
Ji, Xiulei ;
Stucky, Galen D. ;
Boettcher, Shannon W. .
NATURE COMMUNICATIONS, 2015, 6
[22]   Design of polyimide-based separators for effective suppression of self-discharge in non-aqueous electrical double layer capacitors [J].
Ku, Hao-Yu ;
Pai, Jui-Yu ;
Lu, Yi-Ting ;
Wang, Li-Qian ;
Hu, Chi-Chang .
JOURNAL OF POWER SOURCES, 2021, 514
[23]   Identification of self-discharge mechanisms of ionic liquid electrolyte based supercapacitor under high-temperature operation [J].
Haque, Mazharul ;
Li, Qi ;
Rigato, Cristina ;
Rajaras, Azega ;
Smith, Anderson D. ;
Lundgren, Per ;
Enoksson, Peter .
JOURNAL OF POWER SOURCES, 2021, 485
[24]   Identification and isolation of carbon oxidation and charge redistribution as self-discharge mechanisms in reduced graphene oxide electrochemical capacitor electrodes [J].
Davis, M. A. ;
Andreas, H. A. .
CARBON, 2018, 139 :299-308
[25]   Conducting Polymer-Based Hybrid Electrochemical Capacitor Utilizing Potassium Iodide Redox Electrolyte with Controlled Self-Discharge [J].
Skunik-Nuckowska, Magdalena ;
Lubera, Justyna ;
Raczka, Patryk ;
Mroziewicz, Aleksandra A. ;
Dyjak, Slawomir ;
Kulesza, Pawel J. .
CHEMELECTROCHEM, 2022, 9 (02)
[26]   Carbon-based catalysts for oxygen reduction reaction: A review on degradation mechanisms [J].
Singh, Harsimranjit ;
Zhuang, Shiqiang ;
Ingis, Benjamin ;
Nunna, Bharath Babu ;
Lee, Eon Soo .
CARBON, 2019, 151 :160-174
[27]   Emerging Carbon-Based Catalysts for the Oxygen Reduction Reaction: Insights into Mechanisms and Applications [J].
Guo, Jing ;
Yao, Yuqi ;
Yan, Xin ;
Meng, Xue ;
Wang, Qing ;
Zhang, Yahui ;
Yan, Shengxue ;
Zhao, Xue ;
Luo, Shaohua .
INORGANICS, 2024, 12 (12)
[28]   Recent Advances with Biomass-Derived Carbon-Based Catalysts for the High-Efficiency Electrochemical Reduction of Oxygen to Hydrogen Peroxide [J].
Wang, Yuan ;
Zhong, Haihong ;
Yang, Weiting ;
Feng, Yongjun ;
Alonso-Vante, Nicolas .
ADVANCED ENERGY AND SUSTAINABILITY RESEARCH, 2023, 4 (12)
[29]   Nitrogen-modified carbon-based catalysts for oxygen reduction reaction in polymer electrolyte membrane fuel cells [J].
Subramanian, Nalini P. ;
Li, Xuguang ;
Nallathambi, Vijayadurda ;
Kumaraguru, Swaminatha P. ;
Colon-Mercado, Hector ;
Wu, Gang ;
Lee, Jong-Won ;
Popov, Branko N. .
JOURNAL OF POWER SOURCES, 2009, 188 (01) :38-44
[30]   Aqueous hybrid battery with Prussian blue analogue cathode and activated carbon anode in heptyl viologen dibromide electrolyte for enhanced performance and suppressed self-discharge [J].
Yoo, Seung-Yeop ;
Park, Jimin ;
Park, Hye-Seon ;
Li, Li ;
Chun, Sang-Eun .
CHEMICAL ENGINEERING JOURNAL, 2025, 519