Hydroxide-exchange-membrane water electrolysis (HEMWE) is an emerging hydrogen-production pathway that combines many advantages of incumbent alkaline water electrolysis (AWE) and proton-exchange-membrane water electrolysis (PEMWE). Advancement in HEMWE has been accelerated with the development of stable and conductive hydroxide exchange membranes (HEMs) and a more comprehensive understanding of alkaline gas-evolving kinetics. However, performance and durability without supporting electrolytes (SELs) remain inferior to PEMWE and AWE and little is known about the role and impact of the SELs. This study investigates the effects of SELs used as anolyte solutions in HEMWEs including cation-type, anion-type, SEL conductivity and pH, presence of c...
© 2022 Hydrogen Energy Publications LLCThe commercialization of anion-exchange membrane water electr...
International audienceAnion exchange membrane (AEM) electrolysis is the process for hydrogen generat...
Polymer electrolyte membrane (PEM) fuel cells are promising candidates for powering automotive vehic...
Hydroxide-exchange-membrane water electrolysis (HEMWE) is an emerging hydrogen-production pathway th...
Alkaline or hydroxide exchange membrane water electrolysis (HEMWE) is a promising technology for gre...
1 page.Electrolysis, also known as water splitting, consists of two half-reactions occurring within ...
Many solid-state devices, especially those requiring anion conduction, often add a supporting electr...
Anion exchange membrane water electrolyzers (AEMWEs) offer a cost-effective technology for producing...
Anion-exchange membrane (AEM) water electrolysis could allow inexpensive and greener hydrogen produc...
Water electrolyzers can transform intermittent renewable energy like solar energy and wind energy in...
The useful lifetime of bipolar ion exchange membranes is often limited by nucleophilic attack by hyd...
The role of hydrogen as a commercial energy carrier is dependent on the development of robust proces...
Hydroxide (OH−) exchange membrane fuel cells (HEMFCs) have been shown to have the potential to becom...
The hydroxide-exchange-membrane water electrolyzer (HEMWE) is a promising means to store intermitten...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
© 2022 Hydrogen Energy Publications LLCThe commercialization of anion-exchange membrane water electr...
International audienceAnion exchange membrane (AEM) electrolysis is the process for hydrogen generat...
Polymer electrolyte membrane (PEM) fuel cells are promising candidates for powering automotive vehic...
Hydroxide-exchange-membrane water electrolysis (HEMWE) is an emerging hydrogen-production pathway th...
Alkaline or hydroxide exchange membrane water electrolysis (HEMWE) is a promising technology for gre...
1 page.Electrolysis, also known as water splitting, consists of two half-reactions occurring within ...
Many solid-state devices, especially those requiring anion conduction, often add a supporting electr...
Anion exchange membrane water electrolyzers (AEMWEs) offer a cost-effective technology for producing...
Anion-exchange membrane (AEM) water electrolysis could allow inexpensive and greener hydrogen produc...
Water electrolyzers can transform intermittent renewable energy like solar energy and wind energy in...
The useful lifetime of bipolar ion exchange membranes is often limited by nucleophilic attack by hyd...
The role of hydrogen as a commercial energy carrier is dependent on the development of robust proces...
Hydroxide (OH−) exchange membrane fuel cells (HEMFCs) have been shown to have the potential to becom...
The hydroxide-exchange-membrane water electrolyzer (HEMWE) is a promising means to store intermitten...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
© 2022 Hydrogen Energy Publications LLCThe commercialization of anion-exchange membrane water electr...
International audienceAnion exchange membrane (AEM) electrolysis is the process for hydrogen generat...
Polymer electrolyte membrane (PEM) fuel cells are promising candidates for powering automotive vehic...