Electrochemistry can be a useful technology to enable the transition toward renewable energy sources and to prevent further climate change. Some electrochemical applications are already industrially implemented, like water electrolysers, while others, like CO2 reduction, need further development to be industrially competitive. Here, a bipolar membrane can provide the conditions for a step forward. It will not only separate (gaseous) products from the two electrodes in an electrochemical cell, but it will also allow the use of different pH and electrolyte at either side. This enables optimization of electrode compartments. As it is composed of a cation and anion exchange layer, no ion transport can theoretically occur across the entire membr...
A bipolar membrane (BPM) can be used to accelerate water dissociation to maintain a pH gradient in e...
A bipolar membrane (BPM) can be used to maintain a pH difference in an electrolysis cell, which prov...
Bipolar membranes (BPMs) are catalytic membranes for electro-membrane processes splitting water into...
Electrochemistry can be a useful technology to enable the transition toward renewable energy sources...
Greenhouse gas concentrations are ever increasing in the Earth's atmosphere, causing the global temp...
Bipolar membranes (BPMs) are gaining interest in energy conversion technologies. These membranes are...
Bipolar membranes (BPMs) are gaining interest in energy conversion technologies. These membranes are...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
Bipolar membranes (BPMs) are recently emerging as a promising material for application in advanced e...
A bipolar membrane (BPM) can be used to accelerate water dissociation to maintain a pH gradient in e...
A bipolar membrane (BPM), consisting of a cation and an anion exchange layer (CEL and AEL), can be u...
A bipolar membrane (BPM), consisting of a cation and an anion exchange layer (CEL and AEL), can be u...
A bipolar membrane (BPM) can be used to accelerate water dissociation to maintain a pH gradient in e...
A bipolar membrane (BPM) can be used to maintain a pH difference in an electrolysis cell, which prov...
Bipolar membranes (BPMs) are catalytic membranes for electro-membrane processes splitting water into...
Electrochemistry can be a useful technology to enable the transition toward renewable energy sources...
Greenhouse gas concentrations are ever increasing in the Earth's atmosphere, causing the global temp...
Bipolar membranes (BPMs) are gaining interest in energy conversion technologies. These membranes are...
Bipolar membranes (BPMs) are gaining interest in energy conversion technologies. These membranes are...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
(Photo-) electrochemistry hold great potential for storing the surplus energy of renewably generated...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
Bipolar membranes (BPMs) have the potential to become critical components in electrochemical devices...
Bipolar membranes (BPMs) are recently emerging as a promising material for application in advanced e...
A bipolar membrane (BPM) can be used to accelerate water dissociation to maintain a pH gradient in e...
A bipolar membrane (BPM), consisting of a cation and an anion exchange layer (CEL and AEL), can be u...
A bipolar membrane (BPM), consisting of a cation and an anion exchange layer (CEL and AEL), can be u...
A bipolar membrane (BPM) can be used to accelerate water dissociation to maintain a pH gradient in e...
A bipolar membrane (BPM) can be used to maintain a pH difference in an electrolysis cell, which prov...
Bipolar membranes (BPMs) are catalytic membranes for electro-membrane processes splitting water into...