Proton conduction underlies many important electrochemical technologies. A family of new proton electrolytes is reported: acid-in-clay electrolyte (AiCE) prepared by integrating fast proton carriers in a natural phyllosilicate clay network, which can be made into thin-film (tens of micrometers) fluid-impervious membranes. The chosen example systems (sepiolite-phosphoric acid) rank top among the solid proton conductors in terms of proton conductivities (15 mS cm-1 at 25 °C, 0.023 mS cm-1 at -82 °C), electrochemical stability window (3.35 V), and reduced chemical reactivity. A proton battery is assembled using AiCE as the solid electrolyte membrane. Benefitting from the wider electrochemical stability window, reduced corrosivity, and excellen...
Ionic systems with enhanced proton conductivity are widely viewed as promising electrolytes in fuel ...
As a potential solution to ubiquitous energy concerns, anion-exchange membranes (AEMs) have been wid...
Electrodes based on organic matter operating in aqueous electrolytes enable new approaches and techn...
Novel solid proton conductors based on oxyacid salts and salt-ceramic composites and intermediate te...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Sustained efforts in the engineering of fuel cells based on polymer electrolyte membranes have resul...
Keryn Lian - Associate Professor at the Department of Materials Science and Engineering, University ...
The technical feasibility of a small-scale proton battery with a carbon-based electrode is demonstra...
International audienceWe present here an historical overview of the early researches on proton condu...
Progress in the area of proton conducting polymer electrolyte membranes is intimately linked with th...
Abstract Developing advanced electrode materials is crucial for improving the electrochemical perfor...
Objectives of this project were to prepare and characterize novel solid state proton-conductors and ...
A new water-free proton-conducting solid electrolyte based on organic/inorganic hybrids was investig...
Proton conductive electrolytes of (NH4)xM1−xPO3 (M = K, Rb, and Cs) solid solutions were prepared fo...
A new approach for the development of lithium and proton conducting electrolyte membrane is here rep...
Ionic systems with enhanced proton conductivity are widely viewed as promising electrolytes in fuel ...
As a potential solution to ubiquitous energy concerns, anion-exchange membranes (AEMs) have been wid...
Electrodes based on organic matter operating in aqueous electrolytes enable new approaches and techn...
Novel solid proton conductors based on oxyacid salts and salt-ceramic composites and intermediate te...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Sustained efforts in the engineering of fuel cells based on polymer electrolyte membranes have resul...
Keryn Lian - Associate Professor at the Department of Materials Science and Engineering, University ...
The technical feasibility of a small-scale proton battery with a carbon-based electrode is demonstra...
International audienceWe present here an historical overview of the early researches on proton condu...
Progress in the area of proton conducting polymer electrolyte membranes is intimately linked with th...
Abstract Developing advanced electrode materials is crucial for improving the electrochemical perfor...
Objectives of this project were to prepare and characterize novel solid state proton-conductors and ...
A new water-free proton-conducting solid electrolyte based on organic/inorganic hybrids was investig...
Proton conductive electrolytes of (NH4)xM1−xPO3 (M = K, Rb, and Cs) solid solutions were prepared fo...
A new approach for the development of lithium and proton conducting electrolyte membrane is here rep...
Ionic systems with enhanced proton conductivity are widely viewed as promising electrolytes in fuel ...
As a potential solution to ubiquitous energy concerns, anion-exchange membranes (AEMs) have been wid...
Electrodes based on organic matter operating in aqueous electrolytes enable new approaches and techn...