Strong toluenesulfonic and triflic acids were incorporated into a MIL-101 chromium(III) terephthalate coordination framework, producing hybrid proton-conducting solid electrolytes. These acid@MIL hybrid materials possess stable crystalline structures that do not deteriorate during multiple measurements or prolonged heating. Particularly, the triflic-containing compound demonstrates the highest 0.08 S cm<sup>–1</sup> proton conductivity at 15% relative humidity and a temperature of 60 °C, exceeding any of today’s commercial materials for proton-exchange membranes. The structure of the proton-conducting media, as well as the long-range proton-transfer mechanics, was unveiled, in a certain respect, by Fourier transform infrared and <sup>1</su...
Metal–organic frameworks have recently been proposed as promising proton conducting materials for ap...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
The extensive implementation of hydrogen-powered technology today is limited by a number of fundamen...
Metal–organic framework (MOF) materials are a nontraditional route to ion conductors, but their crys...
Proton-exchange membranes (PEMs) as separators have important technological applications in electroc...
International audienceProton chemistry is a fascinating field with both fundamental and applied aspe...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
Nowadays energy demands are huge and still increasing. This fact drives the search for modern techno...
A new function of metal–sulfate-based coordination polymer (CP) for proton conduction was investigat...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...
We reported a new ternary hybrid anhydrous proton-conducting material based on triazole (Tz), wherei...
Metal–organic frameworks have recently been proposed as promising proton conducting materials for ap...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
The extensive implementation of hydrogen-powered technology today is limited by a number of fundamen...
Metal–organic framework (MOF) materials are a nontraditional route to ion conductors, but their crys...
Proton-exchange membranes (PEMs) as separators have important technological applications in electroc...
International audienceProton chemistry is a fascinating field with both fundamental and applied aspe...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
Nowadays energy demands are huge and still increasing. This fact drives the search for modern techno...
A new function of metal–sulfate-based coordination polymer (CP) for proton conduction was investigat...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...
We reported a new ternary hybrid anhydrous proton-conducting material based on triazole (Tz), wherei...
Metal–organic frameworks have recently been proposed as promising proton conducting materials for ap...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...