Magalie Lefeuvre is acknowledged for the Elemental Analysis experiments.International audiencePost‐synthesis modification of MIL‐101(Cr)‐NO2 was explored in order to decorate the organic backbone by propyl‐sulfonic groups, with the aim to incorporate mobile and acidic protons for solid‐state proton electrolyte applications. The resulting solid switched from insulating towards proton superconductive behavior under humidity, while the conductivity recorded at 363 K and 95 % relative humidity reached 4.8×10−3 S cm−1. Propitiously, the impregnation of the material by strong acidic molecules (H2SO4) further boosted the proton conductivity performances up to the remarkable σ value of 1.3×10−1 S cm−1 at 363 K/95 % RH, which reaches the performance...
International audienceA highly performing proton conducting composite was prepared through the impre...
In this report we attempt to synthesize materials resistant to dehydration by exploiting the interac...
Comunicación al congreso New directions in Porous Crystalline Materials, Faraday Discussion 2017 (5 ...
The extensive implementation of hydrogen-powered technology today is limited by a number of fundamen...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
Highly dense sulfonic acid-functionalized mesoporous electrolytes with high proton conductivity unde...
A few metal-organic frameworks (MOFs), which typically use strong acids as proton sources, display s...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...
The conductivity performance of a new series of chemically stable proton conducting Metal Organic Fr...
Metal–organic framework (MOF) based proton conductors have received immense importance recently. The...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
Metal–organic framework (MOF) materials are a nontraditional route to ion conductors, but their crys...
A metal-organic framework (MOF) having superprotonic conductivity, MOF-808, is prepared by modulatin...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
Using the concept of isomorphous replacement applied to entire ligands, a <i>C</i><sub>3</sub>-symme...
International audienceA highly performing proton conducting composite was prepared through the impre...
In this report we attempt to synthesize materials resistant to dehydration by exploiting the interac...
Comunicación al congreso New directions in Porous Crystalline Materials, Faraday Discussion 2017 (5 ...
The extensive implementation of hydrogen-powered technology today is limited by a number of fundamen...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
Highly dense sulfonic acid-functionalized mesoporous electrolytes with high proton conductivity unde...
A few metal-organic frameworks (MOFs), which typically use strong acids as proton sources, display s...
A sulfonated indium (In) metal organic framework (MOF) is reported with an anionic layered structure...
The conductivity performance of a new series of chemically stable proton conducting Metal Organic Fr...
Metal–organic framework (MOF) based proton conductors have received immense importance recently. The...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
Metal–organic framework (MOF) materials are a nontraditional route to ion conductors, but their crys...
A metal-organic framework (MOF) having superprotonic conductivity, MOF-808, is prepared by modulatin...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
Using the concept of isomorphous replacement applied to entire ligands, a <i>C</i><sub>3</sub>-symme...
International audienceA highly performing proton conducting composite was prepared through the impre...
In this report we attempt to synthesize materials resistant to dehydration by exploiting the interac...
Comunicación al congreso New directions in Porous Crystalline Materials, Faraday Discussion 2017 (5 ...