The extensive implementation of hydrogen-powered technology today is limited by a number of fundamental problems related to materials research. Fuel-cell hydrogen conversion technology requires proton-conducting materials with high conductivity at intermediate temperatures up to 120 °C. The development of such materials remains challenging because the proton transport of many promising candidates is based on extended microstructures of water molecules, which deteriorate at temperatures above the boiling point. Here we show the impregnation of the mesoporous metal–organic framework (MOF) MIL-101 by nonvolatile acids H<sub>2</sub>SO<sub>4</sub> and H<sub>3</sub>PO<sub>4</sub>. Such a simple approach affords solid materials with potent proton-...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
The necessity of energy and power generation is constantly growing. Fossils fuels are quickly becomi...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
Nowadays energy demands are huge and still increasing. This fact drives the search for modern techno...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
Metal–organic framework (MOF) materials are a nontraditional route to ion conductors, but their crys...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
Magalie Lefeuvre is acknowledged for the Elemental Analysis experiments.International audiencePost‐s...
Proton-conducting materials are an important component of fuel cells. Development of new types of pr...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Strong toluenesulfonic and triflic acids were incorporated into a MIL-101 chromium(III) terephthala...
peer-reviewedDeveloping new materials for the fabrication of proton exchange membranes (PEMs) for fu...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
The necessity of energy and power generation is constantly growing. Fossils fuels are quickly becomi...
The low proton conductivity of proton-conducting solids at reduced relative humidity (RH) hinders th...
Nowadays energy demands are huge and still increasing. This fact drives the search for modern techno...
The preparation of proton-conducting materials that are functional and stable at intermediate temper...
Metal–organic framework (MOF) materials are a nontraditional route to ion conductors, but their crys...
We study the proton conductivity properties of MOF-801. We find that MOF-801 possesses intrinsic pro...
Owing to their inherent pore structure, porous metal–organic frameworks (MOFs) can undergo postsynth...
Magalie Lefeuvre is acknowledged for the Elemental Analysis experiments.International audiencePost‐s...
Proton-conducting materials are an important component of fuel cells. Development of new types of pr...
Fuel cells operating at medium temperature range from 473 to 773 K have attracted worldwide attentio...
Strong toluenesulfonic and triflic acids were incorporated into a MIL-101 chromium(III) terephthala...
peer-reviewedDeveloping new materials for the fabrication of proton exchange membranes (PEMs) for fu...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
Although comprehensive progress has been made in the area of coordination polymer (CP)/metal–organic...
We investigate and discuss the proton conductivity properties of the cyanide-bridged metal–organic f...
The necessity of energy and power generation is constantly growing. Fossils fuels are quickly becomi...