Incorporating ionic liquids (abbreviated as ILs) into porous metal-organic framework (MOF) to obtain ILs@MOF nanocomposites is documented as a feasible method to achieve new type of anhydrous proton conductor with high performance. We newly synthesized a series of ILs with different acid counter anions (R-SO3-) and their ILs@MOF hybrid materials, i.e. SA-EIMS@MIL-101, MSA-EIMS@MIL-101 and PTSA-EIMS@MIL-101 (SA = sulfate acid, MSA = methanesulfonate acid, PTSA = p-toluenesulfonate acid, EIMS = 1-(1-ethy1-3-imidazolium)propane-3-sulfonate). Such hybrid materials displayed as anhydrous proton conduction with long-term durability even heated at 150 degrees C open to air. sigma value of SA-EIMS@MIL-101 is up to 1.89 x 10(-3) S cm(-1), being in t...
International audienceProton exchange membrane fuel cells (PEMFCs) are an attractive green technolog...
A new composite proton-conducting material based on the association of an ionic liquid and a porous ...
Metal-organic frameworks (MOFs) are intriguing host materials in composite electrolytes due to their...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
The combination of ionic liquids (ILs) and metal organic frameworks (MOF) as a new type of hybrid io...
Encapsulation of ionic liquids (ILs) into porous materials can provide environmentally benign solid-...
International audienceA highly performing proton conducting composite was prepared through the impre...
Developing stable conductive materials with high conductivity for sodium ion (Na+) batteries attract...
The conductivity performance of a new series of chemically stable proton conducting Metal Organic Fr...
Fast Li+ solid ion conductors are a key component of all-solid-state batteries, a technology current...
Exploring stable proton-conducting materials with high and durable proton conductivity is expected, ...
Although the low tLi+ and fluid nature of ionic liquid electrolytes can lead to weakened rate capabi...
This review focuses on the combination of metal-organic frameworks (MOFs) and ionic liquids (ILs) to...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Ionic liquids (ILs) show promise as safe electrolytes for electrochemical devices. However, the cond...
International audienceProton exchange membrane fuel cells (PEMFCs) are an attractive green technolog...
A new composite proton-conducting material based on the association of an ionic liquid and a porous ...
Metal-organic frameworks (MOFs) are intriguing host materials in composite electrolytes due to their...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
The combination of ionic liquids (ILs) and metal organic frameworks (MOF) as a new type of hybrid io...
Encapsulation of ionic liquids (ILs) into porous materials can provide environmentally benign solid-...
International audienceA highly performing proton conducting composite was prepared through the impre...
Developing stable conductive materials with high conductivity for sodium ion (Na+) batteries attract...
The conductivity performance of a new series of chemically stable proton conducting Metal Organic Fr...
Fast Li+ solid ion conductors are a key component of all-solid-state batteries, a technology current...
Exploring stable proton-conducting materials with high and durable proton conductivity is expected, ...
Although the low tLi+ and fluid nature of ionic liquid electrolytes can lead to weakened rate capabi...
This review focuses on the combination of metal-organic frameworks (MOFs) and ionic liquids (ILs) to...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Ionic liquids (ILs) show promise as safe electrolytes for electrochemical devices. However, the cond...
International audienceProton exchange membrane fuel cells (PEMFCs) are an attractive green technolog...
A new composite proton-conducting material based on the association of an ionic liquid and a porous ...
Metal-organic frameworks (MOFs) are intriguing host materials in composite electrolytes due to their...