Covalent organic frameworks (COFs) have regular channels that can accommodate guest molecules to provide highly conductive solid electrolytes. However, designing smart, conductive COFs remains a great challenge. Herein, we report the first example of PEG-functionalized ionic liquids (ILs) anchored on the COF walls by strong hydrogen bonding to fabricate thermally responsive COFs (ILm@COF). We found that similar to the traditional IL/water mixture, the ILs undergo lower critical solution temperature (LCST)-type phase behavior within COF nanopores under high moisture levels. However, the phase separation temperature of aqueous IL decreases in COF channels due to the strong interaction between the IL and COF. Thus, the proton conductivity of I...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Room temperature ionic liquids are salts which are molten at or around room temperature without any ...
Ionic liquids (ILs) in nanoporous confinement are the core of many supercapacitors and batteries, wh...
Arranging ionic liquids (ILs) with long-range order can not only enhance their performance in a desi...
Ionic liquids (ILs) show promise as safe electrolytes for electrochemical devices. However, the cond...
We present the novel potential application of imine-based covalent organic frameworks (COFs), formed...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Room-temperature ionic liquids (ILs) are a unique, novel class of designer solvents and materials wi...
The idea of spatial confinement has gained widespread interest in myriad applications. Especially, t...
Covalent organic frameworks (COFs) with long-range ordered, rigid, and tailor-made nanochannels hold...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
Incorporating ionic liquids (abbreviated as ILs) into porous metal-organic framework (MOF) to obtain...
peer-reviewedDeveloping new materials for the fabrication of proton exchange membranes (PEMs) for fu...
Covalent organic frameworks (COFs) are a novel class of crystalline porous polymers, which possessed...
An ionic liquid was confined inside the nanopores of a three-dimensional (3D) COF for the first time...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Room temperature ionic liquids are salts which are molten at or around room temperature without any ...
Ionic liquids (ILs) in nanoporous confinement are the core of many supercapacitors and batteries, wh...
Arranging ionic liquids (ILs) with long-range order can not only enhance their performance in a desi...
Ionic liquids (ILs) show promise as safe electrolytes for electrochemical devices. However, the cond...
We present the novel potential application of imine-based covalent organic frameworks (COFs), formed...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Room-temperature ionic liquids (ILs) are a unique, novel class of designer solvents and materials wi...
The idea of spatial confinement has gained widespread interest in myriad applications. Especially, t...
Covalent organic frameworks (COFs) with long-range ordered, rigid, and tailor-made nanochannels hold...
To develop proton-conducting materials under low-humidity conditions and at moderate working tempera...
Incorporating ionic liquids (abbreviated as ILs) into porous metal-organic framework (MOF) to obtain...
peer-reviewedDeveloping new materials for the fabrication of proton exchange membranes (PEMs) for fu...
Covalent organic frameworks (COFs) are a novel class of crystalline porous polymers, which possessed...
An ionic liquid was confined inside the nanopores of a three-dimensional (3D) COF for the first time...
It is challenging to introduce pendent sulfonic acid groups into modularly built crystalline porous ...
Room temperature ionic liquids are salts which are molten at or around room temperature without any ...
Ionic liquids (ILs) in nanoporous confinement are the core of many supercapacitors and batteries, wh...