Self-assembly of a trigonal building subunit with Diaminotriazines (DAT) functional groups leads to a unique rod-packing 3D microporous hydrogen-bonded organic framework (HOF-3). This material shows permanent porosity and demonstrates highly selective separation of C2H2/CO2 at ambient temperature and pressure
Selective-adsorption separation is an energy-efficient technology for the capture of acetylene (C2H2...
Hydrogen-bonded frameworks (HOFs) with permanent microporosity are still hard to obtain, due to the ...
Metal organic frameworks (MOFs) built from a single small ligand typically have high stability, are ...
Self-assembly of a trigonal building subunit with diaminotriazines (DAT) functional groups leads to ...
A unique six-fold interpenetrated hydrogen-bonded organic framework (HOF) has been developed, for th...
A unique six-fold interpenetrated hydrogen-bonded organic framework (HOF) has been developed, for th...
Herein we construct a novel three-dimension (3D) hydrogen-bonded organic framework (PFC-2) with a hi...
Research on HOFs has been developed for quite a long time; however, those with both established perm...
A microporous three-dimensional hydrogen-bonded organic framework (HOF-5) has been constructed from ...
A hydrogen-bonded organic framework (HOF), HOF-7, based on a zinc porphyrin-based building block (Zn...
Research on hydrogen-bonded organic frameworks (HOFs) has been developed for quite a long time; howe...
An extremely stable hydrogen-bonded organic framework, <b>HOF-8</b>, was fabricated. <b>HOF-8</b> is...
A microporous metal-organic framework, for the first time, has been developed for highly selective s...
A separation story! A microporous metal-organic framework (UTSA-34) of non-interpenetrated binodal (...
A new lvt-type metal-organic framework UTSA-60a with suitable pore channels and open metal sites has...
Selective-adsorption separation is an energy-efficient technology for the capture of acetylene (C2H2...
Hydrogen-bonded frameworks (HOFs) with permanent microporosity are still hard to obtain, due to the ...
Metal organic frameworks (MOFs) built from a single small ligand typically have high stability, are ...
Self-assembly of a trigonal building subunit with diaminotriazines (DAT) functional groups leads to ...
A unique six-fold interpenetrated hydrogen-bonded organic framework (HOF) has been developed, for th...
A unique six-fold interpenetrated hydrogen-bonded organic framework (HOF) has been developed, for th...
Herein we construct a novel three-dimension (3D) hydrogen-bonded organic framework (PFC-2) with a hi...
Research on HOFs has been developed for quite a long time; however, those with both established perm...
A microporous three-dimensional hydrogen-bonded organic framework (HOF-5) has been constructed from ...
A hydrogen-bonded organic framework (HOF), HOF-7, based on a zinc porphyrin-based building block (Zn...
Research on hydrogen-bonded organic frameworks (HOFs) has been developed for quite a long time; howe...
An extremely stable hydrogen-bonded organic framework, <b>HOF-8</b>, was fabricated. <b>HOF-8</b> is...
A microporous metal-organic framework, for the first time, has been developed for highly selective s...
A separation story! A microporous metal-organic framework (UTSA-34) of non-interpenetrated binodal (...
A new lvt-type metal-organic framework UTSA-60a with suitable pore channels and open metal sites has...
Selective-adsorption separation is an energy-efficient technology for the capture of acetylene (C2H2...
Hydrogen-bonded frameworks (HOFs) with permanent microporosity are still hard to obtain, due to the ...
Metal organic frameworks (MOFs) built from a single small ligand typically have high stability, are ...