Metal–organic frameworks (MOFs) are regarded as the next-generation, disruptive membrane materials, yet the straightforward fabrication of ultrathin MOF membranes on an unmodified porous support remains a critical challenge. In this work, we proposed a facile, one-step electrophoretic deposition (EPD) method for the growth of ultrathin zeolitic imidazole framework-8 (ZIF-8) membranes on a bare porous support. The crystallinity, morphology and coverage of ZIF-8 particles on support surface can be optimized via regulating EPD parameters, yet it is still difficult to ensure the integrity of a ZIF-8 membrane with the constant voltage mode. In contrast, the constant current mode is more beneficial to the growth of a defect-free ZIF-8 membrane du...
Porous polymer supported continuous ZIF-8 membranes were prepared via an interfacial synthesis metho...
Zeolite imidazolate framework-8 (ZIF-8) has emerged as an excellent candidate for the preparation of...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...
We report the synthesis of thin, highly intergrown, polycrystalline metal-organic framework (MOF) me...
Metal–organic framework (MOF) films have recently emerged as highly permselective membranes yielding...
Searching for sustainable synthesis methods of metal–organic framework (MOF) membranes has received ...
Metal-organic framework (MOF) materials have an enormous potential in separation applications, but t...
The imidazolate framework-8 (ZIF-8) crystals were synthesized by in -situ growth techniques inside t...
Membrane-based separation techniques are energy- and costintensive in comparison with conventional s...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Metal-organic frameworks (MOFs), being a type of the most representative porous nanomaterials, have ...
Thin film nanocomposite (TFN) polyamide (PA) membranes has drawn increasing attention due to the imp...
© 2016 Elsevier B.V. Inspired by the traditional RO membrane fabrication method of interfacial polym...
With intrinsic porous structure, unique chemical versatility and abundant application opportunities,...
Metal-organic framework (MOF) membranes show great promise for propene/propane separation, yet a sha...
Porous polymer supported continuous ZIF-8 membranes were prepared via an interfacial synthesis metho...
Zeolite imidazolate framework-8 (ZIF-8) has emerged as an excellent candidate for the preparation of...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...
We report the synthesis of thin, highly intergrown, polycrystalline metal-organic framework (MOF) me...
Metal–organic framework (MOF) films have recently emerged as highly permselective membranes yielding...
Searching for sustainable synthesis methods of metal–organic framework (MOF) membranes has received ...
Metal-organic framework (MOF) materials have an enormous potential in separation applications, but t...
The imidazolate framework-8 (ZIF-8) crystals were synthesized by in -situ growth techniques inside t...
Membrane-based separation techniques are energy- and costintensive in comparison with conventional s...
Gas separations by selective transport through membranes and adsorbents are two of the fastest growi...
Metal-organic frameworks (MOFs), being a type of the most representative porous nanomaterials, have ...
Thin film nanocomposite (TFN) polyamide (PA) membranes has drawn increasing attention due to the imp...
© 2016 Elsevier B.V. Inspired by the traditional RO membrane fabrication method of interfacial polym...
With intrinsic porous structure, unique chemical versatility and abundant application opportunities,...
Metal-organic framework (MOF) membranes show great promise for propene/propane separation, yet a sha...
Porous polymer supported continuous ZIF-8 membranes were prepared via an interfacial synthesis metho...
Zeolite imidazolate framework-8 (ZIF-8) has emerged as an excellent candidate for the preparation of...
Integrating metal-organic frameworks (MOFs) in microelectronics has disruptive potential because of ...