Robust catechol coatings for enhanced moisture tolerance were produced in one step by direct reaction of Hong Kong University of Science and Technology (HKUST) with synthetic catechols. We ascribe the rapid formation of homogeneous coatings around the metal-organic framework particles to the biomimetic catalytic activity of Cu(II) dimers in the external surface of the crystals. Use of fluorinated catechols results in hydrophobic, permeable coatings that protect HKUST from water degradation while retaining close to 100% of its original sorption capacity
An isoreticular family of metal-organic frameworks is post-synthetically subjected to polymer grafti...
Metal-organic frameworks (MOFs) are a relatively new class of porous materials, assembled from inorg...
Metal-organic frameworks are of interest in a number of host-guest applications. However, their weak...
Robust catechol coatings for enhanced moisture tolerance were produced in one step by direct reactio...
Robust catechol coatings for enhanced moisture tolerance were produced in one step by direct reactio...
Robust catechol coatings for enhanced moisture tolerance can be produced in one step by direct react...
Metal-organic frameworks (MOFs) are a class of porous inorganic materials with promising properties ...
Metal-organic frameworks (MOFs) are a class of porous inorganic materials with promising properties ...
The moisture sensitivity of many metal–organic frameworks (MOFs) poses a critical issue for their la...
PMCID: PMC4876919Many metal-organic frameworks are water labile, including the iconic Hong-Kong Univ...
Metal–organic frameworks (MOFs) have been widely investigated for their use in separation, such as g...
The ability to control the relative humidity at which water uptake occurs in a given adsorbent is ad...
Materials with surfaces that can be switched from high/superhydrophobicity to superhydrophilicity ar...
Metal-organic polyhedra (MOP) are a promising class of crystalline porous materials with multifariou...
Superhierarchically rough films are rapidly synthesised on metal substrates via electrochemically tr...
An isoreticular family of metal-organic frameworks is post-synthetically subjected to polymer grafti...
Metal-organic frameworks (MOFs) are a relatively new class of porous materials, assembled from inorg...
Metal-organic frameworks are of interest in a number of host-guest applications. However, their weak...
Robust catechol coatings for enhanced moisture tolerance were produced in one step by direct reactio...
Robust catechol coatings for enhanced moisture tolerance were produced in one step by direct reactio...
Robust catechol coatings for enhanced moisture tolerance can be produced in one step by direct react...
Metal-organic frameworks (MOFs) are a class of porous inorganic materials with promising properties ...
Metal-organic frameworks (MOFs) are a class of porous inorganic materials with promising properties ...
The moisture sensitivity of many metal–organic frameworks (MOFs) poses a critical issue for their la...
PMCID: PMC4876919Many metal-organic frameworks are water labile, including the iconic Hong-Kong Univ...
Metal–organic frameworks (MOFs) have been widely investigated for their use in separation, such as g...
The ability to control the relative humidity at which water uptake occurs in a given adsorbent is ad...
Materials with surfaces that can be switched from high/superhydrophobicity to superhydrophilicity ar...
Metal-organic polyhedra (MOP) are a promising class of crystalline porous materials with multifariou...
Superhierarchically rough films are rapidly synthesised on metal substrates via electrochemically tr...
An isoreticular family of metal-organic frameworks is post-synthetically subjected to polymer grafti...
Metal-organic frameworks (MOFs) are a relatively new class of porous materials, assembled from inorg...
Metal-organic frameworks are of interest in a number of host-guest applications. However, their weak...