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Imparting amphiphobicity on single-crystalline porous materials.


ABSTRACT: The sophisticated control of surface wettability for target-specific applications has attracted widespread interest for use in a plethora of applications. Despite the recent advances in modification of non-porous materials, surface wettability control of porous materials, particularly single crystalline, remains undeveloped. Here we contribute a general method to impart amphiphobicity on single-crystalline porous materials as demonstrated by chemically coating the exterior of metal-organic framework (MOF) crystals with an amphiphobic surface. As amphiphobic porous materials, the resultant MOF crystals exhibit both superhydrophobicity and oleophobicity in addition to retaining high crystallinity and intact porosity. The chemical shielding effect resulting from the amphiphobicity of the MOFs is illustrated by their performances in water/organic vapour adsorption, as well as long-term ultrastability under highly humidified CO2 environments and exceptional chemical stability in acid/base aqueous solutions. Our work thereby pioneers a perspective to protect crystalline porous materials under various chemical environments for numerous applications.

SUBMITTER: Sun Q 

PROVIDER: S-EPMC5095586 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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Imparting amphiphobicity on single-crystalline porous materials.

Sun Qi Q   He Hongming H   Gao Wen-Yang WY   Aguila Briana B   Wojtas Lukasz L   Dai Zhifeng Z   Li Jixue J   Chen Yu-Sheng YS   Xiao Feng-Shou FS   Ma Shengqian S  

Nature communications 20161031


The sophisticated control of surface wettability for target-specific applications has attracted widespread interest for use in a plethora of applications. Despite the recent advances in modification of non-porous materials, surface wettability control of porous materials, particularly single crystalline, remains undeveloped. Here we contribute a general method to impart amphiphobicity on single-crystalline porous materials as demonstrated by chemically coating the exterior of metal-organic frame  ...[more]

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