材料科学
膜
制作
纳米尺度
晶界
多孔性
热传导
纳米技术
化学工程
金属有机骨架
微观结构
光学透明度
聚合物
基质(化学分析)
桥接(联网)
扩散
复合材料
多孔介质
质子
光电子学
电导率
作者
Manni Li,Ke Lan,Yu Zhang,Lei Wu,Dongshuang Wu,Yaotian Yan,Wen Zhang,Weidong Shi,Kun Zhang
摘要
The industrial deployment of metal-organic frameworks (MOFs) is hindered by their particulate morphology, while the fabrication of macroscopic architectures-particularly continuous membranes remain a major challenge. Traditional approaches, such as matrix blending, vitrification, or substrate-supported deposition, often sacrifice MOF loading amount, crystallinity, porosity, or mechanical integrity. Here, we present a breakthrough strategy based on OH-bridging (i.e., using metal─OH-metal bonds to connect nanoparticles) for fabricating MOF ceramic-like membrane, which endows the membranes with pure MOF composition, ordered porous structure, and self-supporting capability. The prepared membrane demonstrates remarkable proton conduction and humidity-responsive optical transparency, which stems from its compact grain boundary structure and the strong grain boundary-water interactions. This OH-bridging strategy overcomes a critical challenge in metal-organic frameworks: the inability to process powdered MOFs into freestanding, crystalline porous membranes, which is beneficial for bridging the gap between nanoscale design and macroscopic functional systems.
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