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首页> 外文期刊>Angewandte Chemie >Oriented Nanoscale Films of Metal-Organic Frameworks By Room-Temperature Gel-Layer Synthesis
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Oriented Nanoscale Films of Metal-Organic Frameworks By Room-Temperature Gel-Layer Synthesis

机译:室温凝胶层合成的金属有机骨架定向纳米薄膜

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Metal-organic frameworks (MOFs) assembled from organic building blocks and metal-based connectors have attracted much interest owing to their large pores and their enormous structural diversity. Particularly, the generation of homogeneous thin films of MOFs is highly desirable in view of potential applications including chemical sensors, catalysts, and also optical devices. Several elegant examples of MOF film growth have recently been reported (see below), but a general and convenient method for the synthesis of homogeneous oriented thin films is not known. Herein we present a novel strategy for the growth of highly oriented thin films of MOFs based on the storage of one reaction partner for framework synthesis in a polymer gel layer, followed by diffusion of the other reaction partner into the gel layer and to a nucleation interface provided by a functionalized self-assembled monolayer (Scheme 1).
机译:由有机构件和金属基连接器组装而成的金属有机框架(MOF)由于其大孔和巨大的结构多样性而引起了人们的极大兴趣。特别地,鉴于包括化学传感器,催化剂以及光学装置的潜在应用,非常希望产生MOF的均质薄膜。最近已经报道了MOF膜生长的几个很好的例子(见下文),但是合成均匀取向薄膜的通用且方便的方法尚不清楚。本文中,我们提出了一种新的策略,可基于一种反应伙伴在聚合物凝胶层中存储用于框架合成的MOF的高取向薄膜,然后将另一种反应伙伴扩散到凝胶层和成核界面中由功能化的自组装单层膜提供(方案1)。

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