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宏观有序多孔材料:从沸石和金属有机骨架到液晶模板介孔材料。

Macroscopically Oriented Porous Materials with Periodic Ordered Structures: From Zeolites and Metal-Organic Frameworks to Liquid-Crystal-Templated Mesoporous Materials.

机构信息

2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.

出版信息

Adv Mater. 2017 Jul;29(25). doi: 10.1002/adma.201605974. Epub 2017 Apr 27.

DOI:10.1002/adma.201605974
PMID:28449264
Abstract

Porous materials with molecular-sized periodic structures, as exemplified by zeolites, metal-organic frameworks, or mesoporous silica, have attracted increasing attention due to their range of applications in storage, sensing, separation, and transformation of small molecules. Although the components of such porous materials have a tendency to pack in unidirectionally oriented periodic structures, such ideal types of packing cannot continue indefinitely, generally ceasing when they reach a micrometer scale. Consequently, most porous materials are composed of multiple randomly oriented domains, and overall behave as isotropic materials from a macroscopic viewpoint. However, if their channels could be unidirectionally oriented over a macroscopic scale, the resultant porous materials might serve as powerful tools for manipulating molecules. Guest molecules captured in macroscopically oriented channels would have their positions and directions well-defined, so that molecular events in the channels would proceed in a highly controlled manner. To realize such an ideal situation, numerous efforts have been made to develop various porous materials with macroscopically oriented channels. An overview of recent studies on the synthesis, properties, and applications of macroscopically oriented porous materials is presented.

摘要

具有分子级周期性结构的多孔材料,如沸石、金属有机骨架或介孔硅,由于其在小分子的存储、传感、分离和转化方面的广泛应用而受到越来越多的关注。尽管这些多孔材料的组成部分具有在单向取向的周期性结构中堆积的趋势,但这种理想的堆积方式不能无限期地继续下去,通常在达到微米尺度时就会停止。因此,大多数多孔材料由多个随机取向的畴组成,从宏观角度来看,它们整体表现为各向同性材料。然而,如果它们的通道能够在宏观尺度上单向取向,那么得到的多孔材料可能成为操纵分子的有力工具。在宏观上定向的通道中捕获的客体分子将具有明确的位置和方向,从而使通道中的分子事件以高度可控的方式进行。为了实现这种理想情况,人们已经做出了许多努力来开发具有宏观定向通道的各种多孔材料。本文综述了近年来在宏观定向多孔材料的合成、性质和应用方面的研究进展。

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