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突破与未来:朝向先进介孔材料的组成、形态和中孔取向的纳米尺度控制。

Breakthrough and future: nanoscale controls of compositions, morphologies, and mesochannel orientations toward advanced mesoporous materials.

机构信息

World Premier International (WPI) Research Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS), Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan.

出版信息

Chem Rec. 2009;9(6):321-39. doi: 10.1002/tcr.200900022.

Abstract

Currently, ordered mesoporous materials prepared through the self-assembly of surfactants have attracted growing interests owing to their special properties, including uniform mesopores and a high specific surface area. Here we focus on fine controls of compositions, morphologies, mesochannel orientations which are important factors for design of mesoporous materials with new functionalities. This Review describes our recent progress toward advanced mesoporous materials. Mesoporous materials now include a variety of inorganic-based materials, for example, transition-metal oxides, carbons, inorganic-organic hybrid materials, polymers, and even metals. Mesoporous metals with metallic frameworks can be produced by using surfactant-based synthesis with electrochemical methods. Owing to their metallic frameworks, mesoporous metals with high electroconductivity and high surface areas hold promise for a wide range of potential applications, such as electronic devices, magnetic recording media, and metal catalysts. Fabrication of mesoporous materials with controllable morphologies is also one of the main subjects in this rapidly developing research field. Mesoporous materials in the form of films, spheres, fibers, and tubes have been obtained by various synthetic processes such as evaporation-mediated direct templating (EDIT), spray-dried techniques, and collaboration with hard-templates such as porous anodic alumina and polymer membranes. Furthermore, we have developed several approaches for orientation controls of 1D mesochannels. The macroscopic-scale controls of mesochannels are important for innovative applications such as molecular-scale devices and electrodes with enhanced diffusions of guest species.

摘要

目前,通过表面活性剂自组装制备的有序介孔材料由于其独特的性质,包括均匀的介孔和高的比表面积,引起了越来越多的关注。在这里,我们重点介绍对组成、形貌、介孔取向的精细控制,这些都是具有新功能的介孔材料设计的重要因素。本综述描述了我们在先进介孔材料方面的最新进展。介孔材料现在包括各种基于无机的材料,例如过渡金属氧化物、碳、无机-有机杂化材料、聚合物,甚至金属。通过使用基于表面活性剂的合成与电化学方法,可以制备具有金属骨架的介孔金属。由于其金属骨架,具有高导电性和高比表面积的介孔金属有望在电子器件、磁记录介质和金属催化剂等广泛的潜在应用中得到应用。可控形貌的介孔材料的制备也是这个快速发展的研究领域的主要课题之一。通过各种合成工艺,如蒸发介导的直接模板法(EDIT)、喷雾干燥技术以及与多孔阳极氧化铝和聚合物膜等硬模板的合作,已经获得了薄膜、球体、纤维和管形式的介孔材料。此外,我们还开发了几种一维介孔取向控制的方法。介孔的宏观尺度控制对于创新应用很重要,例如具有增强客体物种扩散的分子尺度器件和电极。

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