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首页> 外文期刊>Chemical Society Reviews >Applications of hierarchically structured porous materials from energy storage and conversion, catalysis, photocatalysis, adsorption, separation, and sensing to biomedicine
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Applications of hierarchically structured porous materials from energy storage and conversion, catalysis, photocatalysis, adsorption, separation, and sensing to biomedicine

机译:从能量存储和转换,催化,光催化,吸附,分离和传感到生物医学的分层结构多孔材料的应用

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摘要

Over the last decade, significant effort has been devoted to the applications of hierarchically structured porous materials owing to their outstanding properties such as high surface area, excellent accessibility to active sites, and enhanced mass transport and diffusion. The hierarchy of porosity, structural, morphological and component levels in these materials is key for their high performance in all kinds of applications. The introduction of hierarchical porosity into materials has led to a significant improvement in the performance of materials. Herein, recent progress in the applications of hierarchically structured porous materials from energy conversion and storage, catalysis, photocatalysis, adsorption, separation, and sensing to biomedicine is reviewed. Their potential future applications are also highlighted. We particularly dwell on the relationship between hierarchically porous structures and properties, with examples of each type of hierarchically structured porous material according to its chemical composition and physical characteristics. The present review aims to open up a new avenue to guide the readers to quickly obtain in-depth knowledge of applications of hierarchically porous materials and to have a good idea about selecting and designing suitable hierarchically porous materials for a specific application. In addition to focusing on the applications of hierarchically porous materials, this comprehensive review could stimulate researchers to synthesize new advanced hierarchically porous solids.
机译:在过去的十年中,由于其出色的特性,例如高表面积,出色的活性位点可访问性以及增强的质量传输和扩散,已为分层结构的多孔材料的应用做出了巨大的努力。这些材料中的孔隙率,结构,形态和组分水平的层次对于它们在各种应用中的高性能至关重要。在材料中引入分层孔隙度已导致材料性能的显着改善。在此,对从能量转换和存储,催化,光催化,吸附,分离和传感到生物医学的分层结构多孔材料的应用的最新进展进行了综述。还强调了它们在未来的潜在应用。我们特别介绍了分层多孔结构与特性之间的关系,并根据其化学组成和物理特性,举例说明了每种类型的分层结构多孔材料。本综述旨在开辟一条新途径,以指导读者快速获得有关分层多孔材料应用的深入知识,并具有针对特定应用选择和设计合适的分层多孔材料的好主意。除了着重于分层多孔材料的应用之外,这项全面的综述还可以刺激研究人员合成新的先进的分层多孔固体。

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