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网状材料的计算建模:过去、现在与未来

Computational Modeling of Reticular Materials: The Past, the Present, and the Future.

作者信息

Temmerman Wim, Goeminne Ruben, Rawat Kuber Singh, Van Speybroeck Veronique

机构信息

Center for Molecular Modeling (CMM), Ghent University, Technologiepark 46, Zwijnaarde, 9052, Belgium.

出版信息

Adv Mater. 2024 Dec 26:e2412005. doi: 10.1002/adma.202412005.

Abstract

Reticular materials rely on a unique building concept where inorganic and organic building units are stitched together giving access to an almost limitless number of structured ordered porous materials. Given the versatility of chemical elements, underlying nets, and topologies, reticular materials provide a unique platform to design materials for timely technological applications. Reticular materials have now found their way in important societal applications, like carbon capture to address climate change, water harvesting to extract atmospheric moisture in arid environments, and clean energy applications. Combining predictions from computational materials chemistry with advanced experimental characterization and synthesis procedures unlocks a design strategy to synthesize new materials with the desired properties and functions. Within this review, the current status of modeling reticular materials is addressed and supplemented with topical examples highlighting the necessity of advanced molecular modeling to design materials for technological applications. This review is structured as a templated molecular modeling study starting from the molecular structure of a realistic material towards the prediction of properties and functions of the materials. At the end, the authors provide their perspective on the past, present of future in modeling reticular materials and formulate open challenges to inspire future model and method developments.

摘要

网状材料依赖于一种独特的构建理念,即无机和有机构建单元缝合在一起,从而能够获得几乎无限数量的结构化有序多孔材料。鉴于化学元素、基础网络和拓扑结构的多样性,网状材料为设计适用于及时技术应用的材料提供了一个独特的平台。网状材料现已在重要的社会应用中得到应用,如用于应对气候变化的碳捕获、在干旱环境中提取大气水分的集水以及清洁能源应用。将计算材料化学的预测与先进的实验表征和合成程序相结合,开启了一种设计策略,以合成具有所需性能和功能的新材料。在这篇综述中,阐述了网状材料建模的现状,并辅以专题实例,突出了先进分子建模对于设计用于技术应用的材料的必要性。这篇综述的结构是一个模板化的分子建模研究,从一种实际材料的分子结构出发,进而预测材料的性能和功能。最后,作者阐述了他们对网状材料建模的过去、现在和未来的看法,并提出了开放性挑战,以激发未来模型和方法的发展。

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