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多态性作为材料在表面和界面技术应用中的一种附加功能。

Polymorphism as an additional functionality of materials for technological applications at surfaces and interfaces.

作者信息

Gentili Denis, Gazzano Massimo, Melucci Manuela, Jones Derek, Cavallini Massimiliano

机构信息

Istituto per lo Studio dei Materiali Nanostrutturati (ISMN), Consiglio Nazionale delle Ricerche (CNR), Via Gobetti 101, 40129 Bologna, Italy.

出版信息

Chem Soc Rev. 2019 May 7;48(9):2502-2517. doi: 10.1039/c8cs00283e.

Abstract

Polymorphism is a widespread phenomenon occurring in many solid materials having important effects in many scientific disciplines. Since molecular packing can determine the functional properties of materials but is often difficult to control, polymorphism has usually been considered a drawback for technological applications. Thanks to advances in its control over the past few years, polymorphism is now often considered more as an opportunity because it allows a much wider range of functionality in, for example, a solid molecular material, where a corresponding packing type can be selected or even promoted. This tutorial review introduces the reader to the most representative progress in applications of polymorphism as an additional functionality of materials especially in its current promise for technological applications. In addition, it examines the most powerful strategies to control and fully exploit the intrinsic properties of polymorphism and transitions between its various metastable states, through fine-tuning of molecular packing in a reproducible manner. The aim is to create awareness about polymorphism as a novel enabling technology rather than as a problem.

摘要

多晶型现象是一种广泛存在于许多固体材料中的现象,在许多科学学科中都有重要影响。由于分子堆积可以决定材料的功能特性,但往往难以控制,多晶型现象通常被认为是技术应用的一个缺点。得益于过去几年在其控制方面的进展,多晶型现象现在常常更多地被视为一种机遇,因为它能在例如固体分子材料中实现更广泛的功能范围,在这种材料中可以选择甚至促进相应的堆积类型。本教程综述向读者介绍了多晶型现象作为材料附加功能应用方面最具代表性的进展,特别是其目前在技术应用中的前景。此外,它还探讨了通过以可重复的方式微调分子堆积来控制和充分利用多晶型现象的内在特性及其各种亚稳态之间转变的最有效策略。目的是让人们认识到多晶型现象是一种新型使能技术,而非一个问题。

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