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Thermal Reactivity in Metal Organic Materials (MOMs): From Single-Crystal-to-Single-Crystal Reactions and Beyond

机译:金属有机材料(MOM)中的热反应性:从单晶到单晶反应及其他

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摘要

Thermal treatment is important in the solid-state chemistry of metal organic materials (MOMs) because it can create unexpected new structures with unique properties and applications that otherwise in the solution state are very difficult or impossible to achieve. Additionally, high-temperature solid-state reactivity provide insights to better understand chemical processes taking place in the solid-state. This review article describes relevant thermally induced solid-state reactions in metal organic materials, which include metal organic frameworks (MOFs)/coordination polymers (CPs), and second coordination sphere adducts (SSCs). High temperature solid-state reactivity can occur in a single-crystal-to-single crystal manner (SCSC) usually for cases where there is small atomic motion, allowing full structural characterization by single crystal X-ray diffraction (SC-XRD) analysis. However, for the cases in which the structural transformations are severe, often the crystallinity of the metal-organic material is damaged, and this happens in a crystal-to-polycrystalline manner. For such cases, in the absence of suitable single crystals, structural characterization has to be carried out using ab initio powder X-ray diffraction analysis or pair distribution function (PDF) analysis when the product is amorphous. In this article, relevant thermally induced SCSC reactions and crystal-to-polycrystalline reactions in MOMs that involve significant structural transformations as a result of the molecular/atomic motion are described. Thermal reactivity focusing on cleavage and formation of coordination and covalent bonds, crystalline-to-amorphous-to-crystalline transformations, host–guest behavior and dehydrochlorination reactions in MOFs and SSCs will be discussed.
机译:热处理在金属有机材料(MOM)的固态化学中很重要,因为它可以产生具有独特特性和应用的出乎意料的新结构,否则在溶液状态下很难或不可能实现。此外,高温固态反应性为深入了解固态发生的化学过程提供了见识。这篇综述文章描述了金属有机材料中相关的热诱导固态反应,其中包括金属有机骨架(MOF)/配位聚合物(CP)和第二配位球加合物(SSC)。通常,在原子运动较小的情况下,高温固态反应性可能以单晶单晶方式(SCSC)发生,从而允许通过单晶X射线衍射(SC-XRD)分析进行完整的结构表征。然而,对于结构转变很严重的情况,金属有机材料的结晶度经常被破坏,并且这以晶体到多晶的方式发生。对于这种情况,在没有合适的单晶的情况下,当产物为非晶态时,必须使用从头开始的粉末X射线衍射分析或成对分布函数(PDF)分析进行结构表征。在本文中,描述了由于分子/原子运动而引起的重大结构转变的MOM中相关的热诱导SCSC反应和晶体-多晶反应。将讨论热反应性,重点关注MOF和SSC中配位和共价键的裂解和形成,晶体到非晶态到晶体的转化,主客体的行为以及脱氯化氢反应。

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