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基于分子的可切换自旋交叉化合物中的热致变色效应。

Vapochromic effect in switchable molecular-based spin crossover compounds.

作者信息

Resines-Urien Esther, Fernandez-Bartolome Estefania, Martinez-Martinez Ana, Gamonal Arturo, Piñeiro-López Lucía, Costa Jose Sanchez

机构信息

IMDEA Nanociencia, C/Faraday, 9, 28049, Madrid, Spain.

出版信息

Chem Soc Rev. 2023 Jan 25;52(2):705-727. doi: 10.1039/d2cs00790h.

Abstract

Coordination complexes based on transition metal ions displaying [Ar]3d-3d electronic configurations can undergo the likely most spectacular switchable phenomena found in molecular coordination chemistry, the well-known Spin Crossover (SCO). SCO phenomena is a detectable, reproducible and reversible switch that occurs between the high spin (HS) and low spin (LS) electronic states of the transition metal actuated by different stimuli ( light, temperature, pressure, the presence of an analyte). Moreover, the occurrence of SCO phenomena causes different outputs, one of them being a colour change. Altogether, an analyte in gas form could be detected by naked eye once it has triggered the corresponding HS ↔ LS transition. This vapochromic effect could be used to detect volatile molecules using a low-cost technology, including harmful chemical substances, gases and/or volatile organic compounds (VOCs) that are present in our environment, in our home or at our workplace. The present review condenses all reported iron coordination compounds where the colour change induced by a given molecule in its gas form is coupled to a HS ↔ LS spin transition. Special emphasis has been made on describing the nature of the post-synthetic modification (PSM) taking place in the material upon the analyte uptake. In this case, three types of PSM can be distinguished: based on supramolecular contacts and/or leading to a coordinative or covalent bond. In the latter, a colour change not only indicates the switch of the spin state in the material but also the formation of a new compound with different properties. It is important to indicate that some of the SCO coordination compounds discussed in the current report have been part of other spin crossover reviews, that have gathered thermally induced SCO compounds and the influence of guest molecules on the SCO behaviour. However, in the majority of examples in these reviews, the change of colour upon the uptake of analytes is not associated with a spin transition at room temperature. In addition, the observed colour variations have been mainly discussed in terms of host-guest interactions, when they can also be induced by a PSM taking place in different sites of the molecule, like the Fe(II) coordination sphere or by chemically altering its inorganic and/or organic linkers. Therefore, we present here for the first time an exhaustive compilation of all systems in which the interaction between the coordination compounds and the vapour analytes leads to a colour change due to a spin transition in the metal centre at room temperature.

摘要

基于具有[Ar]3d - 3d电子构型的过渡金属离子的配位化合物,可能会经历分子配位化学中最引人注目的可切换现象,即著名的自旋交叉(SCO)。SCO现象是一种可检测、可重现且可逆的转变,发生在由不同刺激(光、温度、压力、分析物的存在)驱动的过渡金属的高自旋(HS)和低自旋(LS)电子态之间。此外,SCO现象的发生会导致不同的输出,其中之一是颜色变化。总之,一旦气态分析物触发了相应的HS ↔ LS转变,就可以用肉眼检测到它。这种气致变色效应可用于使用低成本技术检测挥发性分子,包括我们环境、家中或工作场所中存在的有害化学物质、气体和/或挥发性有机化合物(VOCs)。本综述总结了所有已报道的铁配位化合物,其中给定分子的气态形式引起的颜色变化与HS ↔ LS自旋转变相关。特别强调了描述分析物吸收后材料中发生的后合成修饰(PSM)的性质。在这种情况下,可以区分三种类型的PSM:基于超分子接触和/或导致配位键或共价键。在后者中,颜色变化不仅表明材料中自旋状态的转变,还表明形成了具有不同性质的新化合物。需要指出的是,本报告中讨论的一些SCO配位化合物已成为其他自旋交叉综述的一部分,这些综述收集了热诱导的SCO化合物以及客体分子对SCO行为的影响。然而,在这些综述中的大多数例子中,分析物吸收后的颜色变化与室温下的自旋转变无关。此外,观察到的颜色变化主要是根据主客体相互作用进行讨论的,而它们也可能是由分子不同部位发生的PSM引起的,如Fe(II)配位球或通过化学改变其无机和/或有机连接体。因此,我们在此首次全面汇编了所有系统,其中配位化合物与气态分析物之间的相互作用由于室温下金属中心的自旋转变而导致颜色变化。

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