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变温红外光谱证明羧酸 MOFs 中的软模式金属连接体动力学。

Soft Mode Metal-Linker Dynamics in Carboxylate MOFs Evidenced by Variable-Temperature Infrared Spectroscopy.

机构信息

Department of Chemistry and Biochemistry, Materials Science Institute, University of Oregon, Eugene, Oregon 97403-1253, United States.

出版信息

J Am Chem Soc. 2020 Nov 11;142(45):19291-19299. doi: 10.1021/jacs.0c09499. Epub 2020 Oct 29.

Abstract

Through comprehensive analysis of carboxylate-based metal-organic frameworks (MOFs), we present general evidence that challenges the common perception of MOF metal-linker bonds being static. Structural dynamics in MOFs, however, typically refers to the "breathing" behavior of cavities, where pores open and close in response to guest molecules, and to the transient binding of guest molecules, but dynamic bonding would explain important MOF phenomena in catalysis, postsynthetic exchange, negative thermal expansion, and crystal growth. Here, we demonstrate, through use of variable-temperature diffuse reflectance infrared Fourier transform spectroscopy (VT-DRIFTS) aided by ab initio plane wave density functional theory, that similar evidence for melting behavior in zeolitic imidazolate frameworks (ZIFs), i.e., reversible metal-linker bonding, driven by specific vibrational modes, can be observed for carboxylate MOFs by monitoring the red-shifts of carboxylate stretches coupled to anharmonic metal-carboxylate oscillators. To demonstrate the generality of these findings, we investigate a wide class of carboxylate MOFs that includes iconic examples with diverse structures and metal-linker chemistry. As the very vibrations invoked in ZIF melting but heretofore unobserved for carboxylate MOFs, these metal-linker dynamics resemble the ubiquitous soft modes that trigger important phase transitions in diverse classes of materials while offering a fundamentally new perspective for the design of next-generation metal-organic materials.

摘要

通过对基于羧酸酯的金属有机框架(MOFs)的综合分析,我们提供了普遍证据,挑战了 MOF 金属配体键是静态的普遍观念。然而,MOFs 中的结构动力学通常是指空腔的“呼吸”行为,其中孔在响应客体分子时打开和关闭,以及客体分子的瞬时结合,但动态键合可以解释催化、后合成交换、负热膨胀和晶体生长等重要的 MOF 现象。在这里,我们通过使用变温漫反射红外傅里叶变换光谱(VT-DRIFTS)并辅以第一性原理平面波密度泛函理论,证明了沸石咪唑酯框架(ZIFs)中类似的熔融行为证据,即通过监测与非谐金属羧酸酯振荡器耦合的羧酸酯伸展的红移,可以观察到羧酸酯 MOFs 中可逆的金属配体键合,由特定的振动模式驱动。为了证明这些发现的普遍性,我们研究了广泛的羧酸酯 MOFs 类,包括具有不同结构和金属配体化学的标志性例子。由于这些金属配体动力学与 ZIF 熔融中调用的振动非常相似,但迄今为止在羧酸酯 MOFs 中未观察到,它们类似于普遍存在的软模式,这些软模式在各种材料类别中引发重要的相变,同时为下一代金属有机材料的设计提供了一个全新的视角。

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