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光致变色金属有机框架中受刺激调制的金属氧化态

Stimuli-Modulated Metal Oxidation States in Photochromic MOFs.

作者信息

Martin Corey R, Park Kyoung Chul, Leith Gabrielle A, Yu Jierui, Mathur Abhijai, Wilson Gina R, Gange Gayathri B, Barth Emily L, Ly Richard T, Manley Olivia M, Forrester Kelly L, Karakalos Stavros G, Smith Mark D, Makris Thomas M, Vannucci Aaron K, Peryshkov Dmitry V, Shustova Natalia B

机构信息

Department of Chemistry and Biochemistry, University of South Carolina, 631 Sumter Street, Columbia, South Carolina 29208, United States.

Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520, United States.

出版信息

J Am Chem Soc. 2022 Mar 16;144(10):4457-4468. doi: 10.1021/jacs.1c11984. Epub 2022 Feb 9.

Abstract

Tuning metal oxidation states in metal-organic framework (MOF) nodes by switching between two discrete linker photoisomers via an external stimulus was probed for the first time. On the examples of three novel photochromic copper-based frameworks, we demonstrated the capability of switching between +2 and +1 oxidation states, on demand. In addition to crystallographic methods used for material characterization, the role of the photochromic moieties for tuning the oxidation state was probed via conductivity measurements, cyclic voltammetry, and electron paramagnetic resonance, X-ray photoelectron, and diffuse reflectance spectroscopies. We confirmed the reversible photoswitching activity including photoisomerization rate determination of spiropyran- and diarylethene-containing linkers in extended frameworks, resulting in changes in metal oxidation states as a function of alternating excitation wavelengths. To elucidate the switching process between two states, the photoisomerization quantum yield of photochromic MOFs was determined for the first time. Overall, the introduced noninvasive concept of metal oxidation state modulation on the examples of stimuli-responsive MOFs foreshadows a new pathway for alternation of material properties toward targeted applications.

摘要

首次探索了通过外部刺激在两种离散的连接体光异构体之间切换,从而调节金属有机框架(MOF)节点中的金属氧化态。以三种新型光致变色铜基框架为例,我们展示了按需在+2和+1氧化态之间切换的能力。除了用于材料表征的晶体学方法外,还通过电导率测量、循环伏安法、电子顺磁共振、X射线光电子能谱和漫反射光谱法探究了光致变色部分在调节氧化态中的作用。我们证实了可逆的光开关活性,包括在扩展框架中测定含螺吡喃和二芳基乙烯连接体的光异构化速率,这导致金属氧化态随交替激发波长而变化。为了阐明两种状态之间的切换过程,首次测定了光致变色MOF的光异构化量子产率。总体而言,在刺激响应型MOF示例中引入的金属氧化态调制的非侵入性概念预示着一条通往针对目标应用改变材料性能的新途径。

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