光致变色
二芳基乙烯
光异构化
化学
光化学
量子产额
分子开关
螺吡喃
循环伏安法
金属
金属有机骨架
氧化态
异构化
电化学
荧光
分子
电极
物理化学
有机化学
催化作用
物理
吸附
量子力学
作者
Corey R. Martin,Kyoung Chul Park,Gabrielle A. Leith,Jierui Yu,Abhijai Mathur,Gina R. Wilson,Gayathri B. Gange,Emily L. Barth,Richard T. Ly,Olivia M. Manley,Kelly L. Forrester,S. Karakalos,Mark D. Smith,Thomas M. Makris,Aaron K. Vannucci,Dmitry V. Peryshkov,Natalia B. Shustova
摘要
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.
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