腙
光异构化
光致变色
光电开关
光化学
异构化
化学
动力学
材料科学
有机化学
催化作用
物理
量子力学
作者
Grace C. Thaggard,Gabrielle A. Leith,Daniil Sosnin,Corey R. Martin,Kyoung Chul Park,Margaret K. McBride,Jaewoong Lim,Brandon J. Yarbrough,Buddhima K. P. Maldeni Kankanamalage,Gina R. Wilson,Austin R. Hill,Mark D. Smith,Sophya Garashchuk,Andrew B. Greytak,Ivan Aprahamian,Natalia B. Shustova
出处
期刊:Angewandte Chemie
[Wiley]
日期:2022-11-08
卷期号:62 (2): e202211776-e202211776
被引量:31
标识
DOI:10.1002/anie.202211776
摘要
Confinement-imposed photophysics was probed for novel stimuli-responsive hydrazone-based compounds demonstrating a conceptual difference in their behavior within 2D versus 3D porous matrices for the first time. The challenges associated with photoswitch isomerization arising from host interactions with photochromic compounds in 2D scaffolds could be overcome in 3D materials. Solution-like photoisomerization rate constants were realized for sterically demanding hydrazone derivatives in the solid state through their coordinative immobilization in 3D scaffolds. According to steady-state and time-resolved photophysical measurements and theoretical modeling, this approach provides access to hydrazone-based materials with fast photoisomerization kinetics in the solid state. Fast isomerization of integrated hydrazone derivatives allows for probing and tailoring resonance energy transfer (ET) processes as a function of excitation wavelength, providing a novel pathway for ET modulation.
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