光致变色
电荷(物理)
光化学
空格(标点符号)
材料科学
传输(计算)
金属
化学
化学物理
光电子学
物理
计算机科学
量子力学
冶金
操作系统
并行计算
作者
Akashdeep Nath,Vikas Kumar,Hirendra N. Ghosh,Sukhendu Mandal
标识
DOI:10.1021/acs.jpclett.4c03445
摘要
Electronic coupling between individual redox units in a molecular assembly dictates their charge transfer efficacy. Being a well-defined crystalline structure, the metal-organic framework (MOF) ensures proper positioning of redox-active moieties and provides a unique platform to unveil their charge transfer dynamics and quantification with structural relationships. Here, we demonstrate a novel redox-active MOF with near-infrared through-space intervalence charge transfer by introducing a mixed valence state inside redox-active thiazolothiazole-based ligands (DPTTZ) upon photo- or electrochemical reduction. The faster carrier growth and recombination, as well as higher effective mobility in MOF, is attributed to lesser separation between redox-active DPTTZ molecules (3.75 Å) than the bare ligand system (4 Å), which results in higher through-space electronic coupling. The photoreduction ability of the MOF with visible color change was utilized to show photochromic behavior, and further fabrication to a solid-state photochromic device for a potential autodarkening material under UV irradiation was conducted.
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