化学
反应性(心理学)
光致变色
催化作用
偶联反应
螺吡喃
商品化学品
光化学
化学反应
异构化
放热反应
衍生工具(金融)
反应机理
结晶度
组合化学
金属
多相催化
共价键
氧化还原
反应动力学
反应条件
反应中间体
反应中间体
计算化学
甲烷氧化偶联
纳米技术
选择性
工作(物理)
芳基
铜
作者
Mamata Naik,Grace C. Thaggard,Buddhima K. P. Maldeni Kankanamalage,Danielle N. Smith,Corey R. Martin,Jaewoong Lim,Vladimir Gevorgyan,S. Karakalos,Mark D. Smith,Sophya Garashchuk,Natalia B. Shustova
摘要
regulation of the reaction parameter space with the enhanced recyclability of solid-state platforms. The presented work reports the first example of a light-responsive heterogeneous catalyst for a three-component coupling reaction that relies on photochromic-molecule-directed modulation of the copper oxidation states in metal-organic frameworks (MOFs) via a stimuli-responsive spiropyran derivative covalently integrated within a host scaffold. Comprehensive spectroscopic analysis, supported by theoretical modeling, establishes the first correlations among isomerization of a photochromic moiety, modulation of metal oxidation states in MOF metal nodes, and the material's overall chemical reactivity in a three-component coupling reaction. Moreover, this work provides the first confirmation that the photophysical performance of integrated spiropyran derivatives is maintained after exposure to selected reaction conditions, leading to material recyclability while preserving its catalytic activity. The developed photochromic MOF-based catalyst promoted the synthesis of 12 different compounds, including commodity chemicals and pharmaceuticals, with near-quantitative yields under mild reaction conditions while maintaining crystallinity and catalytic performance over multiple reaction cycles. Overall, these findings unlock a novel avenue toward noninvasive control of chemical reactivity via on-demand metal oxidation state modulation, establishing a new design principle for adaptive catalytic systems and offering a transformative pathway toward controllable chemical synthesis.
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