化学
光催化
激进的
光化学
催化作用
氧化还原
异氰
烷基
有机合成
组合化学
有机化学
光催化
作者
Camilla Russo,Greta Donati,Francesco Giustiniano,Jussara Amato,Luciana Marinelli,Richard J. Whitby,Mariateresa Giustiniano
标识
DOI:10.1002/chem.202301852
摘要
Abstract The recent disclosure of the ability of aromatic isocyanides to harvest visible light and act as single electron acceptors when reacting with tertiary aromatic amines has triggered a renewed interest in their application to the development of green photoredox catalytic methodologies. Accordingly, the present work explores their ability to promote the generation of both alkyl and acyl radicals starting from radical precursors such as Hantzsch esters, potassium alkyltrifluoroborates, and α‐oxoacids. Mechanistic studies involving UV‐visible absorption and fluorescence experiments, electrochemical measurements of the ground‐state redox potentials along with computational calculations of both the ground‐ and the excited‐state redox potentials of a set of nine different aromatic isocyanides provide key insights to promote a rationale design of a new generation of isocyanide‐based organic photoredox catalysts. Importantly, the green potential of the investigated chemistry is demonstrated by a direct and easy access to deuterium labeled compounds.
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