羟胺
苯胺
钒
化学
光催化
苯
胺化
有机化学
醋酸
氧化还原
组合化学
电子顺磁共振
无机化学
有机合成
光化学
配位复合体
锌
吡唑
催化作用
动力学
作者
Dana Králová,Maximilian Philipp,Matthias Schmalzbauer,Thilo Reiter,Bernd Schäfer,Ruth M. Gschwind,Burkhard König
标识
DOI:10.1002/chem.202503475
摘要
ABSTRACT The synthesis of aromatic amines, especially anilines, is crucial in organic chemistry because of their significance in pharmaceuticals and high‐value chemicals. However, traditional methods for producing aniline involve pre‐functionalization and/or several high‐energy‐demanding steps. Therefore, the development of direct protocols towards aniline has attracted significant interest. We introduce a direct photocatalytic method for synthesizing aniline using hydroxylamine and vanadium complexes. While previous studies describe vanadium complexes and hydroxylamine in thermally driven reactions, our research utilizes photochemistry, providing milder reaction conditions for the efficient benzene amination. Mechanistic investigations using 51 V‐NMR support coordination of hydroxylamine to vanadium and the multifaceted role of acetic acid as solvent, acid, and ligand. X‐band EPR and 51 V‐NMR demonstrated the time‐dependent reduction of vanadium by hydroxylamine. The same excess experiments and 15 N‐NMR coordination studies identified product inhibition by aniline. 1 H‐NMR kinetic experiments, enabled through a broad peak suppression, suggest a paramagnetic V +4 ‐hydroxylamine complex as the key intermediate, and 51 V‐NMR kinetics support the photocatalyst's role in maintaining the redox cycle and reducing the active V +4 ‐hydroxylamine intermediate. Our direct photocatalytic method not only enables the selective synthesis of aniline under mild conditions, but also allows easy scaling through its compatibility with flow systems.
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