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配体功能化作为α-铱(ppy)介导的自由基加成中的失活途径。

Ligand functionalization as a deactivation pathway in a -Ir(ppy)-mediated radical addition.

作者信息

Devery Iii James J, Douglas James J, Nguyen John D, Cole Kevin P, Flowers Ii Robert A, Stephenson Corey R J

机构信息

Department of Chemistry , University of Michigan , Ann Arbor , USA . Email:

Small Molecule Design and Development , Eli Lilly and Company , Indianapolis , USA.

出版信息

Chem Sci. 2015 Jan 1;6(1):537-541. doi: 10.1039/c4sc03064h. Epub 2014 Oct 20.

Abstract

Knowledge of the kinetic behavior of catalysts under synthetically relevant conditions is vital for the efficient use of compounds that mediate important transformations regardless of their composition or driving force. In particular, these data are of great importance to add perspective to the growing number of applications of photoactive transition metal complexes. Here we present kinetic, synthetic, and spectroscopic evidence of the mechanistic behavior of -Ir(ppy) in a visible light-mediated radical addition to 3-methylindole, demonstrating the instability of -Ir(ppy) under these conditions. During the reaction, rapid functionalization of the photocatalyst occurs, eventually leading to deactivation. These findings demonstrate a conceivable deactivation process for catalytic single electron reactions in the presence of radicophilic ligands. Attempts to inhibit photocatalyst deactivation through structural modification provide further insight into catalyst selection for a given system of interest.

摘要

了解催化剂在合成相关条件下的动力学行为对于有效利用介导重要转化的化合物至关重要,无论其组成或驱动力如何。特别是,这些数据对于为越来越多的光活性过渡金属配合物的应用增添视角具有重要意义。在这里,我们展示了 -Ir(ppy) 在可见光介导的向 3-甲基吲哚的自由基加成反应中的动力学、合成和光谱证据,证明了 -Ir(ppy) 在这些条件下的不稳定性。在反应过程中,光催化剂迅速发生官能化,最终导致失活。这些发现证明了在存在亲核配体的情况下催化单电子反应可能的失活过程。通过结构修饰抑制光催化剂失活的尝试为给定感兴趣体系的催化剂选择提供了进一步的见解。

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