烷基化
光催化
化学
组合化学
药物化学
有机化学
催化作用
作者
Satya Prakash Panda,M. Siva Prasad,Prahallad Meher,Oliver Reiser,Sandip Murarka
标识
DOI:10.26434/chemrxiv-2025-n7c2s
摘要
Utilizing iron-mediated ligand-to-metal charge transfer (LMCT) photocatalysis provides a sustainable platform for generating carbon-centered radicals. This study presents the use of abundant and inexpensive iron as a photocatalyst to easily activate aliphatic carboxylic acids, producing Csp3 radicals for site-selective C(sp3)-H alkylation of glycines and peptides. The method exhibits broad applicability, cost-effectiveness, and excellent tolerance to various functional groups. It is a flexible and efficient approach applicable to the synthesis of various unnatural α-amino acids and enables peptide drug bioconjugation. In addition to secondary and tertiary radicals, the iron-LMCT system enables access to primary radicals and the highly unstable methyl radical, derived from acetic acid, facilitating the production of methylated glycine derivatives. Preliminary mechanistic studies suggest a reaction pathway involving an Fe(III)-Fe(II)-Fe(III) redox cycle and radical-radical cross-coupling.
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