Catalytic Cross-Coupling ReactionsCatalytic C–H Functionalization MethodsCyclopropane Reaction Mechanisms

Ikuya Fujii, Ryo Shintani

2026.1.16SYNTHESIS-STUTTGART

DOI: 10.1055/a-2802-6100

Abstract

Remote functionalization of unactivated sites remains a major challenge in transition-metal-catalyzed synthesis. This short review summarizes recent advances in through-space 1, n -metal migration reactions mediated by 3d transition metals, including Cr, Fe, Co, Ni, and Cu. These transformations enable site-selective bond formation at otherwise inaccessible positions and offer sustainable alternatives to conventional cross-coupling strategies. Mechanistic aspects such as ligand-controlled migration, σ-bond metathesis, isotope-labeling studies, and computational insights are highlighted to illustrate how regio- and stereoselectivity are achieved. Collectively, 3d metal-mediated 1, n -migration reactions provide a versatile platform for remote functionalization and open new avenues for reaction design in modern organic synthesis.

Citation format

FUJII, Ikuya; SHINTANI, Ryo. 1, n -metal migrations mediated by 3d transition metals. SYNTHESIS-STUTTGART, 2026, 58(09): 984–996.