Journal of the American Chemical Society, Vol.130, No.49, 16446-16446, 2008
Redox-Coupled Complexation of 23-Phospha-21-thiaporphyrin with Group 10 Metals: A Convenient Access to Stable Core-Modified Isophlorin-Metal Complexes
Core-modified isophlorin-metal complexes were successfully prepared by redox-coupled complexation of P,S,N-2-hybrid porphyrin with zerovalent palladium, nickel, and platinum. In this transformation, the core-phosphorus atom plays crucial roles in enhancing the electron-accepting ability of the 18(Pi) porphyrin ring and stabilizing the 20(Pi) isophlorin ring owing to high P-M affinity. The isolated Pd and Pt complexes are chemically stable under ambient conditions. The Pd-P,S,N-2 isophlorin complex was structurally characterized by X-ray crystallography, which revealed a distorted 20(Pi) plane with a square planar palladium(II) center, Experimental (H-1, UV-vis, and X-ray) and theoretical (density functional theory calculations) results suggest that the P,S,N-2-isophlorin-metal complexes possess nonaromaticity in terms of both magnetic and geometrical criteria.