Geometrically isomeric Pt2Ag2 acetylide complexes of 2,6-bis(diphenylphosphino)pyridine: luminescent and vapochromic properties†
Abstract
In the present study, 2,6-bis(diphenylphosphino)pyridine ((Ph2P)2py)-supported cis- and trans-Pt2Ag2 alkynyl complexes were prepared and characterized by X-ray crystallography. Although the cis-Pt2Ag2 complexes are slightly emissive at ambient conditions, the trans-Pt2Ag2 complexes exhibit moderate photoluminescence in dichloromethane and have strong emission in the solid state, originating from aromatic acetylide to (Ph2P)2py ligand-to-ligand charge transfer (3LLCT) and Pt2Ag2 cluster metal-centered (3MC) triplet states. Remarkably, the trans-Pt2Ag2 complex [Pt2Ag2{(Ph2P)2py}2(CCC6H5)4](SO3CF3)2 exhibit remarkable luminescent vapochromism with emission red-shifts of 100 nm in response to MeCN vapor, arising from intramolecular structural conversion from staggered to parallel arrangements of two face-to-face Pt(CCC6H5)2 moieties, which results in the alteration of the excited-state energy in the solid state as supported by TD-DFT studies.