The principle of C–S bond activation of acyclic vinlyl sulfide by platinum(0)-complex was applied to the C–Se bond fission of vinyl selenide. The substrate possessing Ph and ArSe (Ar = C6H4Cl-p) substituents at the β-carbon successfully reacted with Pt(0)-complex at 25 °C to produce the vinyl platinum in good yield and its structure was unambiguously determined by X-ray crystallographic analysis. When
The principle of C–S bond activation of acyclic vinlyl sulfide by platinum(0)-complex was applied to the C–Se bond fission of vinyl selenide. The substrate possessing Ph and ArSe (Ar = C6H4Cl-p) substituents at the β-carbon successfully reacted with Pt(0)-complex at 25 °C to produce the vinyl platinum in good yield and its structure was unambiguously determined by X-ray crystallographic analysis. When
The principle of C–S bond activation of acyclic vinlyl sulfide by platinum(0)-complex was applied to the C–Se bond fission of vinyl selenide. The substrate possessing Ph and ArSe (Ar = C6H4Cl-p) substituents at the β-carbon successfully reacted with Pt(0)-complex at 25 °C to produce the vinyl platinum in good yield and its structure was unambiguously determined by X-ray crystallographic analysis. When