Department of Chemistry, Johns Hopkins University, 3400 N. Charles St, Baltimore, MD, 21218, USA.
Department of Chemistry, University of Massachusetts, Amherst, USA.
Angew Chem Int Ed Engl. 2017 Jan 9;56(2):568-572. doi: 10.1002/anie.201610208. Epub 2016 Nov 29.
We report a strategic synthesis of poly(cyclosilane), a well-defined polymer inspired by crystalline silicon. The synthetic strategy relies on the design of a functionalized cyclohexasilane monomer for transition-metal-promoted dehydrocoupling polymerization. Our approach takes advantage of the dual function of the phenylsilyl group, which serves a crucial role both in the synthesis of a novel α,ω-oligosilanyl dianion and as a latent electrophile. We show that the cyclohexasilane monomer prefers a chair conformation. The monomer design ensures enhanced reactivity in transition-metal-promoted dehydrocoupling polymerization relative to secondary silanes, such as methylphenylsilane. Comprehensive NMR spectroscopy yields a detailed picture of the polymer end-group structure and microstructure. Poly(cyclosilane) has red-shifted optical absorbance relative to the monomer. We synthesize a σ-π hybrid donor-acceptor polymer by catalytic hydrosilylation.
我们报告了一种聚(环硅烷)的战略合成方法,这是一种受晶体硅启发的具有明确结构的聚合物。该合成策略依赖于设计一种功能化的环己硅烷单体,用于过渡金属促进的脱氢偶联聚合。我们的方法利用了苯基硅基的双重功能,它在新型α,ω-聚硅烷二阴离子的合成和作为潜在亲电试剂中都起着至关重要的作用。我们表明,环己硅烷单体优先采用椅式构象。单体设计确保了与甲基苯基硅烷等仲硅烷相比,在过渡金属促进的脱氢偶联聚合中具有更高的反应性。全面的 NMR 光谱提供了聚合物端基结构和微观结构的详细图片。聚(环硅烷)的光学吸收相对于单体发生了红移。我们通过催化氢化硅烷化合成了一种σ-π 混合给体-受体聚合物。