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使用 SiH 化学控制硅酮合成:Piers-Rubinsztajn 反应。

New Control Over Silicone Synthesis using SiH Chemistry: The Piers-Rubinsztajn Reaction.

机构信息

Department of Chemistry and Chemical Biology, McMaster University, 1280 Main St. W., Hamilton, ON, L8S 4M1, Canada.

出版信息

Chemistry. 2018 Jun 18;24(34):8458-8469. doi: 10.1002/chem.201800123. Epub 2018 Mar 30.

Abstract

There is a strong imperative to synthesize polymers with highly controlled structures and narrow property ranges. Silicone polymers do not lend themselves to this paradigm because acids or bases lead to siloxane equilibration and loss of structure. By contrast, elegant levels of control are possible when using the Piers-Rubinsztajn reaction and analogues, in which the hydrophobic, strong Lewis acid B(C F ) activates SiH groups, permitting the synthesis of precise siloxanes under mild conditions in high yield; siloxane decomposition processes are slow under these conditions. A broad range of oxygen nucleophiles including alkoxysilanes, silanols, phenols, and aryl alkyl ethers participate in the reaction to create elastomers, foams and green composites, for example, derived from lignin. In addition, the process permits the synthesis of monofunctional dendrons that can be assembled into larger entities including highly branched silicones and dendrimers either using the Piers-Rubinsztajn process alone, or in combination with hydrosilylation or other orthogonal reactions.

摘要

强烈需要合成具有高度可控结构和较窄性能范围的聚合物。硅酮聚合物不适合这种模式,因为酸或碱会导致硅氧烷平衡和结构丧失。相比之下,当使用 Piers-Rubinsztajn 反应及其类似物时,可以实现精细的控制水平,其中疏水性强路易斯酸 B(C F ) 激活 SiH 基团,允许在温和条件下以高产率合成精确的硅氧烷;在这些条件下,硅氧烷分解过程较慢。广泛的氧亲核试剂,包括烷氧基硅烷、硅醇、酚和芳基烷基醚,参与反应生成弹性体、泡沫和绿色复合材料,例如,源自木质素。此外,该过程允许合成单官能团树突,这些树突可以组装成更大的实体,包括高度支化的硅氧烷和树枝状聚合物,既可以单独使用 Piers-Rubinsztajn 工艺,也可以与硅氢化或其他正交反应结合使用。

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