Chaiprasert Thanawat, Liu Yujia, Intaraprecha Pa-Kwan, Kunthom Rungthip, Takeda Nobuhiro, Unno Masafumi
Department of Chemistry and Chemical Biology, Graduate School of Science and Technology, Gunma University, Kiryu, 376-8515, Japan.
Macromol Rapid Commun. 2021 Mar;42(5):e2000608. doi: 10.1002/marc.202000608. Epub 2020 Dec 16.
A new synthetic method for tricyclic laddersiloxanes, ladder-type silsesquioxanes with defined structures, is developed based on intramolecular cyclization of hydrosilyl-functionalized cyclic siloxanes. This method enables the construction of unprecedented laddersiloxanes with various ring sizes. Herein, the preparation of tricyclic laddersiloxanes containing 6-8-6-, 8-8-8-, or 12-8-12-membered-ring systems is reported. These products can be considered as bat-shape siloxanes, owing to their rigid inorganic siloxane body with flexible oligosiloxane "wings" as side rings. The synthesized compounds are potential building blocks for well-defined nanomaterials, porous materials, and host molecules.
基于氢硅烷基官能化环状硅氧烷的分子内环化反应,开发了一种用于制备具有特定结构的三环梯形硅氧烷(梯形倍半硅氧烷)的新合成方法。该方法能够构建具有各种环尺寸的前所未有的梯形硅氧烷。本文报道了含有6-8-6、8-8-8或12-8-12元环体系的三环梯形硅氧烷的制备。这些产物可被视为蝙蝠形硅氧烷,因为它们具有刚性的无机硅氧烷主体以及作为侧环的柔性低聚硅氧烷“翅膀”。所合成的化合物是用于制备结构明确的纳米材料、多孔材料和主体分子的潜在构建单元。