Department of Chemistry, University of Alberta , 11227 Saskatchewan Drive, Edmonton, Alberta, Canada T6G 2G2.
J Am Chem Soc. 2014 Oct 29;136(43):15130-3. doi: 10.1021/ja5075739. Epub 2014 Oct 20.
Abundant and environmentally benign metal-free silicon-based reagents, including chloride surface-terminated silicon nanocrystals (Cl-SiNCs) and silicon wafers as well as molecular chlorosilanes, were explored as catalysts for the synthesis of poly-3-hexylthiophene (P3HT) at room temperature. Cl-SiNC catalysts exhibit the highest activity of those investigated, and systems based upon single-crystal silicon wafers provide convenient, straightforward purification. The as-prepared P3HT exhibits moderate molecular weights and bears H/Br or Br/Br end groups; these properties will allow direct application and also facilitate their use as macroinitiators in the syntheses of block and/or telechelic polymers. The silicon-based systems are expected to provide an efficient metal-free catalytic preparation of functional polymers.
研究了丰富且环境友好的无金属硅基试剂,包括氯表面终止的硅纳米晶体 (Cl-SiNC) 和硅片以及分子氯硅烷,以作为在室温下合成聚 3-己基噻吩 (P3HT) 的催化剂。Cl-SiNC 催化剂表现出最高的活性,而基于单晶硅片的系统则提供了方便、直接的纯化方法。所制备的 P3HT 具有中等的分子量,并带有 H/Br 或 Br/Br 端基;这些特性将允许直接应用,并便于它们作为嵌段和/或遥爪聚合物合成的大分子引发剂使用。预计硅基体系将提供一种高效的无金属催化制备功能聚合物的方法。