Department of Chemistry, University of Alberta , 11227 Saskatchewan Drive, Edmonton, Alberta T6G 2G2, Canada.
Langmuir. 2017 Sep 5;33(35):8766-8773. doi: 10.1021/acs.langmuir.7b00518. Epub 2017 Jun 14.
Phosphorus pentachloride (PCl) has long been used to chlorinate hydrocarbons. It has also been applied in silicon surface chemistry to facilitate alkylation via a two-step halogenation/Grignard route. Here we report a study of the reaction of PCl with hydride-terminated silicon nanocrystals (H-SiNCs). An examination of the reaction mechanism has allowed us to establish a functionalization protocol that uses PCl as a surface radical initiator to introduce alkyl and alkenyl moieties to the surface of H-SiNCs. The reaction proceeds quickly in a single step, at room temperature and the functionalized silicon nanocrystals retained their morphology and crystallinity. The resulting materials exhibited size-dependent photoluminescence that was approximately 3× as bright as that observed for thermally hydrosilylated SiNCs. Furthermore, the absolute PL quantum yield (AQY) was more than double. The high AQY is expected to enable SiNCs to compete with chalcogenide-based quantum dots in various applications.
五氯化磷(PCl)长期以来一直被用于氯化烃类。它也被应用于硅表面化学,通过两步卤化/格氏试剂路线来促进烷基化。在这里,我们报告了五氯化磷与氢终止的硅纳米晶体(H-SiNCs)的反应研究。对反应机理的研究使我们能够建立一种功能化方案,该方案使用 PCl 作为表面自由基引发剂,将烷基和烯基部分引入 H-SiNCs 的表面。反应在室温下一步快速进行,功能化后的硅纳米晶体保持其形态和结晶度。所得材料表现出尺寸依赖性的光致发光,其亮度大约是热氢化硅纳米晶体观察到的亮度的 3 倍。此外,绝对光致发光量子产率(AQY)超过两倍。高 AQY 有望使硅纳米晶体在各种应用中与基于硫属化物的量子点竞争。