van den Boom Alyssa F J, Pujari Sidharam P, Bannani Fatma, Driss Hafedh, Zuilhof Han
Laboratory of Organic Chemistry, Wageningen University, Stippeneng 4, 6708 WE Wageningen, The Netherlands.
Faraday Discuss. 2020 Jun 19;222(0):82-94. doi: 10.1039/c9fd00102f.
Silicon nanoparticles (Si NPs) are a good alternative to conventional heavy metal-containing quantum dots in many applications, due to their low toxicity, low cost, and the high natural abundance of the starting material. Recently, much synthetic progress has been made, and crystalline Si NPs can now be prepared in a matter of hours. However, the passivation of these particles is still a time-consuming and difficult process, usually requiring high temperatures and/or harsh reaction conditions. In this paper, we report an easy method for the room-temperature functionalization of hydrogen-terminated Si NPs. Using silanol compounds, a range of functionalized Si NPs could be produced in only 1 h reaction time at room temperature. The coated NPs were fully characterized to determine the efficiency of binding and the effects of coating on the optical properties of the NPs. It was found that Si NPs were effectively functionalized, and that coated NPs could be extracted from the reaction mixture in a straightforward manner. The silanol coating increases the quantum yield of fluorescence, decreases the spectral width and causes a small (∼50 nm) blue-shift in both the excitation and emission spectra of the Si NPs, compared to unfunctionalized particles.
硅纳米颗粒(Si NPs)在许多应用中是传统含重金属量子点的良好替代品,这归因于其低毒性、低成本以及起始材料的高天然丰度。最近,合成方面取得了很大进展,现在可以在数小时内制备出结晶Si NPs。然而,这些颗粒的钝化仍然是一个耗时且困难的过程,通常需要高温和/或苛刻的反应条件。在本文中,我们报道了一种在室温下对氢封端的Si NPs进行功能化的简便方法。使用硅醇化合物,在室温下仅需1小时的反应时间就能制备出一系列功能化的Si NPs。对包覆的纳米颗粒进行了全面表征,以确定结合效率以及包覆对纳米颗粒光学性质的影响。结果发现,Si NPs被有效地功能化了,并且包覆的纳米颗粒可以直接从反应混合物中提取出来。与未功能化的颗粒相比,硅醇包覆提高了荧光量子产率,减小了光谱宽度,并使Si NPs的激发光谱和发射光谱都发生了小的(约50 nm)蓝移。