Abstract
Highly monodisperse silicon nanoparticles (1.57 ± 0.21 nm) are synthesized with a covalently attached alkyl monolayer on a gram scale. Infrared spectroscopy shows that these silicon nanoparticles contain only a few oxygen atoms per nanoparticle. XPS spectra clearly show the presence of unoxidized Si and attached alkyl chains. Owing to the relatively efficient synthesis (yields ≈ 100-fold higher than of those previously reported) the molar extinction coefficient ε can be measured: εmax = 1.7 x 10-4 M-lcm-1, only a factor of 4 lower than that of CdS and CdSe nanoparticles of that size. The quantum yield of emission ranges from 0.12 (C10H21-capping) to 0.23 (C16H 33-capping). UV/Vis absorption and emission spectroscopy show clear vibrational progressions (974± 14cm-1; up to five vibrational bands visible at room temperature), resembling bulk SiC phonons, which support the monodispersity observed by TEM. This was also confirmed by time-resolved fluorescence anisotropy measurements, which display a strictly monoexponential decay that can only be indicative of monodisperse, ball-shaped nanoparticles. © 2008 Wiley-VCH Verlag GmbH & Co. KGaA.
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Rosso-Vasic, M., Spruijt, E., Van Lagen, B., De Cola, L., & Zuilhof, H. (2008). Alkyl-functionalized oxide-free silicon nanoparticles: Synthesis and optical properties. Small, 4(10), 1835–1841. https://doi.org/10.1002/smll.200800066
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