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外壳很重要:室温下具有超窄发射线宽的核壳硅纳米颗粒的一步合成。

The shell matters: one step synthesis of core-shell silicon nanoparticles with room temperature ultranarrow emission linewidth.

作者信息

Fucikova Anna, Sychugov Ilya, Linnros Jan

机构信息

Department of Chemical Physics and Optics, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 3, 121 16 Praha 2, Czech Republic.

出版信息

Faraday Discuss. 2020 Jun 19;222(0):135-148. doi: 10.1039/c9fd00093c.

DOI:10.1039/c9fd00093c
PMID:32129337
Abstract

Here we present a one-step synthesis that provides silicon nanocrystals with a thin shell composed of a ceramic-like carbonyl based compound, embedded in a porous organosilicon film. The silicon nanocrystals were synthesised from hydrogen silsesquioxane molecules, modified with organic molecules containing carbonyl groups, which were annealed at 1000 °C in a slightly reducing 5% H2 : 95% Ar atmosphere. The organic character of the shell was preserved after annealing due to trapping of organic molecules inside the HSQ-derived oxide matrix that forms during the annealing. The individual silicon nanocrystals, studied by single dot spectroscopy, exhibited a significantly narrower emission peak at room temperature (lowest linewidth ∼ 17 meV) compared to silicon nanocrystals embedded in a silicon oxide shell (150 meV). Their emission linewidths are even significantly narrower than those of single CdSe quantum dots (>50 meV). It is hypothesized that the Si-core-thin shell structure of the nanoparticle is responsible for the unique optical properties. Its formation within one synthesis step opens new opportunities for silicon-based quantum dots. The luminescence from the produced nanocrystals covers a broad spectral range from 530-720 nm (1.7-2.3 eV) suggesting strong application potential for solar cells and LEDs, following the development of a suitable mass-fabrication protocol.

摘要

在此,我们展示了一种一步合成法,该方法可制备出具有由类陶瓷羰基化合物构成的薄壳的硅纳米晶体,这些晶体嵌入多孔有机硅薄膜中。硅纳米晶体由含羰基的有机分子修饰的氢倍半硅氧烷分子合成,在5% H₂∶95% Ar的弱还原气氛中于1000℃退火。退火后,由于退火过程中形成的HSQ衍生氧化物基质内部捕获了有机分子,壳层的有机特性得以保留。通过单点光谱研究的单个硅纳米晶体在室温下表现出比嵌入氧化硅壳中的硅纳米晶体(150 meV)明显更窄的发射峰(最低线宽约17 meV)。它们的发射线宽甚至比单个CdSe量子点(>50 meV)的线宽窄得多。据推测,纳米颗粒的Si核 - 薄壳结构是其独特光学性质的原因。在一个合成步骤中形成这种结构为硅基量子点带来了新机遇。随着合适的大规模制造方案的开发,所制备纳米晶体的发光覆盖了530 - 720 nm(1.7 - 2.3 eV)的宽光谱范围,这表明其在太阳能电池和发光二极管方面具有强大的应用潜力。

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