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Hypervalent surface interactions for colloidal stability and doping of silicon nanocrystals

机译:超价表面相互作用可实现胶体稳定性和硅纳米晶体的掺杂

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摘要

Colloidal semiconductor nanocrystals have attracted attention for cost-effective, solution-based deposition of quantum-confined thin films for optoelectronics. However, two significant challenges must be addressed before practical nanocrystal-based devices can be realized. The first is coping with the ligands that terminate the nanocrystal surfaces. Though ligands provide the colloidal stability needed to cast thin films from solution, these ligands dramatically hinder charge carrier transport in the resulting film. Second, after a conductive film is achieved, doping has proven difficult for further control of the optoelectronic properties of the film. Here we report the ability to confront both of these challenges by exploiting the ability of silicon to engage in hypervalent interactions with hard donor molecules. For the first time, we demonstrate the significant potential of applying the interaction to the nanocrystal surface. In this study, hypervalent interactions are shown to provide colloidal stability as well as doping of silicon nanocrystals.
机译:胶体半导体纳米晶体因具有成本效益的基于溶液的光电子量子限制薄膜沉积而备受关注。然而,在实现基于纳米晶体的实用器件之前,必须解决两个重大挑战。首先是应对终止纳米晶体表面的配体。尽管配体提供了从溶液中流延薄膜所需的胶体稳定性,但这些配体极大地阻碍了载流子在所得膜中的传输。第二,在获得导电膜之后,已证明掺杂对于进一步控制膜的光电性能是困难的。在这里,我们报告了通过利用硅与硬供体分子进行超价相互作用的能力来面对这两个挑战的能力。首次,我们证明了将相互作用应用于纳米晶体表面的巨大潜力。在这项研究中,高价相互作用显示出提供胶体稳定性以及硅纳米晶体的掺杂。

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