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Doping and quantum confinement effects in single Si nanocrystals observed by scanning tunneling spectroscopy

机译:通过扫描隧道光谱法观察到的单硅纳米晶中的掺杂和量子限制效应

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摘要

We have applied scanning tunneling spectroscopy in studies of the electronic level structure of surface-functionalized colloidal Si nanocrystals (Si-NCs) as a function of their size for various capping ligands. The energy gaps extracted from the tunneling spectra increase with decreasing NC size, manifesting the effect of quantum confinement. This is consistent with the blueshift revealed by photoluminescence (PL) from dodecene functionalized Si-NCs. The tunneling spectra measured on NCs functionalized with NH _4Br or allylamine show band-edge shifts toward higher energies, akin to p-type doping. This behavior can be accounted for by the combined contributions of the ligands' dipole moments and charge transfer between a Si-NC and its surface groups. Concomitantly, size-independent PL spectra, which cannot be associated with NC band gap variations, were observed for the latter Si-NCs.
机译:我们已经在表面官能化的胶体Si纳米晶体(Si-NCs)的电子能级结构的研究中应用扫描隧道光谱技术,作为各种封端配体的尺寸的函数。从隧穿光谱中提取的能隙随着NC尺寸的减小而增加,体现了量子约束的作用。这与由十二碳烯官能化的Si-NC的光致发光(PL)揭示的蓝移一致。在用NH _4Br或烯丙胺官能化的NC上测得的隧穿光谱显示,带边向高能移动,类似于p型掺杂。这种行为可以通过配体的偶极矩和Si-NC及其表面基团之间的电荷转移的综合作用来解释。同时,对于后面的Si-NC,观察到了与尺寸无关的PL光谱,该光谱与NC带隙的变化无关。

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