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Tunability Limit of Photoluminescence in Colloidal Silicon Nanocrystals

机译:胶态硅纳米晶体中光致发光的可调谐极限

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摘要

Luminescent silicon nanocrystals (Si NCs) have attracted tremendous research interest. Their size dependent photoluminescence (PL) shows great promise in various optoelectronic and biomedical applications and devices. However, it remains unclear why the exciton emission is limited to energy below 2.1 eV, no matter how small the nanocrystal is. Here we interpret a nanosecond transient yellow emission band at 590 nm (2.1 eV) as a critical limit of the wavelength tunability in colloidal silicon nanocrystals. In the “large size” regime (d > ~3 nm), quantum confinement dominantly determines the PL wavelength and thus the PL peak blue shifts upon decreasing the Si NC size. In the “small size” regime (d < ~2 nm) the effect of the yellow band overwhelms the effect of quantum confinement with distinctly increased nonradiative trapping. As a consequence, the photoluminescence peak does not exhibit any additional blue shift and the quantum yield drops abruptly with further decreasing the size of the Si NCs. This finding confirms that the PL originating from the quantum confined core states can only exist in the redear infrared with energy below 2.1 eV; while the blue/green PL originates from surface related states and exhibits nanosecond transition.
机译:发光硅纳米晶体(Si NCs)引起了巨大的研究兴趣。它们的尺寸依赖性光致发光(PL)在各种光电和生物医学应用和设备中显示出巨大的希望。然而,无论纳米晶体有多小,为何激子发射限制在2.1 eV以下的能量仍然不清楚。在这里,我们将590 nm(2.1 eV)处的纳秒瞬态黄色发射带解释为胶体硅纳米晶体中波长可调性的关键极限。在“大尺寸”状态(d>〜3 nm)中,量子限制主要决定了PL波长,因此,随着Si NC尺寸的减小,PL峰蓝移。在“小尺寸”状态(d <〜2 nm)中,黄带的影响超过了量子约束的影响,明显增加了非辐射俘获。结果,光致发光峰不表现出任何额外的蓝移,并且随着Si NC尺寸的进一步减小,量子产率急剧下降。这一发现证实,源自量子约束核态的PL只能存在于能量低于2.1 eV的红/近红外中。而蓝色/绿色PL起源于表面相关状态,并表现出纳秒级跃迁。

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