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Temperature Dependent Photoluminescence of Size-Purified Silicon Nanocrystals

机译:尺寸纯化的硅纳米晶体的温度依赖性光致发光

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The photoluminescence (PL) of size-purified silicon nanocrystals is measured as a function of temperature and nanoparticle size for pure nanocrystal films and polydimethylsiloxane (PDMS) nanocomposites. The temperature dependence of the bandgap is the same for both sample types, being measurably different from that of bulk silicon because of quantum confinement. Our results also suggest weaker interparticle and environmental coupling in the nanocomposites, with enhanced PL and an unexpected dependence of lifetime on size for the pure nanocrystal films at low temperatures. We interpret these results through differences in the low-temperature size dependence of the ensemble nonradiative equilibrium constants. The response of the PDMS nanocomposites provides a consistent measure of local temperature through intensity, lifetime, and wavelength in a polymer-dispersed morphology suitable for biomedical applications, and we exploit this to fabricate a small-footprint fiber-optic cryothermometer. A comparison of the two sample types offers fundamental insight into the phdtoluminescent behavior of silicon nanocrystal ensembles.
机译:对于纯纳米晶体膜和聚二甲基硅氧烷(PDMS)纳米复合材料,尺寸纯化的硅纳米晶体的光致发光(PL)是温度和纳米颗粒尺寸的函数。两种样品类型的带隙对温度的依赖性相同,由于量子限制,其与块状硅的可测量性不同。我们的研究结果还表明,纳米复合材料中的颗粒间和环境耦合较弱,在低温下,纯纳米晶体薄膜的PL增强,寿命对尺寸的出乎意料的依赖性。我们通过整体非辐射平衡常数在低温尺寸依赖性方面的差异来解释这些结果。 PDMS纳米复合材料的响应可通过强度,寿命和波长,以适合生物医学应用的聚合物分散的形态,通过强度,寿命和波长来一致地测量局部温度,我们利用它来制造一种小型的光纤低温测温仪。两种样品类型的比较提供了对硅纳米晶体集合体的光致发光行为的基本了解。

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