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Chemical Insight Into The Origin of Red and Blue Photoluminescence Arising From Freestanding Silicon Nanocrystals

机译:从独立硅纳米晶体产生的红色和蓝色光致发光起源的化学洞察

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摘要

Silicon nanocrystals (Si NCs) are attractive functional materials. They are compatible with standard electronics and communications platforms as well being biocompatible. Numerous methods have been developed to realize size-controlled Si NC synthesis. While these procedures produce Si NCs that appear identical, their optical responses can differ dramatically. Si NCs prepared using high-temperature methods routinely exhibit photoluminescence agreeing with the effective mass approximation (EMA), while those prepared via solution methods exhibit blue emission that is somewhat independent of particle size. Despite many proposals, a definitive explanation for this difference has been elusive for no less than a decade. This apparent dichotomy brings into question our understanding of Si NC properties and potentially limits the scope of their application. The present contribution takes a substantial step forward toward identifying the origin of the blue emission that is not expected based upon EMA predictions. It describes a detailed comparison of Si NCs obtained from three of the most widely cited procedures as well as the conversion of red-emitting Si NCs to blue-emitters upon exposure to nitrogen containing reagents. Analysis of the evidence is consistent with the hypothesis that the presence of trace nitrogen and oxygen even at the ppm level in Si NCs gives rise to the blue emission.
机译:硅纳米晶体(Si NCs)是有吸引力的功能材料。它们与标准电子和通信平台兼容,并且具有生物兼容性。已经开发出许多方法来实现尺寸控制的Si NC合成。尽管这些程序产生的Si NC外观相同,但它们的光学响应却可能大不相同。使用高温方法制备的Si NC通常显示出与有效质量近似值(EMA)一致的光致发光,而通过溶液法制备的Si NC显示出的蓝光与颗粒大小无关。尽管提出了许多建议,但对于这种差异的明确解释至少已有十年之久了。这种明显的二分法使我们对Si NC特性的理解受到质疑,并有可能限制其应用范围。本贡献朝着识别基于EMA预测无法预期的蓝色发射的起点迈出了实质性的一步。它描述了通过三种最广泛引用的程序获得的Si NCs的详细比较,以及在暴露于含氮试剂后将发红光的Si NCs转换为蓝光发射器。证据的分析与以下假设相符:在Si NCs中即使存在ppm级的微量氮和氧也会导致蓝色发射。

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