量子点
光致发光
硅
发光
纳米技术
量子
材料科学
化学物理
微晶
光电子学
物理
分子物理学
化学
量子力学
结晶学
作者
Alyxandra Thiessen,Lijuan Zhang,Anton O. Oliynyk,Haoyang Yu,Kevin O’Connor,A. Meldrum,Jonathan G. C. Veinot
标识
DOI:10.1021/acs.chemmater.0c00650
摘要
“Two quantum dots, both alike in composition, but differing in structure, where we lay our scene, From broader classes, to bring deeper understanding, to the crystalline core that drives the quantum dot’s sheen.” In this contribution we examine two families of silicon quantum dots (SiQDs) that bring to mind the Capulets and the Montagues in Shakespeare’s Romeo and Juliet because of their stark similarities and differences. SiQDs are highly luminescent, heavy-metal-free, and based upon earth-abundant elements. As such, they have attracted attention for far-reaching applications ranging from biological imaging to luminescent solar concentrators to light-emitting diodes that rely on their size-dependent optical response. Unfortunately, correlating SiQDs “size” to their photoluminescence (PL) maximum is often challenging. Herein, we provide essential structural insight into the correlation between the dimensions and PL maximum of SiQDs through a direct comparison of samples that exhibit statistically identical physical dimensions (dTEM) and chemical compositions but different crystallite size (dXRD) and PL maxima. We then expand the scope of this investigation and systematically compare groupings of SiQDs: one in which the dXRD and dTEM agree and one where dXRD < dTEM. This latter comparison clearly shows that dXRD better predicts SiQD optical response when using the well-established effective mass approximation.
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