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CdSe量子点簇的温度敏感光致发光

Temperature-sensitive photoluminescence of CdSe quantum dot clusters.

作者信息

Biju Vasudevanpillai, Makita Yoji, Sonoda Akinari, Yokoyama Hiroshi, Baba Yoshinobu, Ishikawa Mitsuru

机构信息

Nano-Bioanalysis Team, Health Technology Research Center, National Institute of Advanced Industrial Science and Technology (AIST), 2217-14 Hayashi-cho, Takamatsu, Kagawa 761-0395, Japan.

出版信息

J Phys Chem B. 2005 Jul 28;109(29):13899-905. doi: 10.1021/jp050424l.

Abstract

The formation of narrow size dispersed and nanometer size aggregates (clusters) of cadmium selenide (CdSe) quantum dots (QDs) and their temperature-sensitive photoluminescence (PL) spectral properties close to room temperature (298 K) are discussed. CdSe QDs formed stable clusters with an average diameter of approximately 27 nm in the absence of coordinating solvents. Using transmission electron microscopy (TEM) imaging, we identified the association of individual QDs with 2-5 nm diameters into clusters of uniform size. A suspension of these clusters in different solvents exhibited reversible PL intensity changes and PL spectral shifts which were correlated with temperature. Although the PL intensity of CdSe QDs encapsulated in host matrixes and the solid state showed a response to temperature under cryogenic conditions, the current work identified for the first time QD clusters showing temperature-sensitive PL intensity variations and spectral shifts at moderate temperatures above room temperature. Temperature-sensitive reversible PL changes of clusters are discussed with respect to reversible thermal trapping of electrons at inter-QD interfaces and dipole-dipole interactions in clusters. Reversible luminescence intensity variations and spectral shifts of QD clusters show the potential for developing sensors based on QD nanoscale assemblies.

摘要

讨论了硒化镉(CdSe)量子点(QDs)窄尺寸分散和纳米尺寸聚集体(团簇)的形成及其在接近室温(298 K)时的温度敏感光致发光(PL)光谱特性。在没有配位溶剂的情况下,CdSe量子点形成了平均直径约为27 nm的稳定团簇。通过透射电子显微镜(TEM)成像,我们确定了直径为2-5 nm的单个量子点聚集成尺寸均匀的团簇。这些团簇在不同溶剂中的悬浮液表现出与温度相关的可逆PL强度变化和PL光谱位移。尽管封装在主体基质中的CdSe量子点和固态量子点在低温条件下的PL强度对温度有响应,但目前的工作首次确定了量子点团簇在室温以上的中等温度下表现出温度敏感的PL强度变化和光谱位移。关于团簇中电子在量子点间界面的可逆热捕获和偶极-偶极相互作用,讨论了团簇的温度敏感可逆PL变化。量子点团簇的可逆发光强度变化和光谱位移显示了基于量子点纳米级组装体开发传感器的潜力。

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