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嵌入合成唾液中的核壳量子点的光学表征:时间动态特性

Optical characterization of core-shell quantum dots embedded in synthetic saliva: Temporal dynamics.

作者信息

de Santana Juliana F, Pilla Viviane, Silva Anielle C A, Dantas Noelio O, Messias Djalmir N, Andrade Acácio A

机构信息

Grupo de Propriedades Ópticas e Térmicas de Materiais (GPOTM), Instituto de Física, Universidade Federal de Uberlândia - UFU, Av. João Naves de Ávila 2121, Uberlândia, MG 38400-902, Brazil.

Grupo de Propriedades Ópticas e Térmicas de Materiais (GPOTM), Instituto de Física, Universidade Federal de Uberlândia - UFU, Av. João Naves de Ávila 2121, Uberlândia, MG 38400-902, Brazil.

出版信息

J Photochem Photobiol B. 2015 Oct;151:208-12. doi: 10.1016/j.jphotobiol.2015.08.016. Epub 2015 Aug 15.

Abstract

The present work reports the spectroscopic and thermo-optical properties of CdSe/ZnS and CdSe/CdS core-shell quantum dots (QDs) embedded in synthetic saliva. Spectroscopy studies were performed applying nonfunctionalized CdSe/ZnS QDs (3.4, 3.9 and 5.1 nm cores) and hydroxyl group-functionalized ultrasmall CdSe/CdS core-shell quantum dots (1.6 nm core) suspended in artificial saliva at different potential of hydrogen (pH) values. Saliva was chosen because it is important in a variety of functions such as protecting teeth through the buffering capacity of the formed biofilm, hydration, and dental remineralization. Thermo-optical characterizations using the thermal lens (TL) technique were performed in QD-biofluids for different QD sizes and pH values (3.9-8.3) of the synthetic oral fluids. Transient TL measurements were applied to determine the fluorescence quantum efficiency (η) in QD-biomaterial systems. High η value was obtained for ultrasmall CdSe/CdS QDs. Fluorescence spectral measurements of the biomaterials support the TL results. In addition, for nonfunctionalized (3.4 and 5.1 nm) and hydroxyl group-functionalized QDs, the temporal behavior of the fluorescence spectra was accomplished about approximately 1200 h at two different biofluid pH values (3.9 and 8.3). The temporal fluorescence intensity result is dependent on the pH of the saliva in which the QDs were embedded, QD functionalization and QD sizes. The time for an approximately 50% decrease in the peak intensity fluorescence of CdSe/ZnS QDs (3.4 nm core) and ultrasmall CdSe/CdS QDs is respectively 25 h and 312 h at pH 3.9 and 48 h and 360 h at pH 8.3.

摘要

本研究报告了嵌入合成唾液中的CdSe/ZnS和CdSe/CdS核壳量子点(QD)的光谱和热光性质。光谱研究使用了未功能化的CdSe/ZnS量子点(核尺寸为3.4、3.9和5.1纳米)以及羟基功能化的超小CdSe/CdS核壳量子点(核尺寸为1.6纳米),它们悬浮在不同氢电位(pH)值的人工唾液中。选择唾液是因为它在多种功能中很重要,比如通过形成的生物膜的缓冲能力保护牙齿、保湿以及牙齿再矿化。使用热透镜(TL)技术对不同量子点尺寸和合成口腔液不同pH值(3.9 - 8.3)的量子点生物流体进行了热光表征。应用瞬态TL测量来确定量子点生物材料系统中的荧光量子效率(η)。超小CdSe/CdS量子点获得了高η值。生物材料的荧光光谱测量支持了TL结果。此外,对于未功能化(3.4和5.1纳米)和羟基功能化的量子点,在两种不同生物流体pH值(3.9和8.3)下,荧光光谱的时间行为在大约12%的时间内完成。荧光强度随时间变化的结果取决于嵌入量子点的唾液的pH值、量子点功能化以及量子点尺寸。在pH 3.9时,CdSe/ZnS量子点(核尺寸为3.4纳米)和超小CdSe/CdS量子点峰值强度荧光下降约50%的时间分别为25小时和312小时;在pH 8.3时,分别为48小时和360小时。

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