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首页> 外文期刊>Nanomaterials >In-Situ Preparation of CdTe Quantum Dots Capped with a β-Cyclodextrin-Epichlorohydrin Polymer: Polymer Influence on the Nanocrystal’s Optical Properties
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In-Situ Preparation of CdTe Quantum Dots Capped with a β-Cyclodextrin-Epichlorohydrin Polymer: Polymer Influence on the Nanocrystal’s Optical Properties

机译:β-环糊精-表氯醇聚合物包覆的CdTe量子点的原位制备:聚合物对纳米晶体光学性质的影响

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β-Cyclodextrin (βCD), the less water soluble of the cyclodextrins, has been used as a capping agent in the preparation of semiconductor nanocrystals or quantum dots (QDs). Nevertheless, no reports have been found in the use of the highly water-soluble polymer of this, prepared by the crosslinking of the βCD units with epichlorohydrin in basic medium (βCDP). This polymer, besides to overcome the low solubility of the βCD, increases the inclusion constant of the guest; two parameters that deserve its use as capping agent, instead of the native cyclodextrin. In the present manuscript, we afforded the in-situ aqueous preparation of cadmium telluride (CdTe) QDs capped with βCDP. The polymer influence on the photoluminescent properties of the nanocrystals was analyzed. The βCDP controls the nanocrystals growth during the Oswald ripening stage. Consequently, the CdTe capped βCDP QDs showed lower Stokes-shift values, higher photoluminescent efficiency, and narrower size distribution than for nanocrystals obtained in the absence of polymer. Transmission electron microscopy (TEM) micrographs and energy dispersive X-ray spectroscopy (EDS) analysis revealed the composition and crystallinity of the CdTe QDs. This βCDP capped CdTe QDs is a potential scaffold for the supramolecular modification of QDs surface.
机译:β-环糊精(βCD)是环糊精中水溶性较小的一种,已被用作制备半导体纳米晶体或量子点(QD)的封端剂。然而,尚未发现使用这种高水溶性聚合物的报道,该聚合物是通过在碱性介质(βCDP)中将βCD单元与表氯醇交联而制备的。该聚合物除克服了βCD的低溶解度外,还增加了客体的包合常数。应当使用两个参数代替天然的环糊精作为封端剂。在本文中,我们提供了以βCDP封端的碲化镉(CdTe)QD的原位水性制剂。分析了聚合物对纳米晶体的光致发光性能的影响。在奥斯瓦尔德成熟阶段,βCDP控制纳米晶体的生长。因此,与在没有聚合物的情况下获得的纳米晶体相比,CdTe封端的βCDPQD显示出更低的斯托克斯位移值,更高的光致发光效率和更窄的尺寸分布。透射电子显微镜(TEM)显微照片和能量色散X射线光谱(EDS)分析显示了CdTe量子点的组成和结晶度。该βCDP封端的CdTe QD是潜在的支架,可用于QDs表面的超分子修饰。

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