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Single-Pot Rapid Synthesis of Colloidal Core/Core-Shell Quantum Dots: A Novel Polymer-Nanocrystal Hybrid Materialud

机译:单罐快速合成胶体核/核壳量子点:一种新型聚合物 - 纳米晶混合材料 ud

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摘要

Colloidal core and core shell Quantum Dots (QD's) are unique and important optoelectronic materials because properties of these QD's can be tailored by configuring core and optimizing shell thickness. In this research work, lead selenide (PbSe) core and PbSe-CdSe (Core-shell) QD's are synthesized using oleic acid as a capping ligand by colloidal route. This simpler, cost-effective and rapid single pot synthesis route for colloidal core-shell quantum dots unlike conventional double-pot approach like cation-exchange and SILAR process has been reported for the very first time. Phase formation of prepared quantum dots is confirmed by XRD analysis, capping ligand presence by IR spectroscopy and morphological information by Scanning electron microscopy respectively. These synthesized inorganic quantum dots are dispersed in Poly (3-hexyl thiophene) polymer for formation of their respective nanocomposites. From PL quenching studies, it was inferred that PbSe-CdSe core-shell quantum dots showed enhanced rate of PL quenching and hence higher value of Stern-Volmer constant (K-SV) than PbSe Core QD's. This confirms that CdSe shell formation on PbSe core significantly passivates the core-surface, increases the stability and enhances the charge transfer mechanism for its potential application in Hybrid Solar cells.
机译:胶体核和核壳量子点(QD's)是独特且重要的光电材料,因为可以通过配置核子和优化壳厚度来定制这些QD的属性。在这项研究工作中,使用油酸作为封端配体,通过胶体途径合成了硒化铅(PbSe)核和PbSe-CdSe(核-壳)量子点。不同于常规的双锅法,如阳离子交换和SILAR工艺,这种胶体核-壳量子点的更简单,经济高效且快速的单锅合成路线首次被报道。制备的量子点的相形成通过XRD分析,通过IR光谱法确定配体的存在以及通过扫描电子显微镜法确认的形态学信息来确认。将这些合成的无机量子点分散在聚(3-己基噻吩)聚合物中以形成它们各自的纳米复合材料。从PL猝灭研究中,可以推断出PbSe-CdSe核-壳量子点显示出PL猝灭的速率提高,因此其Stern-Volmer常数(K-SV)值高于PbSe核QD。这证实了在PbSe核上形成的CdSe壳层显着钝化了核表面,提高了稳定性并增强了电荷转移机制,从而可潜在地应用于混合太阳能电池。

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