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Synthesis of highly luminescent CdTe/CdS core-shell nanocrystals by optimization of the core and shell growth parameters

机译:通过优化核和壳的生长参数合成高发光CdTe / CdS核-壳纳米晶体

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CdTe NCs were grown in aqueous solution through a hot injection method. The size of NCs was controlled by changing the refluxing time in a wide range of 1-20 h. The corresponding photoluminescence quantum yield was quite different for different sizes of nanocrystals and was saturated in long refluxing times. Different sizes of CdTe NCs within 2.5-4 nm and PL quantum yields between 28 and 50% were applied for the synthesis of core/shell CdTe/CdS nanostructures. The CdS shell was thermally over grown on the surface of different CdTe NCs for the luminescence improvement. The shell formation time was also changed in a wide range of 10-120 min to get the highest photoluminescence efficiencies. The range of changes and the maximum value of the PL quantum yield of the CdTe/CdS NCs were quite different for various sizes of core CdTe nanoparticles. A maximum PL quantum yield of 64% was achieved for the core shell nanocrystals with cores prepared in 6 h of the refluxing time and CdS shell formed in 60 min of heating. Besides, there was a similar oscillating behaviour for the absorbance and PL quantum yields of the core-shell NCs during the shell formation process. This was qualitatively investigated and attributed to the successive formation of the perfect CdS shells on the NCs surface. The XRD, TEM and XPS analyses were performed to confirm the shell formation. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过热注射法使CdTe NCs在水溶液中生长。通过在1-20小时的宽范围内改变回流时间来控制NC的大小。对于不同尺寸的纳米晶体,相应的光致发光量子产率是非常不同的,并且在长回流时间内饱和。 2.5-4 nm范围内不同尺寸的CdTe NCs和PL量子产率在28%至50%之间被用于合成核/壳CdTe / CdS纳米结构。 CdS外壳在不同CdTe NC的表面上热过度生长,以提高发光度。壳形成时间也在10-120分钟的宽范围内变化,以获得最高的光致发光效率。对于各种尺寸的核心CdTe纳米粒子,CdTe / CdS NCs的变化范围和PL量子产率的最大值都非常不同。核心壳纳米晶体的最大PL量子产率达到64%,其中核心是在回流时间6小时内制备的,而CdS壳是在加热60分钟后形成的。此外,在壳形成过程中,核-壳型NC的吸光度和PL量子产率也有类似的振荡行为。对此进行了定性研究,并归因于在NCs表面上连续形成了完美的CdS壳。进行了XRD,TEM和XPS分析以确认壳的形成。 (C)2017 Elsevier B.V.保留所有权利。

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