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Quantum dot containing nanocomposite thin films for photoluminescent solar concentrators

机译:用于光致发光太阳能聚光器的包含量子点的纳米复合薄膜

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摘要

Silicon oxide films containing CdS quantum dots have been deposited on glass substrates by a sol–gel dip-coating process. Hereby the CdS nanocrystals are grown during the thermal annealing step following the dip-coating procedure. Total hemispherical transmittance and reflectance measurements were carried out by means of a spectrophotometer coupled to an integrating sphere. For CdS-rich films, an absorption edge at photon energies in the vicinity of the band gap value of bulk CdS is observed. For lower CdS concentrations, the absorption edge shifts to higher photon energies, as expected for increasing quantum confinement. The samples show visible photoluminescence which is concentrated by total internal reflection and emitted at the edges of the substrate. The edge emission has been characterized by angle-dependent photoluminescent (PL) spectroscopy. Information on the lateral energy transport within the sample can be extracted from spectra obtained under spatial variation of the spot of excitation. The color of the photoluminescence can be tuned by varying the annealing temperature which governs crystal growth and thus the cluster size distribution. The characteristic features observed in the PL spectra clearly exhibit a blueshift for lower annealing temperatures, confirming the presence of quantum size effects. Advantages of the proposed concept of quantum dot containing coatings on glass panes for photoluminescent solar concentrators are the high potential for low-cost fabrication on the large scale and the suitability for architectural integration.
机译:含有CdS量子点的氧化硅膜已通过溶胶-凝胶浸涂工艺沉积在玻璃基板上。因此,在浸涂步骤之后的热退火步骤中,CdS纳米晶体得以生长。通过耦合到积分球的分光光度计进行总半球透射率和反射率的测量。对于富含CdS的薄膜,在体CdS的带隙值附近观察到光子能量的吸收边缘。对于较低的CdS浓度,如增加的量子限制所预期的,吸收边移至较高的光子能量。样品显示出可见光致发光,该光致发光通过全内反射集中并在基板的边缘发射。边缘发射已经通过角度依赖性光致发光(PL)光谱表征。可以从在激发点的空间变化下获得的光谱中提取有关样品内横向能量传输的信息。可以通过改变控制晶体生长从而控制簇尺寸分布的退火温度来调节光致发光的颜色。 PL光谱中观察到的特征明显显示出较低退火温度的蓝移,证实了量子尺寸效应的存在。所提出的用于光致发光太阳能聚光器的玻璃板上的含量子点涂层的概念的优点是大规模低成本制造的高潜力以及适用于建筑一体化。

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