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Hydrothermal Synthesis of Aqueous-Soluble Copper Indium Sulfide Nanocrystals and Their Use in Quantum Dot Sensitized Solar Cells

机译:水热合成水溶性铜铟硫化物纳米晶体及其在量子点敏化太阳能电池中的应用

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摘要

A facile hydrothermal method to synthesize water-soluble copper indium sulfide (CIS) nanocrystals (NCs) at 150 °C is presented. The obtained samples exhibited three distinct photoluminescence peaks in the red, green and blue spectral regions, corresponding to three size fractions, which could be separated by means of size-selective precipitation. While the red and green emitting fractions consist of 4.5 and 2.5 nm CIS NCs, the blue fraction was identified as in situ formed carbon nanodots showing excitation wavelength dependent emission. When used as light absorbers in quantum dot sensitized solar cells, the individual green and red fractions yielded power conversion efficiencies of 2.9% and 2.6%, respectively. With the unfractionated samples, the efficiency values approaching 5% were obtained. This improvement was mainly due to a significantly enhanced photocurrent arising from complementary panchromatic absorption.
机译:提出了一种容易水热法,以在150℃下合成水溶性铜铟硫化物(CIS)纳米晶(NCS)的方法。所得样品在红色,绿色和蓝色光谱区域中表现出三个不同的光致发光峰,对应于三个尺寸的级分,其可以通过尺寸选择性沉淀分离。虽然红色和绿色发射级分由4.5和2.5nm CIS NCs组成,但是鉴定为原位形成的碳纳多特的蓝级分,显示出激发波长依赖性排放。当用作量子点敏化太阳能电池的光吸收剂时,个体绿色和红色馏分分别产生2.9%和2.6%的功率转化效率。利用未分叉的样品,获得接近5%的效率值。这种改进主要是由于互补的全色吸收引起的显着增强的光电流。

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