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Photoactive Nanocrystals by Low-Temperature Welding of Copper Sulfide Nanoparticles and Indium Sulfide Nanosheets

机译:通过低温焊接硫化铜纳米粒子和硫化铟纳米型纳米烯的光活性纳米晶

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摘要

We successfully utilize the concept of coalescence and room-temperature sintering to prepare morphologically different nanoparticles. n-Type chalcogenide (CuIn5S8) nanocrystals are synthesized at room temperature by simple mixing of oppositely charged precursor nanoparticles. The coalescence of polycation-coated CuS nanoparticles and negatively charged In2S3 nanoplates is driven by close contact of the particles due to electrostatic interactions. Analysis by X-ray diffraction, transmission electron microscopy (TEM) imaging, and Raman spectroscopy confirms the formation of single-phase CuIn5S8 without traceable secondary phase. In a photovoltaic device, the use of the coalesced particles yields a power conversion efficiency of 1.8%.
机译:我们成功利用了聚结和室温烧结的概念,制备形态学不同的纳米颗粒。 通过简单混合相对电荷的前体纳米颗粒,在室温下合成N型硫属化物(Cuin5S8)纳米晶体。 通过静电相互作用紧密接触,通过颗粒紧密接触地驱动聚涂覆的CUS纳米颗粒和带负电荷的IN2S3纳米层的聚结。 通过X射线衍射,透射电子显微镜(TEM)成像和拉曼光谱法分析,证实了单相Cuin5S8的形成而没有可追踪的二相。 在光伏器件中,采煤颗粒的使用产生的功率转换效率为1.8%。

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