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Rapid synthesis and size control of CuInS2 semi-conductor nanoparticles using microwave irradiation

机译:微波辐照CuInS2 半导体纳米粒子的快速合成与尺寸控制

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The properties of CuInS2 semi-conductor nanoparticles make them attractive materials for use in next-generation photovoltaics. We have prepared CuInS2 nanoparticles from single source precursors via microwave irradiation. Microwave irradiation methods have allowed us to increase the efficiency of preparation of these materials by providing uniform heating and rapid reaction times. The synergistic effect of varying thiol capping ligand concentrations as well as reaction temperatures and times resulted in fine control of nanoparticle growth in the 3–5 nm size range. Investigation of the photophysical properties of the colloidal nanoparticles were performed using electronic absorption and luminescence emission spectroscopy. Qualitative nanoparticles sizes were determined from the photoluminescence (PLE) data and compared to HRTEM images.
机译:CuInS2 半导体纳米粒子的特性使其成为用于下一代光伏的有吸引力的材料。我们通过微波辐射从单一来源的前驱体中制备了CuInS2 纳米颗粒。微波辐射方法使我们能够通过提供均匀的加热和快速的反应时间来提高这些材料的制备效率。硫醇封端配体浓度的变化以及反应温度和时间的协同作用可将纳米粒子的生长控制在3-5 nm的尺寸范围内。使用电子吸收和发光发射光谱学进行胶体纳米颗粒的光物理性质的研究。根据光致发光(PLE)数据确定纳米颗粒的定性大小,并将其与HRTEM图像进行比较。

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