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Characterization of highly crystalline lead iodide nanosheets prepared by room-temperature solution processing

机译:通过室温溶液加工制备高结晶铅碘化物纳米片的表征

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摘要

Two-dimensional (2D) semiconducting materials are particularly appealing for many applications. Although theory predicts a large number of 2D materials, experimentally only a few of these materials have been identified and characterized comprehensively in the ultrathin limit. Lead iodide, which belongs to the transition metal halides family and has a direct bandgap in the visible spectrum, has been known for a long time and has been well characterized in its bulk form. Nevertheless, studies of this material in the nanometer thickness regime are rather scarce. In this article we demonstrate an easy way to synthesize ultrathin, highly crystalline flakes of PbI2 by precipitation from a solution in water. We thoroughly characterize the produced thin flakes with different techniques ranging from optical and Raman spectroscopy to temperature-dependent photoluminescence and electron microscopy. We compare the results to ab initio calculations of the band structure of the material. Finally, we fabricate photodetectors based on PbI2 and study their optoelectronic properties.
机译:二维(2D)半导体材料对于许多应用特别吸引。虽然理论预测了大量的2D材料,但实验只有少数这些材料已经综合地识别并表征了超薄的极限。铅碘化物属于过渡金属卤化物家族并在可见光谱中具有直接的带隙,很长一段时间已知,并且已经很好地表征其散装形式。然而,对纳米厚度制度的这种材料的研究相当稀缺。在本文中,我们证明了一种通过从水中溶液中的沉淀来合成超薄,高度结晶的PBI2的高度结晶薄片。我们彻底地表征了具有不同技术的产生的薄片,从光学和拉曼光谱到温度依赖性光致发光和电子显微镜。我们将结果与材料的频带结构进行了比较AB Initio计算。最后,我们制造基于PBI2的光电探测器,研究它们的光电性能。

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