Nanocrystalline CsPbCl/sub 3/: grain boundary transport properties

G. Conte, F. Somma, M. Nikl
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Abstract

Recently the ternary compound CsPbCl/sub 3/ produced by co-evaporating CsCl and PbCl/sub 2/ has attracted much interest for its interesting optical characteristics. Indeed, aggregates with dimensions of about 10 nm are produced in the material as evidenced by luminescence spectroscopy and X-ray diffraction. Identification of the aggregates is based on a similarity of the observed emission properties with those of the bulk material. CsPbCl/sub 3/ is a wide-gap semiconductor with direct band-to-band transitions. The phase diagram of the CsCl-PbCl/sub 2/ system reveals the existence of complex ternary CsPbCl/sub 3/ (phase III semiconductor) and Cs/sub 4/PbCl/sub 6/ (phase VI, insulator) compounds. Varying the deposition rate the phase III is deposited together with the insulating phase VI. The crucible temperatures have also been optimized to control the deposition rate in order to achieve the ternary phase III only. The aim of this paper is to report on the preparation, optical and electrical characteristics of bulk and vacuum evaporated ternary compounds. To our knowledge this is the first time that the electrical behaviour in dark and in light is reported for these compounds. The correlation of the aggregate dimensions with the exciton absorption will be also introduced and discussed. X-ray diffraction spectroscopy is used as an independent evidence for aggregated phase creation. Samples used for this study have been grown by vacuum evaporation starting from Bridgman crystal chips of CsPbCl/sub 3/ or by co-evaporation of CsCl and PbCl/sub 2/ purified powders onto 7059 Coming glass substrates.
纳米晶CsPbCl/ sub3 /:晶界输运性能
近年来,由CsCl和PbCl/sub - 2/共蒸发制备的三元化合物CsPbCl/sub - 3/因其有趣的光学特性引起了人们的广泛关注。事实上,发光光谱和x射线衍射证明,材料中产生了尺寸约为10纳米的聚集体。聚集体的识别是基于观测到的发射特性与那些块状材料的相似性。CsPbCl/sub 3/是一种具有直接带到带跃迁的宽间隙半导体。CsPbCl -PbCl/sub - 2/体系的相图揭示了CsPbCl/sub - 3/(相III半导体)和Cs/sub - 4/PbCl/sub - 6/(相VI绝缘体)复合三元化合物的存在。通过改变沉积速率,III相与绝缘相VI一起沉积。为了只得到三元III相,还对坩埚温度进行了优化,以控制沉积速率。本文的目的是报道体蒸发和真空蒸发三元化合物的制备及其光学和电学特性。据我们所知,这是第一次报道这些化合物在黑暗和光线下的电行为。还将介绍和讨论聚集体尺寸与激子吸收的关系。x射线衍射光谱被用作聚集相产生的独立证据。用于本研究的样品是通过真空蒸发从CsPbCl/sub - 3/ Bridgman晶片开始,或通过CsCl和PbCl/sub - 2/纯化粉末在7059 Coming玻璃衬底上共同蒸发来生长的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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