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Controlled Growth of BiSI Nanorod-Based Films through a Two-Step Solution Process for Solar Cell Applications

机译:通过两步法解决太阳能电池应用中BiSI纳米棒基薄膜的受控生长

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摘要

Pb-based hybrid perovskite solar cells, despite their advantages, face challenges in commercialization. In recent years, Bi-based chalcohalides are being considered as potential alternative candidates, however, their current device efficiency remains unsatisfactory. Herein, a two-step solution method is developed and applied to the fabrication of BiSI films. The method consists of the formation of Bi S (step I) and its conversion to BiSI (step II). The Bi S was fabricated by a thiol-amine solution process and the BiSI conversion was achieved by chemical reaction between the as-formed Bi S and BiI . It was found that the formation of BiSI was highly dependent on the Bi:S molar ratio of the Bi O -thiourea solution and the number of times of step I. The as-fabricated BiSI film had an optical band gap of 1.61 eV and exhibited nanorod morphology. In addition, the electronic structure is explored and discussed for solar cells applications.
机译:基于铅的混合钙钛矿太阳能电池尽管具有优势,但在商业化方面仍面临挑战。近年来,Bi-基卤化物被认为是潜在的替代候选物,但是,它们当前的器件效率仍然不能令人满意。在此,开发了一种两步解决方法并将其应用于BiSI膜的制造。该方法包括Bi S的形成(步骤I)和将其转化为BiSI(步骤II)。 Bi S是通过硫醇胺溶液法制备的,BiSI转化是通过形成的Bi S和BiI之间的化学反应实现的。发现BiSI的形成高度依赖于Bi O-硫脲溶液的Bi:S摩尔比和步骤I的次数。所制造的BiSI膜具有1.61eV的光学带隙并且表现出纳米棒形态。另外,探索并讨论了用于太阳能电池应用的电子结构。

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