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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Construction of flexible photoelectrochemical solar cells based on ordered nanostructural BiOI/Bi2S3 heterojunction films
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Construction of flexible photoelectrochemical solar cells based on ordered nanostructural BiOI/Bi2S3 heterojunction films

机译:基于有序纳米结构BiOI / Bi2S3异质结薄膜的柔性光电化学太阳能电池的构建

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Ordered 2D nanostructural BiOI nanoflake arrays decorated with Bi2S3 nanospheres have been designed and in situ fabricated for the first time, to form BiOI/Bi2S3 bulk heterojunctions through a soft chemical route. A modified successive ionic layer adsorption and reaction (SILAR) method was developed to fabricate BiOI nanoflake arrays on flexible ITO/PET substrates at room temperature. The degree of transformation of BiOI to Bi2S3 was controlled through the adjustment of exposure time of the BiOI/ITO substrate to thioacetamide (TAA) aqueous solution. The morphologies of BiOI, BiOI/Bi2S3 heterojunctions and Bi2S3 films were examined by scanning electron microscopy (SEM), X-ray powder diffraction (XRD) patterns, and high resolution transmission electron microscopy (HRTEM). The presence of Bi2S3 was further validated through Raman spectroscopy and X-ray photoelectron spectroscopy (XPS). Especially, photoelectrochemical measurements demonstrated that such a Bi2S3 decorated BiOI photoanode based cell exhibits significant augments of short-circuit current density (J(sc)) and incident photon-to-current conversion efficiency (IPCE, 3 times higher than the pure BiOI photoanode), attributable to the stronger photo-absorption and better photogenerated charge carrier separation and transport efficiency. The surface photovoltage (SPV) measurements further confirmed the importance of BiOI/Bi2S3 heterojunctions in such PEC cells. This solution-based process directly on flexible ITO offers the promise for low-cost, large-area, roll-to-roll application of the manufacturing of the third generation thin-film photovoltaic devices.
机译:已经设计并首次现场制造了用Bi2S3纳米球装饰的有序二维纳米结构BiOI纳米片阵列,通过软化学途径形成BiOI / Bi2S3本体异质结。开发了一种改进的连续离子层吸附和反应(SILAR)方法,以在室温下在柔性ITO / PET基板上制造BiOI纳米片阵列。通过调整BiOI / ITO底物在硫代乙酰胺(TAA)水溶液中的暴露时间,可以控制BiOI向Bi2S3的转化程度。通过扫描电子显微镜(SEM),X射线粉末衍射(XRD)图和高分辨率透射电子显微镜(HRTEM)检查了BiOI,BiOI / Bi2S3异质结和Bi2S3薄膜的形貌。 Bi2S3的存在通过拉曼光谱和X射线光电子能谱(XPS)进一步验证。尤其是,光电化学测量表明,这种Bi2S3装饰的BiOI光阳极基电池表现出短路电流密度(J(sc))和入射光子至电流转换效率(IPCE,比纯BiOI光阳极高3倍)的显着提高。归因于更强的光吸收和更好的光生电荷载流子分离和传输效率。表面光电压(SPV)测量进一步证实了BiOI / Bi2S3异质结在此类PEC电池中的重要性。直接在柔性ITO上进行的基于解决方案的工艺为第三代薄膜光伏器件制造的低成本,大面积,卷对卷应用提供了希望。

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