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Photovoltaic and photocatalytic properties of bismuth oxyiodide–graphene nanocomposites

机译:碘氧化铋-石墨烯纳米复合材料的光伏和光催化性能

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In this study, we evaluate the photovoltaic and photocatalytic properties of chemical vapor deposited bismuth oxyiodide (BiOI) and bismuth oxyiodide–graphene (BiOI–GR) nanocomposite thin films. The BiOI thin film has an average thickness of 574 nm and a bandgap of around 2 eV. The BiOI and BiOI–GR thin films exhibited nanoflake morphology. It was found that addition of graphene increases absorbance by causing vertical growth of nanoflakes, imparting anti-reflectance and light trapping properties. The photocatalytic activities of the thin films were evaluated by examining methylene blue (MB) degradation under visible light irradiation. BiOI–GR degraded 56.42% of MB in two hours while BiOI degraded 44.16%. Afterwards, FTO|BiOI|graphite|Al and FTO|BiOI–GR|graphite|Al solar cell devices were fabricated with photocurrent density values of 2.0 μA cm ~(?2) and 2.7 μA cm ~(?2) , respectively. The improved properties of BiOI–GR are attributed to the anti-reflecting and light trapping properties of vertical BiOI–GR nanoflakes and the enhanced carrier separation due to graphene as an electron acceptor.
机译:在这项研究中,我们评估了化学气相沉积氧化碘化铋(BiOI)和氧化碘化铋-石墨烯(BiOI-GR)纳米复合薄膜的光电性能。 BiOI薄膜的平均厚度为574 nm,带隙约为2 eV。 BiOI和BiOI-GR薄膜表现出纳米薄片形态。已经发现,石墨烯的添加通过引起纳米薄片的垂直生长而增加吸收性,赋予抗反射性和光捕​​获特性。通过检查在可见光照射下的亚甲基蓝(MB)降解来评估薄膜的光催化活性。 BiOI-GR在两小时内降解了MB的56.42%,而BiOI降解了44.16%。之后,制造FTO | BiOI | Al和FTO | BiOI-GR | Al太阳能电池器件,其光电流密度值分别为2.0μAcm〜(?2)和2.7μAcm〜(?2)。 BiOI-GR性能的提高归因于垂直BiOI-GR纳米薄片的抗反射和光陷获性能,以及由于石墨烯作为电子受体而增强的载流子分离。

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