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Heterojunctions of p-BiOI Nanosheets/n-TiO 2 Nanofibers: Preparation and Enhanced Visible-Light Photocatalytic Activity

机译:p-Bioi纳米片/ N-TiO 2纳米纤维的异质功能:制备和增强的可见光光催化活性

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p-BiOI nanosheets/n-TiO 2 nanofibers (p-BiOI/n-TiO 2 NFs) have been facilely prepared via the electrospinning technique combining successive ionic layer adsorption and reaction (SILAR). Dense BiOI nanosheets with good crystalline and width about 500 nm were uniformly assembled on TiO 2 nanofibers at room temperature. The amount of the heterojunctions and the specific surface area were well controlled by adjusting the SILAR cycles. Due to the synergistic effect of p-n heterojunctions and high specific surface area, the obtained p-BiOI/n-TiO 2 NFs exhibited enhanced visible-light photocatalytic activity. Moreover, the p-BiOI/n-TiO 2 NFs heterojunctions could be easily recycled without decreasing the photocatalytic activity owing to their one-dimensional nanofibrous structure. Based on the above, the heterojunctions of p-BiOI/n-TiO 2 NFs may be promising visible-light-driven photocatalysts for converting solar energy to chemical energy in environment remediation.
机译:通过将连续离子层吸附和反应(Sill)组合的静电纺丝技术(Sill),通过静电纺丝技术(Sill)通过电刺激技术施加p-Bioi纳米型/ N-TiO 2纳米纤维(P-BioI / N-TiO 2 NFS)。具有良好结晶和宽度约500nm的致密生物纳米片在室温下均匀地组装在TiO 2纳米纤维上。通过调节Sill循环来良好地控制异质结和比表面积的量。由于P-N杂交和高比表面积的协同效应,所获得的P-BioI / N-TiO 2 NFS表现出增强的可见光光催化活性。此外,可以容易地再循环p-BioI / n-TiO 2 NFS异质结,而不会降低由于其一维纳米纤维结构而降低光催化活性。基于上述,P-BioI / N-TiO 2 NFS的异质结可能是希望在环境修复中将太阳能转化为化学能的可见光催化剂。

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