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首页> 外文期刊>Separation and Purification Technology >Fabrication and characterization of BiOBr:Yb3+,Er3+/g-C3N4 p-n junction photocatalysts with enhanced visible-NIR-light-driven photoactivities
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Fabrication and characterization of BiOBr:Yb3+,Er3+/g-C3N4 p-n junction photocatalysts with enhanced visible-NIR-light-driven photoactivities

机译:BioBR:YB3 +,ER3 + / G-C3N4 p-n结光催化剂的制备和表征,具有增强的可见释放亮型光敏的光催化剂

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摘要

The BiOBr:Yb3+,Er3+/g-C3N4 (BYE/CN) p-n junction photocatalysts were successfully fabricated by a stepwise method. Experimental results show that Er3+/Yb3+ were successfully doped into BiOBr lattice. As-obtained BYE/CN exhibited strong NIR light absorption and upconversion emission from NIR to UV-visible due to the upconversion transition of Er3+. The p-n junction was constructed due to the appropriate alignment band structure of BYE and g-C3N4, which distinctly suppresses the recombination rate of electron-hole pairs. Compared with pure BYE and CN, as-synthesized BYE/CN samples exhibit distinctly improved photoactivities under the irradiation of visible or NIR light, which can be attributed to the upconversion effect of Er3+ and the construction of p-n junction. This result may provides a promising system for efficient harvest of the NIR light, which will contribute to the utilization of solar energy in the future.
机译:BioBR:YB3 +,ER3 + / G-C3N4(BYE / CN)P-N结光催化通过逐步法制造。 实验结果表明,ER3 + / YB3 +成功掺杂到BIOBR格子中。 由于ER3 +的上变化转变,AS获得的BYE / CN表现出强烈的NIR光吸收和来自NIR的UV可见的发射。 由于BYE和G-C3N4的适当对准带结构,构建了P-N结,其明显抑制电子孔对的重组率。 与纯再见和CN相比,如合成的BYE / CN样品在可见或NIR光照射下表现出明显改善的拍摄性,这可以归因于ER3 +的上变化和P-N结的构造。 该结果可以为NIR光的有效收获提供有希望的系统,这将有助于未来太阳能的利用。

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