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首页> 外文期刊>Chemistry Select >Photocatalytic Reduction of Hexavalent Chromium (Cr~(6+)) Over BiOI Calcined at Different Temperature Under Visible Light Irradiation
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Photocatalytic Reduction of Hexavalent Chromium (Cr~(6+)) Over BiOI Calcined at Different Temperature Under Visible Light Irradiation

机译:在可见光光照射下在不同温度下在不同温度下钙化的六价铬(Cr〜(6+))的光催化降低

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摘要

Synthesis of photocatalysts with high charge separation and transfer efficiency are of huge significance in the photocatalytic waste water treatment technology. Herein, we report the phase transformation of bismuth oxyiodide through the facile calcination of BiOI microsphere at different temperatures. Different phases including BiOI, Bi4O5I2 and Bi5O7I were obtained as confirmed by different characterization techniques studied. The synthesized photocatalysts depicted high visible light absorption efficiency in a range of ~ 655 to 420 nm. The photo- catalytic activity of the synthesized photocatalyst were studied on the reduction of the highly carcinogenic and toxic hexavalent chromium as the representative heavy metal in waste water. Bi4O5I2 depicted high photocatalytic activity (k= 0.0366 min~(-1)) which was ascribed to high charge separation and transfer as evidenced in PL, photocurrent response and EIS. This study may furnish a new concept in designing a series of phases that are more advantageous in solar energy conversion.
机译:具有高电荷分离和转移效率的光催化剂的合成在光催化废水处理技术中具有重要意义。在本文中,我们报告了含氧二氮的相变,该二碘可以通过在不同温度下的生物微球的便捷钙化。通过研究的不同表征技术证实,获得了包括BIOI,BI4O5I2和BI5O7I在内的不同阶段。合成的光催化剂描述了~655至420 nm的高可见光吸收效率。研究了合成的光催化剂的光催化活性,以减少高度致癌和有毒的六价铬作为废水中的代表性重金属。 BI4O5I2描述了高光催化活性(k = 0.0366 min〜(-1)),该活性归因于高电荷分离和转移,如PL,光电流响应和EIS所证明的。这项研究可能会为设计一系列在太阳能转化中更有利的阶段时提供一个新的概念。

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