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首页> 外文期刊>Journal of Hazardous Materials >Facile synthesis of hierarchically nanostructured bismuth vanadate: An efficient photocatalyst for degradation and detection of hexavalent chromium
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Facile synthesis of hierarchically nanostructured bismuth vanadate: An efficient photocatalyst for degradation and detection of hexavalent chromium

机译:分级纳米结构钒酸铋的简便合成:用于降解和检测六价铬的有效光催化剂

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Heterostructured nanomaterials can paid more significant attention in environmental safety for the detection and degradation/removal of hazardous toxic chemicals over a decay. Here, we report the preparation of hierarchically nanostructured shuriken like bismuth vanadate (BiVO4) as a bifunctional catalyst for photocatalytic degradation and electrochemical detection of highly toxic hexavalent chromium (Cr(VI)) using the green deep eutectic solvent reline, which allows morphology control in one of the less energy-intensive routes. The SEM results showed a good dispersion of BiVO4 catalyst and the HR-TEM revealed an average particle size of ca. 5-10 nm. As a result, the BiVO4 exhibited good photocatalytic activity under UV-light about 95% reduction of Cr(VI) to Cr(III) was observed in 160 min. The recyclability of BiVO4 catalyst exhibited an appreciable reusability and stability of the catalyst towards the photocatalytic reduction of Cr(VI). Also, the BiVO4-modified screen printed carbon electrode (BiVO4/SPCE) displayed an excellent electrochemical performance towards the electrochemical detection of Cr(VI). Besides, the BiVO4/SPCE demonstrated tremendous electrocatalytic activity, lower linear range (0.01-264.5 mu M), detection limit (0.0035 mu M) and good storage stability towards the detection of Cr(VI). Importantly, the BiVO4 modified electrode was also found to be a good recovery in water samples for practical applications.
机译:异质结构纳米材料可在环境安全方面引起更多关注,以检测和降解/去除降解过程中的有害有毒化学物质。在这里,我们报告制备绿色级深共溶剂溶剂线状的纳米级结构手里剑,如钒酸铋(BiVO4)作为双功能催化剂,用于光催化降解和高毒性六价铬(Cr(VI))的电化学检测,从而可以控制形态能耗较低的路线之一。 SEM结果表明BiVO4催化剂具有良好的分散性,而HR-TEM显示的平均粒径大约为50nm。 5-10纳米。结果,BiVO4在紫外光下表现出良好的光催化活性,在160分钟内观察到Cr(VI)还原为Cr(III)约95%。 BiVO4催化剂的可循环利用性显示出可重复使用性和催化剂对Cr(VI)的光催化还原的稳定性。此外,BiVO4修饰的丝网印刷碳电极(BiVO4 / SPCE)对Cr(VI)的电化学检测显示出出色的电化学性能。此外,BiVO4 / SPCE具有极强的电催化活性,较低的线性范围(0.01-264.5μM),检出限(0.0035μM)和对Cr(VI)的良好存储稳定性。重要的是,BiVO4修饰电极还被发现在实际应用的水样中具有良好的回收率。

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