首页> 外文期刊>RSC Advances >Synthesis of Au-decorated three-phase-mixed TiO2/phosphate modified active carbon nanocomposites as easily-recycled efficient photocatalysts for degrading high-concentration 2,4-DCP
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Synthesis of Au-decorated three-phase-mixed TiO2/phosphate modified active carbon nanocomposites as easily-recycled efficient photocatalysts for degrading high-concentration 2,4-DCP

机译:Au装饰的三相混合TiO2 /磷酸改性活性炭纳米复合材料的合成易循环高效光催化剂,用于降解高浓度2,4-DCP

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摘要

It is of great significance to fabricate easily-recycled TiO _(2) photocatalysts with high activity. Herein, dominant-anatase three-phase (anatase/rutile/brookite)-mixed nanosized TiO _(2) with high photocatalytic activity for degrading a high-concentration of 2,4-DCP has been synthesized via a hydrothermal process with HCl as a phase-directing agent, and interestingly the apparent photoactivity could be greatly improved by decorating Au nanoparticles and then coupling phosphate-treated active carbon. The amount-optimized nanocomposite displays ~12-fold enhancement in degradation rate constant ( k ) compared to anatase TiO _(2) . Based on the steady-state surface photovoltage spectra, fluorescence spectra related to the produced ·OH amount, temperature-programmed desorption and O _(2) electrochemical reduction curves, it is confirmed that the exceptional photoactivity is mainly attributed to the greatly-enhanced charge separation from the phase-mixed composition, and from the decorated Au as electron acceptors and its promotion effects on O _(2) activation. Moreover, the use of phosphate-modified AC as a support is also positive for efficient photocatalytic reactions by accepting electrons and concentrating the pollutants, with recyclable features. This work provides a feasible strategy to fabricate TiO _(2) -based nano-photocatalysts for degrading high-concentration pollutants to remediate the environment.
机译:用高活性制造容易再循环的TiO _(2)光催化剂具有重要意义。在此,通过用HCl作为HCl作为a的高浓度为高浓度2,4-DCP的高光催化活性,具有高光催化活性的显性 - 锐钛矿三相(锐钛矿/金刚石/布鲁克钛矿) - 混合纳米型TiO _(2)。通过装饰Au纳米颗粒然后偶联磷酸盐处理的活性炭,可以大大改善相位引导剂,并且可以大大改善表观光度。与Anatase TiO _(2)相比,含量优化的纳米复合材料显示〜12倍的劣化率常数(k)的增强。基于稳态表面光伏谱,与所产生的·OH量相关的荧光光谱,温度编程的解吸和O _(2)电化学还原曲线,证实了卓越的拍摄性主要归因于大大提高的电荷与相混合组合物分离,并从装饰的Au作为电子受体及其促进效应对O _(2)激活。此外,使用磷酸盐改性的AC作为载体的使用也是通过接受电子和浓缩污染物的有效光催化反应的阳性,具有可回收的特征。这项工作提供了一种制造TiO _(2)基础的纳米光催化剂的可行策略,用于降解高浓度污染物以修复环境。

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