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An in situ gold-decorated 3D branched ZnO nanocomposite and its enhanced absorption and photo-oxidation performance for removing arsenic from water

机译:一种原位金装饰的3D支化ZnO纳米复合材料及其增强的吸收和光氧化性能,用于从水中除去砷

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In this study, we report a one-step, low-cost and environmentally benign route to tune ZnO morphology via the in situ reduction of Au nanoparticles as crystal habit modifiers. Pure ZnO had spindle shape morphology. When the Au particles were introduced to the system, the growth form of the ZnO crystals was changed. Finally, ZnO grew along different directions to form a 3D nanobranched morphology. This unique 3D nanobranched ZnO/Au compound exhibits enhanced absorption and photooxidation performance for AsO _(2) ~(?) (As( III )). What is more, the efficiency could be improved by optimizing the Au content to 1%. The adsorption kinetics, which were explored in detail, indicated that Au decoration significantly changed the surface properties of the samples. The zeta potential of the ZnO/Au samples was more positive, which is beneficial for the adsorption of AsO _(2) ~(?) (As( III )) with negative charges. Moreover, the enhanced photooxidation performance was attributed to the coupling of Au noble metal nanoparticles and the 3D branched structures. Thus, this facile method was expected to adsorb and oxidize As( III ) from contaminated water in one step. What is more, usage of noble metal particles, which are formed in situ , as habit modifiers to tune the growth form of crystals can be extended to the preparation of other metal oxide.
机译:在这项研究中,我们通过AU纳米粒子作为晶体习性改性剂来报告一步,低成本和环境良性的途径来调整ZnO形态。纯ZnO具有主轴形态。当将Au颗粒引入系统时,改变ZnO晶体的生长形式。最后,ZnO沿着不同的方向形成3D纳米群体形态。这种独特的3D纳米群ZnO / Au化合物具有增强的吸收和光氧化性能,适用于AS _(2)〜(?)(AS(III))。更重要的是,通过优化AU内容至1%,可以提高效率。详细探讨的吸附动力学表明,AU装饰显着改变了样品的表面特性。 ZnO / Au样品的Zeta电位更阳性,这对于具有负电荷的ASO _(2)〜(α)(如(iii)的吸附是有益的。此外,增强的光氧化性能归因于Au贵金属纳米粒子和3D支化结构的偶联。因此,预期该容易方法在一步中吸附和氧化为(III)(III)。更重要的是,原位形成的贵金属颗粒的用途作为牙龈改性剂来调节晶体的生长形式,可以延伸到制备其他金属氧化物。

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