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Plasmonic hybrid platinum-titania nanocomposites as highly active photocatalysts: self-cleaning of cotton fiber under solar light

机译:等离子体杂交铂 - 二氧化钛纳米复合材料作为高活性光催化剂:太阳灯下棉纤维的自清洁

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In the present paper, a one-step, simple, efficient and low-cost strategy was demonstrated for preparing of highly stable hybrid platinum-titania (Pt@TiO2) photocatalyst by solvothermal wet chemical process. Platinum (Pt) in the metallic form combined with titania (TiO2) in the crystallographic anatase form has been manufactured using Dimethyl Sulfoxide (DMSO) as a solvent and surfactant using titanium (IV) butoxide and hydrogen hexachloroplatinate(IV) precursors. Full characterization of the hybrid nanomaterials including their morphology, crystalline structure and optical properties was determinate using different experimental techniques such as XRD, TEM and UV–vis spectroscopy. TEM images showed spherically shaped Pt nanoparticles (NPs) of the diameter 5–10nm with good particle size distribution. The EDXRF data revealed that Pt NPs are in metallic form. Optical investigation show that Pt@TiO2NPs exhibits a good optical response under UV–vis light excitation compared to bare-TiO2. Furthermore, photocatalytic investigation of Pt@TiO2colloids photocatalyst towards the photodegradation of diuron, as a model organic pesticide was reported. The hybrid Pt@TiO2photocatalyst prove high-performance on the photodecomposition of the pesticide under solar light within only 60 min. In the other hand, the plasmonic hybrid Pt@TiO2was incorporated into the cotton fabric to attain a modified fiber with high self-cleaning activity.
机译:在本文中,通过溶剂热化学工艺制备高度稳定的杂交铂 - 二氧化钛(Pt @ TiO2)光催化剂,证明了一种单步,简单,高效和低成本的策略。使用二甲基亚甲醚(DMSO)作为溶剂和表面活性剂的金属形式与二氧化钛(TiO 2)结合的金属形式的铂(Pt)与使用钛(IV)丁氧化钛和六氯塑化酸氢盐(IV)前体制备。杂化纳米材料的全部表征包括它们的形态,结晶结构和光学性质是使用不同的实验技术确定的,例如XRD,TEM和UV-Vis光谱。 TEM图像显示出直径5-10nm的球形Pt纳米颗粒(NPS),粒度均匀分布良好。 EDXRF数据显示PT NPS处于金属形式。光学研究表明,与裸机TiO 2相比,PT @ TiO2NPS在UV-Vis光激励下表现出良好的光学响应。此外,报道了作为模型有机农药的Diuron光催化剂光催化研究Pt @ TiO 2核胶体光催化剂。 Hybrid Pt @ TiO2光催化剂在仅60分钟内,在太阳能光下,在太阳光下的杀虫剂的光致致力于高性能。另一方面,掺入棉织物中的等离子体杂交Pt @ TiO2碳纤维以获得具有高自清洁活性的改性纤维。

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