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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Controlled synthesis of Au-loaded Fe_3O_4@C composite microspheres with superior SERS detection and catalytic degradation abilities for organic dyes
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Controlled synthesis of Au-loaded Fe_3O_4@C composite microspheres with superior SERS detection and catalytic degradation abilities for organic dyes

机译:负载金的Fe_3O_4 @ C复合微球的可控合成,具有优异的SERS检测和对有机染料的催化降解能力

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摘要

Bifunctional Au-loaded Fe_3O_4@C composite microspheres were controllably synthesized by coating of Au nanoparticles (NPs) on the surface of the poly(diallyldimethylammonium chloride) (PDDA) functionalized Fe_3O_4@C microspheres. The amount of Au loading can be effectively tuned by altering the feeding amounts of solution Au NPs or further growth. The obtained Au-loaded Fe_3O_4@C composite microspheres exhibit both superior surface-enhanced Raman scattering (SERS) sensitivity and catalytic degradation activity for organic dyes. The SERS signal intensity of methylene blue (MB) distinctly enhances with the increase of Au loading, which endows increased Raman 'hot spots' and provides a significant enhancement of the Raman signal through electromagnetic (EM) field enhancements. Furthermore, the catalytic experiments of the Fe_3O_4@C@Au composite microspheres with the highest Au loading demonstrate that the model organic dye of MB molecules could be degraded within 10 min and the catalytic activity could be recovered without sharp activity loss in six runs, which indicates their superior catalytic degradation activity. The reason could be mainly ascribed to the synergistic effects of small size of Au NPs, the good adsorption behavior of carbon layers and the excellent dispersivity of the composite microspheres induced by the sandwiched carbon layers. The results indicate that the bifunctional Au-loaded Fe_3O_4@C composite microspheres could be served as promising materials in wastewater treatment.
机译:通过在聚二烯丙基二甲基氯化铵(PDDA)功能化的Fe_3O_4 @ C微球表面涂覆Au纳米粒子(NPs),可控制地合成了负载有双功能Au的Fe_3O_4 @ C复合微球。通过改变溶液Au NPs的进料量或进一步生长,可以有效地调节Au负载量。获得的Au负载的Fe_3O_4 @ C复合微球对有机染料显示出优异的表面增强拉曼散射(SERS)敏感性和催化降解活性。亚甲基蓝(MB)的SERS信号强度随着Au负载的增加而明显增强,这赋予了拉曼“热点”增加,并通过电磁(EM)场增强显着增强了拉曼信号。此外,对具有最高金负载量的Fe_3O_4 @ C @ Au复合微球的催化实验表明,MB分子模型有机染料可在10 min内降解,并在六次运行中可恢复活性而无明显的活性损失,因此表明它们具有优异的催化降解活性。其原因可能主要归因于金纳米粒子的小尺寸,碳层的良好吸附行为以及夹层碳层诱导的复合微球的优异分散性的协同效应。结果表明,双功能负载金的Fe_3O_4 @ C复合微球可作为有希望的废水处理材料。

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