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Hydroquinone-Assisted Synthesis of Branched Au-Ag Nanoparticles with Polydopamine Coating as Highly Efficient Photothermal Agents

机译:对苯二酚辅助高效合成聚对多巴胺涂层的对苯二酚辅助合成分枝金纳米银。

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Despite the success of galvanic replacement in preparing hollow nanostructures with diversified morphologies via the replacement reaction between sacrificial metal nanoparticles (NPs) seeds and less active metal ions, limited advances are made for producing branched alloy nanostructures. In this paper, we report an extended galvanic replacement for preparing branched Au-Ag NPs with Au-rich core and Ag branches using hydroquinone (HQ) as the reductant. In the presence of HQ the preformed Ag seeds are replaceable by Au and, in turn, supply the growth of Ag branches. By altering the feed ratio of Ag seeds, HAuCl4, and HQ the size and morphology of the NPs are tunable. Accordingly, the surface plasmon resonance absorption is tuned to near-infrared (NIR) region, making the branched NPs as potential materials in photothermal therapy. The branched NPs are further coated with polydopamine (PDA) shell via dopamine polymerization at room temperature. In comparison with bare NPs, PDA-coated branched Au-Ag (Au-Ag@PDA) NPs exhibit improved stability, biocompatibility, and photothermal performance. In vitro experiments indicate that the branched Au-Ag@PDA NPs are competitive agents for photothermal ablation of cancer cells.
机译:尽管通过牺牲金属纳米粒子(NPs)种子和活性较低的金属离子之间的置换反应,电流置换成功地制备了具有多种形态的空心纳米结构,但在制备支化合金纳米结构方面取得了有限的进展。在本文中,我们报告了一种扩展的电化学替代方法,该方法可使用对苯二酚(HQ)作为还原剂,制备具有富金核心和Ag支链的支链Au-Ag NP。在总部的情况下,预先形成的Ag种子可以被Au替代,进而提供Ag分支的生长。通过改变Ag种子,HAuCl4和HQ的进料比,可以调节NP的大小和形态。因此,表面等离激元共振吸收被调谐到近红外(NIR)区域,使支化的NPs在光热疗法中成为潜在的材料。在室温下,通过多巴胺聚合将支化的NP进一步用聚多巴胺(PDA)壳包被。与裸露的NP相比,涂有PDA的支链Au-Ag(Au-Ag @ PDA)NP表现出更高的稳定性,生物相容性和光热性能。体外实验表明,支链的Au-Ag @ PDA NP是光热消融癌细胞的竞争剂。

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