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Growth of various Au-Ag nanocomposites from gold seeds in amlno acid solutions

机译:氨化酸溶液中金种子中各种金银纳米复合物的生长

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In this paper, we describe an easy procedure for the preparation of differently shaped and sized Au-Ag nanocomposites from gold nanorod (AuNR) seeds in various amino acid solutions-arginine (Arg), cysteine (Cys), glycine (Gly), glutamate (Glu), glutamine (Gin), histidine (His), lysine (Lys), and methionine (Met), respectively-at values of pH ranging from 8.0 to 11.5. Our results suggest that the pH, the nature of the amino acid, and its concentration all have significant impact on the preparation of Au-Ag nanocomposites; these factors exhibit their effects mainly through control over the reducing ability of ascorbate and/or its recognition capability, as well as through control over the surface charges of the amino acids on the AuNRs. Depending on the value of pH, we were able to prepare I-shaped, dumbbell-shaped, and/or sphere-shaped Au-Ag nanocomposites in 0.1 M solutions of Arg, Gly, Glu, Gln, Lys, and Met. In His solutions at pH 8.0 and 9.0, we obtained peanut-shaped Au-Ag nanocomposites. Corn-shaped Au-Ag nanocomposites were prepared in 0.1 M Met solutions (pH 9.0 and 10.0). By controlling the Lys concentration at pH 10.0, we synthesized pearl-necklace-shaped Au-Ag nanoparticles and Au-Ag wires. Based on the TEM images, we conclude that this simple and reproducible synthetic approach allows preparation of high-quality (>87 percemt, beside >77 percent in His solutions) Au-Ag nanocomposites with various shapes and sizes under different conditions.
机译:在本文中,我们描述了一种从金纳米棒(AuNR)种子在各种氨基酸溶液-精氨酸(Arg),半胱氨酸(Cys),甘氨酸(Gly),谷氨酸盐中制备形状和大小不同的Au-Ag纳米复合材料的简便方法(Glu),谷氨酰胺(Gin),组氨酸(His),赖氨酸(Lys)和蛋氨酸(Met),pH值分别为8.0至11.5。我们的结果表明,pH,氨基​​酸的性质及其浓度均对Au-Ag纳米复合材料的制备产生重大影响。这些因素主要通过控制抗坏血酸的还原能力和/或其识别能力以及控制AuNRs上氨基酸的表面电荷来发挥作用。根据pH值,我们能够在Arg,Gly,Glu,Gln,Lys和Met的0.1 M溶液中制备I形,哑铃形和/或球形Au-Ag纳米复合材料。在pH 8.0和9.0的His溶液中,我们获得了花生形的Au-Ag纳米复合材料。在0.1 M Met溶液(pH 9.0和10.0)中制备了玉米状Au-Ag纳米复合材料。通过将Lys浓度控制在pH 10.0,我们合成了珍珠项链状的Au-Ag纳米粒子和Au-Ag线。根据TEM图像,我们得出结论,这种简单且可重现的合成方法可以制备高质量(> 87%,在His溶液中> 77%的情况)在不同条件下具有各种形状和尺寸的Au-Ag纳米复合材料。

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