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Au@Ag core-shell nanocubes with finely tuned and well-controlled sizes, shell thicknesses, and optical properties

机译:Au @ Ag核-壳纳米立方体,具有经过微调和良好控制的尺寸,壳厚度和光学特性

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This paper describes a facile method for generating Au@Ag core-shell nanocubes with edge lengths controllable in the range of 13.4-50 nm. The synthesis involved the use of single-crystal, spherical Au nanocrystals of 11 nm in size as the seeds in an aqueous system, with ascorbic acid serving as the reductant and cetyltrimethylammonium chloride (CTAC) as the capping agent. The thickness of the Ag shells could be finely tuned from 1.2 to 20 nm by varying the ratio of AgNO_3 precursor to Au seeds. We also investigated the growth mechanism by examining the effects of seeds (capped by CTAC or cetyltrimethylammonium bromide(CTAB)) and capping agent (CTAC vs CTAB) on both size and shape of the resultant core-shell nanocrystals. Our results clearly indicate that CTAC worked much better than CTAB as a capping agent in both the syntheses of Au seeds and Au@Ag core-shell nanocubes. We further studied the localized surface plasmon resonance properties of the Au@Ag nanocubes as a function of the Ag shell thickness. By comparing with the extinction spectra obtained from theoretical calculations, we derived a critical value of ca. 3 nm for the shell thickness at which the plasmon excitation of the Au cores would be completely screened by the Ag shells. Moreover, these Au@Ag core-shell nanocubes could be converted into Au-based hollow nanostructures containing the original Au seeds in the interiors through a galvanic replacement reaction.
机译:本文描述了一种简便的方法来生成Au @ Ag核壳纳米立方体,其边长可控制在13.4-50 nm范围内。合成过程涉及使用大小为11 nm的球形单晶Au纳米晶体作为水体系中的种子,抗坏血酸用作还原剂,十六烷基三甲基氯化铵(CTAC)作为封端剂。通过改变AgNO_3前体与Au种子的比例,可以将Ag壳的厚度从1.2nm微调到20nm。我们还通过检查种子(被CTAC或十六烷基三甲基溴化铵(CTAB)加帽)和加盖剂(CTAC与CTAB)对所得核-壳纳米晶体的尺寸和形状的影响,研究了生长机理。我们的结果清楚地表明,在Au种子和Au @ Ag核壳纳米立方体的合成中,CTAC均比CTAB更好地用作封端剂。我们进一步研究了Au @ Ag纳米立方体的局部表面等离子体共振特性与Ag壳厚度的关系。通过与从理论计算获得的消光光谱进行比较,我们得出了ca的临界值。外壳厚度为3 nm,在该厚度处,Ag外壳将完全屏蔽Au核的等离激元激发。此外,这些Au @ Ag核壳纳米立方体可以通过电置换反应转换为内部包含原始Au种子的Au基空心纳米结构。

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