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Monodisperse hexagonal silver nanoprisms: Synthesis via thiolate-protected cluster precursors and chiral, ligand-imprinted self-assembly

机译:单分散六角形银纳米棱镜:通过硫醇盐保护的簇前体和手性,配体印迹自组装的合成

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摘要

Silver nanoprisms of a predominantly hexagonal shape have been prepared using a ligand combination of a strongly binding thiol, captopril, and charge-stabilizing citrate together with hydrogen peroxide as an oxidative etching agent and a strong base that triggered nanoprism formation. The role of the reagents and their interplay in the nanoprism synthesis is discussed in detail. The beneficial role of chloride ions to attain a high degree of reproducibility and monodispersity of the nanoprisms is elucidated. Control over the nanoprism width, thickness, and, consequently, plasmon resonance in the system has been demonstrated. One of the crucial factors in the nanoprism synthesis was the slow, controlled aggregation of thiolate-stabilized silver nanoclusters as the intermediates. The resulting superior monodispersity (better than ca. 10% standard deviation in lateral size and ca. 15% standard deviation in thickness (<1 nm variation)) and charge stabilization of the produced silver nanoprisms enabled the exploration of the rich diversity of the self-assembled morphologies in the system. Regular columnar assemblies of the self-assembled nanoprisms spanning 2-3 μm in length have been observed. Notably, the helicity of the columnar phases was evident, which can be attributed to the chirality of the strongly binding thiol ligand. Finally, the enhancement of Raman scattering has been observed after oxidative removal of thiolate ligands from the AgNPR surface.
机译:已经使用强结合的硫醇,卡托普利和电荷稳定柠檬酸盐的配体组合以及过氧化氢作为氧化剂和腐蚀剂以及触发纳米棱镜形成的强碱来制备主要为六边形的银纳米棱镜。详细讨论了试剂在纳米棱镜合成中的作用及其相互作用。阐明了氯离子对于实现纳米棱镜的高度再现性和单分散性的有益作用。已经证明了对纳米棱镜的宽度,厚度以及系统中的等离子体激元共振的控制。纳米棱镜合成中的关键因素之一是硫醇盐稳定的银纳米团簇作为中间体的缓慢受控的聚集。所产生的优异的单分散性(横向尺寸的标准偏差约为10%,厚度的标准偏差约为15%(变化小于1 nm))和所产生的银纳米棱镜的电荷稳定性使得能够探索自身的丰富多样性系统中组装的形态。自组装的纳米棱镜的长度为2-3μm的规则柱状组件已被观察到。值得注意的是,柱状相的螺旋度是明显的,这可以归因于强结合硫醇配体的手性。最后,从AgNPR表面氧化去除硫醇盐配体后,观察到拉曼散射的增强。

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