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Synthesis of vinyl-terminated Au nanoprisms and nanooctahedra mediated by 3-butenoic acid: direct Au@pNIPAM fabrication with improved SERS capabilities

机译:合成vinyl-terminated Au纳米棱柱nanooctahedra由3-butenoic酸:直接与提高ser Au@pNIPAM制造功能

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摘要

Here we describe the first seedless synthesis of vinyl-terminated Au nanotriangular prisms (AuNTPs) and nanooctahedra (AuNOC) in aqueous media. This synthesis is performed by chemical reduction of chloroauric acid (HAuCl4) with 3-butenoic acid (3BA) in the presence of benzyldimethylammonium chloride (BDAC). The principal novelties of the presented method are the use of a mixture of 3BA and BDAC, the synthesis of gold prisms and octahedra with controllable size, and the presence of terminal double bonds on the metal surface. Initially this method produces a mixture of triangular gold nanoprisms and octahedra; however, both morphologies are successfully separated by surfactant micelle induced depletion interaction, reaching percentages up to similar to 90%. Moreover, the alkene moieties present on the gold surface are exploited for the fabrication of hybrid core@shell particles. Gold octahedra and triangular prisms are easily encapsulated by free radical polymerization of N-isopropylacrylamide (NIPAM). Finally, in order to obtain a gold core with the most number of tips, AuNTP@pNIPAM microgels were subjected to gold core overgrowth, thus resulting in star-shaped nanoparticles (AuSTs@pNIPAM). We use 4-amino-benzenethiol as the model analyte for SERS investigations. As expected, gold cores with tips and high curvature sites produced the highest plasmonic responses.
机译:在这里,我们描述了第一次无籽的合成vinyl-terminated盟nanotriangular棱镜(AuNTPs)和nanooctahedra (AuNOC)水媒体。减少氯金酸(HAuCl4)3-butenoic酸(3 ba)的存在benzyldimethylammonium氯(BDAC)。主要新奇事物的方法使用的混合3 ba和BDAC,黄金棱镜和正八面体的合成可控大小和终端的存在金属表面上的双键。方法产生三角黄金的混合物正八面体纳米棱柱;形态是成功地隔开表面活性剂胶束感生损耗互动,达到了相似的百分比为90%。此外,对黄金的烯烃半个礼物表面的加工利用混合core@shell粒子。三角棱镜很容易封装的自由自由基聚合的N-isopropylacrylamide(NIPAM)。最多的技巧,AuNTP@pNIPAM微凝胶受到黄金核心过度生长,因此导致的星形纳米颗粒(AuSTs@pNIPAM)。ser的模型分析物调查。预期,黄金核心技巧和高曲率网站最高的电浆产生反应。

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