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One-pot synthesis of triangular gold nanoplates allowing broad and fine tuning of edge length

机译:三角金纳米板的一锅合成,允许边缘长度宽和微调

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A photocatalytic approach was used to synthesize triangular nanoplates in aqueous solution. The synthesis is based on the reduction of a gold salt using a tin(iv) porphyrin as photocatalyst, cetyltrimethylammonium bromide (CTAB) as a stabilizing agent, and triethanolamine (TEA) as the final electron donor. The average edge length of the triangular nanoplates can be easily changed in the range 45-250 nm by varying the concentration of photocatalyst, and fine-tuning of the average edge length is achieved by varying the concentration of CTAB. Study of the mechanism of formation of the nanoplates by UV-vis and by transmission electron microscopy (TEM) shows that there is a first stage where formation of 5 nm seeds takes place, further growth is probably by fusion and by direct reduction of gold onto the preformed nanoparticles. The nanoparticles formed during the photocatalytic reduction of the gold precursor show an irregular shape that evolves to regular triangular nanoplates after ripening in solution for 24 h.
机译:光催化方法用于合成水溶液中的三角纳米板。该合成是基于使用锡(IV)卟啉作为光催化剂,固定甲基铵(CTAB)作为稳定剂的减少金盐,而三乙醇胺(TEA)作为最终电子供款。通过改变光催化剂的浓度,可以在45-250 nm的范围内轻松更改三角纳米板的平均边缘长度,而平均边缘长度的微调可以通过改变CTAB的浓度来实现。研究通过UV-VIS和通过透射电子显微镜(TEM)的纳米板形成机理的研究表明,有一个第一阶段发生了5 nm种子的形成,可能是通过融合而直接将黄金降低到上预制的纳米颗粒。在金色前体的光催化还原过程中形成的纳米颗粒显示出不规则的形状,在溶液中成熟后,将其演变成正常的三角纳米板,持续24小时。

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