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Seedless synthesis of gold nanorods using resveratrol as a reductant

机译:白藜芦醇为还原剂,无核合成金纳米棒

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Gold nanorods (GNRs) attract extensive attention in current diagnostic and therapeutic applications which require the synthesis of GNRs with high yields, adjustable aspect ratio, size monodispersity, and easy surface decoration. In the seed-mediated synthesis of GNRs using cetyl trimethyl ammonium bromide (CTAB) micelles as templates, the additives of aromatic compounds have been found to be important for improving the size monodispersity of the as-synthesized GNRs; this is hopeful in terms of the further optimization of the synthetic methodology of GNRs. In this work, resveratrol, a natural polyphenol in grapes with an anti-oxidization behavior, is employed as the reductant for the seedless synthesis of GNRs with a good size monodispersity and a tunable aspect ratio. Accordingly, the longitudinal localized surface plasmon resonance (LSPR) peak is tunable from 570 to 950 nm. The success of our approach is attributed to the aromatic structure and mild reducibility of resveratrol. The embedment of resveratrol into CTAB micelles strengthens the facet-selective adsorption of CTAB, and therewith facilitates the anisotropic growth of GNRs. In addition, the mild reducibility of resveratrol is capable of supporting GNR growth by avoiding secondary nucleation, thus allowing the seedless synthesis of GNRs with a good size monodispersity. As a chemopreventive agent, the combination of resveratrol in GNR synthesis will consolidate the theranostic applications of GNRs.
机译:金纳米棒(GNR)在当前的诊断和治疗应用中引起了广泛的关注,这些应用要求合成具有高收率,可调整的长宽比,尺寸单分散性和易于表面修饰的GNR。在以十六烷基三甲基溴化铵(CTAB)胶束为模板的种子介导的GNRs合成中,发现芳香族化合物的添加剂对于改善合成后的GNRs的尺寸单分散性很重要。就进一步优化GNRs的合成方法而言,这是有希望的。在这项工作中,白藜芦醇(一种具有抗氧化性能的葡萄中的天然多酚)被用作还原剂,用于无籽合成具有良好尺寸单分散性和可调长宽比的GNR。因此,纵向局部表面等离振子共振(LSPR)峰可在570至950 nm范围内调节。我们方法的成功归因于白藜芦醇的芳香结构和适度的还原性。将白藜芦醇嵌入CTAB胶束中可增强CTAB的小面选择性吸附,并由此促进GNR的各向异性生长。另外,白藜芦醇的适度还原性能够避免二次成核,从而支持GNR的生长,因此可以无核合成具有良好尺寸单分散性的GNR。作为化学预防剂,白藜芦醇在GNR合成中的组合将巩固GNR的治疗学应用。

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