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Kinetically-Controlled Growth of Chestnut-Like Au Nanocrystals with High-Density Tips and Their High SERS Performances on Organochlorine Pesticides

机译:具有高密度尖端的栗样金纳米晶体的动力学控制生长及其对有机氯农药的高SERS性能

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摘要

A modified seed growth route was developed to fabricate the Au nanocrystals with high-density tips based on kinetically-controlled growth via adjusting the adding rate of Au seeds into growth solution. The obtained Au nanostructures were chestnut-like in morphology and about 100 nm in size. They were built of the radial [111]-oriented nanoneedles and were 30–50 nm in length. There were about 120–150 tips in each nanocrystal. The formation of chestnut-like Au nanocrystals is ascribed to surfactant-induced preferential growth of seeds along direction [111]. Importantly, the chestnut-like Au configuration displayed powerful surface enhanced Raman scattering (SERS) performance (enhance factor > 107), owing to the high density of tips. Further, such film was used as a SERS substrate for the detection of lindane (γ-666) molecules (the typical organochlorine pesticide). The detection limit was about 10 ppb, and the relationship between SERS intensity I and concentration C of 666 accords with the double logarithm linear. This work presents a simple approach to Au nanocrystal with high-density tips, and provides a highly efficacious SERS-substrate for quantitative and trace recognition of toxic chlorinated pesticides.
机译:开发了一种改进的种子生长途径,以通过调节生长种子中Au种子的添加速率,基于动力学控制的生长来制造具有高密度尖端的Au纳米晶体。所获得的Au纳米结构的形态为栗状,大小约为100nm。它们是由径向[111]取向的纳米针制成的,长度为30–50 nm。每个纳米晶体中大约有120–150个尖端。栗子状金纳米晶体的形成归因于表面活性剂诱导的种子沿方向的优先生长[111]。重要的是,由于尖端的密度高,栗子状的Au构型显示出强大的表面增强拉曼散射(SERS)性能(增强因子> 10 7 )。此外,这种膜用作SERS底物,用于检测林丹(γ-666)分子(典型的有机氯农药)。检出限约为10 ppb,SERS强度I与666的浓度C之间的关系符合双对数线性。这项工作提出了一种具有高密度尖端的Au纳米晶体的简单方法,并提供了一种高效的SERS基质,用于定量和痕量识别有毒的氯化农药。

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