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Rapid, large-scale, sonochemical synthesis of 3D nanotextured silver microiowers as highly efficient SERS substrates

机译:快速,大规模,声化学合成3D纳米织构化银微纤维作为高效SERS基质

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摘要

This paper reports a simple, sonochemical, surfactant-free synthesis of three-dimensional (3D) silver microflowers with high yield and good size distribution at ambient temperature. The shape, size and surface structure (controlled roughness of the surface topography) of the Ag microflowers could be tuned by controlling the experimental parameters. The special structural features with nanoscale corrugations of 3D silver microflowers make a significant contribution to the high sensitivity of SERS to Rhodamine 6G (R6G) and 4-mercaptobenzoic acid (MBA) molecules. The rougher Ag microflowers display a higher SERS activity compared to the smooth ones, which demonstrates the crucial role of nanoscale surface texturing in the plasmonic response of Ag microflowers. Raman results show that the detection limits for R6G and MBA of the optimized Ag microflower substrate are as low as 10~(-17) M and 10~(-12) M, respectively, which can meet the requirements for ultratrace detection of analytes. Furthermore, when the Ag microflower substrate is applied to detect biomolecules of bovine serum albumin (BSA), it also exhibits a high detection sensitivity and the detection concentration of BSA is as low as 10~(-12) M. This facile, large-scale, low-cost, and green chemistry synthesized Ag substrate with high SERS activity and sensitivity make it a perfect choice for practical SERS detection applications.
机译:本文报道了一种简单的,无声化学反应的,无表面活性剂的三维(3D)银微花合成方法,该方法在环境温度下具有高收率和良好的尺寸分布。银微花的形状,大小和表面结构(表面形貌的受控粗糙度)可以通过控制实验参数来调整。 3D银色微花的纳米波纹具有特殊的结构特征,这对SERS对罗丹明6G(R6G)和4-巯基苯甲酸(MBA)分子的高敏感性做出了重要贡献。与光滑的相比,粗糙的Ag微型花显示出更高的SERS活性,这表明纳米级表面纹理化在Ag微型花的等离子体响应中起着至关重要的作用。拉曼分析结果表明,优化后的银微花底物对R6G和MBA的检出限分别低至10〜(-17)M和10〜(-12)M,可以满足分析物超痕量检测的要求。此外,将Ag小花底物应用于牛血清白蛋白(BSA)的生物分子检测时,它还具有很高的检测灵敏度,而BSA的检测浓度低至10〜(-12)M。大规模,低成本,绿色化学合成的具有高SERS活性和灵敏度的Ag底物,使其成为实际SERS检测应用的理想选择。

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