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Seed-Mediated Electroless Deposition of Gold Nanoparticles for Highly Uniform and Efficient SERS Enhancement

机译:种子介导的金纳米粒子的化学沉积用于高度均匀和高效的SERS增强

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摘要

A seed-mediated electroless deposition (SMED) approach for fabrication of large-area and uniform gold nanoparticle films as efficient and reproducible as surface-enhanced Raman scattering (SERS) substrates was presented. This approach involved a seeding pretreatment procedure and a subsequent growth step. The former referred to activation of polylysine-coated glass slides in gold seed solution, and the latter required a careful control of the reactant concentration and reaction time. With the aid of gold seeds and appropriate reaction conditions, a large-area and uniform nanofilm with evenly distributed gold nanoparticles (Au NPs) was formed on the surface of the substrates after adding a mixed solution containing ascorbic acid and trisodium citrate. The morphology of the Au nanofilm was examined by scanning electron microscopy. The size evolution of Au NPs on the surface of the substrates was analyzed in detail. The nanofilm substrate was prepared by reaction conditions of the seeded activation process: 10 mL ascorbic acid and trisodium citrate mixture and 30 min of soaking time, which exhibited an excellent uniformity and reproducibility of SERS enhancement with relative standard deviation (RSD) values of less than 8% (particularly, a RSD value of 3% can be reached for the optimized measurement). Compared to the common electroless deposition, the seed-mediated electroless deposition possessed inherent advantages in controllability, reproducibility, and economic benefit.
机译:提出了一种种子介导的化学沉积(SMED)方法,用于制造大面积且均匀的金纳米粒子膜,其表面增强型拉曼散射(SERS)衬底既有效又可重现。该方法涉及种子预处理步骤和随后的生长步骤。前者是指在金种子溶液中活化聚赖氨酸涂层的载玻片,而后者则需要仔细控制反应物的浓度和反应时间。借助于金种子和适当的反应条件,在添加含有抗坏血酸和柠檬酸三钠的混合溶液后,在基底表面上形成了具有均匀分布的金纳米颗粒(Au NPs)的大面积且均匀的纳米膜。通过扫描电子显微镜检查Au纳米膜的形态。详细分析了基底表面上的金纳米颗粒的尺寸演变。通过接种活化过程的反应条件制备纳米膜基质:10 mL抗坏血酸和柠檬酸三钠的混合物和30分钟的浸泡时间,在相对标准偏差(RSD)值小于1的情况下,SERS增强表现出极好的均匀性和可重复性。 8%(特别是对于最佳测量,RSD值可达到3%)。与普通的化学沉积相比,种子介导的化学沉积在可控制性,可重复性和经济效益方面具有固有的优势。

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