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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-Assembled Large-Scale Monolayer of Au Nanoparticles at the Air/Water Interface Used as a SERS Substrate
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Self-Assembled Large-Scale Monolayer of Au Nanoparticles at the Air/Water Interface Used as a SERS Substrate

机译:在空气/水界面上用作SERS基质的金纳米粒子的自组装大规模单分子膜

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摘要

Self-assembly of metal nanoparticles has attracted considerable attention because of its unique applications in technologies such as plasmonics, surface-enhanced optics, sensors, and catalysts. However, fabrication of ordered nanoparticle structures remains a significant challenge. Thus, developing an efficient approach for the assembly of large-scale Au nanoparticles films for theoretical studies and for various applications is highly desired. In this paper, a facial approach for fabricating a monolayer film of Au nanoparticles was developed successfully. Using the surfactant polyvinylpyrrolidone (PVP), a large-scale monolayer film of well-ordered, uniform-sized Au nanoparticles was fabricated at the air/water interface. The film exhibited a two-dimensional (2D) hexagonal close-packed (HCP) structure having interparticle gaps smaller than 2 nm. These gaps generated numerous uniform "hot spots" for surface-enhanced Raman scattering (SERS) activity. The as-prepared monolayer film could be transferred to a solid substrate for use as a suitable SERS substrate with high activity, high uniformity, and high stability. The low spot-to-spot and substrate-to substrate variations of intensity (<10%), the large surface enhancement factor (similar to 10(6)), and the high stability (similar to 45 days) make the substrate suitable for SERS measurements. Transfer of the monolayer film onto a glassy carbon electrode produced an Au electrode with clean, well-defined nanostructure suitable for electrochemical SERS measurements. The adsorption process of ionic liquids on the electrode with the monolayer film is similar to that on bulk metal electrodes. The present strategy provides an effective way for self-assembly of Au nanoparticles into well-defined nanostructures that may form optimal reproducible SERS substrates for quantitative analysis. It also provides an electrode with clean, well-defined nanostructure for electrochemical investigations.
机译:金属纳米粒子的自组装因其在等离激元,表面增强光学,传感器和催化剂等技术中的独特应用而备受关注。然而,有序纳米颗粒结构的制造仍然是重大挑战。因此,迫切需要开发一种用于组装大规模金纳米颗粒膜的有效方法,以进行理论研究和各种应用。在本文中,成功地开发了一种用于制造金纳米颗粒单层膜的面部方法。使用表面活性剂聚乙烯吡咯烷酮(PVP),在空气/水界面处制备了有序,尺寸均一的金纳米颗粒的大型单层膜。该膜表现出具有小于2 nm的颗粒间间隙的二维(2D)六方密堆积(HCP)结构。这些间隙为表面增强拉曼散射(SERS)活性产生了许多均匀的“热点”。所制备的单层膜可以转移到固体衬底上,以用作具有高活性,高均匀性和高稳定性的合适的SERS衬底。点到点和衬底到衬底的强度变化低(<10%),大的表面增强因子(类似于10(6))和高稳定性(大约45天)使该衬底适合SERS测量。将单层膜转移到玻璃碳电极上,产生了具有干净,轮廓分明的纳米结构的Au电极,适合电化学SERS测量。带有单层膜的电极上离子液体的吸附过程与块状金属电极上的相似。本策略提供了一种将Au纳米粒子自组装为定义明确的纳米结构的有效方法,该结构可以形成用于定量分析的最佳可再现SERS底物。它还为电化学研究提供了具有干净,定义明确的纳米结构的电极。

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