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首页> 外文期刊>Applied Surface Science >Silver nanocubes/graphene oxide hybrid film on a hydrophobic surface for effective molecule concentration and sensitive SERS detection
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Silver nanocubes/graphene oxide hybrid film on a hydrophobic surface for effective molecule concentration and sensitive SERS detection

机译:疏水表面上的银纳米立方体/氧化石墨烯杂化膜可实现有效的分子浓缩和灵敏的SERS检测

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摘要

Surface-enhanced Raman scattering (SERS) is a promising analytical technique with molecular "fingerprint" characteristic and high sensitivity. To achieve high sensitivity, analytes should be located in or around the so-called SERS "hot spots" that are normally formed in sub-10 nm gaps between the neighboring plasmonic nanostructures. Ordinary SERS substrates generally show low sensitivity to the molecules that have weak affinity to noble-metal surfaces. Here, we fabricate an effective SERS system that can concentrate and adsorb organic pollutants in water for sensitive SERS detection. Such a SERS platform is composed of a thin film of Ag nanocubes/graphene oxide hybrid covered on a small Cu foil, and the Cu foil is placed on a hydrophobic teflon surface. The Ag nanocubes/graphene oxide hybrid film is synthesized by growth of graphene oxide on a Cu foil using electrophoresis and subsequent assembly of Ag nanocubes on the graphene oxide in ethanol via van der Waals interactions. Organic pollutant molecules can be concentrated on the hybrid film by adding a droplet of aqueous analyte solution on the hybrid film and evaporating. Due to the hydrophobic nature of teflon surface, the droplet will shrink onto the hybrid film and realize the concentration of analyte molecules on a SERS platform. There exists large delocalized pi-electron system in the graphene oxide, so the Ag nanocubes/graphene oxide hybrid can effectively adsorb a large number of analyte molecules. As there are plenty of nano-sized gaps between the Ag nanocubes that are densely attached on the graphene oxide sheets, high density SERS hot spots can be formed in the gaps. As a result, the Ag nanocubes/graphene oxide hybrid has shown high SERS activity with an enhancement factor of 3.9 x 10(8) and good signal uniformity (relative standard deviation similar to 12%). It is further demonstrated that the hybrid SERS substrates have exhibited high SERS sensitivity to organic pollutants such as 4-chlorobiphenyl and methyl parathion, showing promising applicability in many fields as diverse as chemical analysis, environmental monitoring, and food safety inspection.
机译:表面增强拉曼散射(SERS)是一种很有前途的分析技术,具有分子“指纹”特性和高灵敏度。为了获得高灵敏度,分析物应位于所谓的SERS“热点”中或周围,通常在相邻等离子纳米结构之间的亚10纳米间隙内形成。普通的SERS底物通常对与贵金属表面亲和力弱的分子表现出较低的敏感性。在这里,我们制造了一个有效的SERS系统,该系统可以浓缩和吸附水中的有机污染物,用于灵敏的SERS检测。这种SERS平台由覆盖在小的Cu箔上的Ag纳米立方体/氧化石墨烯杂化物的薄膜组成,并将Cu箔放置在疏水性的聚四氟乙烯表面上。通过使用电泳在铜箔上生长氧化石墨烯并随后通过范德华相互作用在乙醇中将石墨纳米氧化物组装在石墨烯氧化物上,来合成Ag纳米立方体/氧化石墨烯杂化膜。通过在混合膜上添加一滴分析物水溶液并蒸发,可将有机污染物分子浓缩在混合膜上。由于聚四氟乙烯表面具有疏水性,因此液滴会收缩到杂化膜上并实现SERS平台上分析物分子的浓缩。氧化石墨烯中存在大量离域的pi电子体系,因此Ag纳米立方体/氧化石墨烯杂化物可以有效地吸附大量分析物分子。由于紧密附着在氧化石墨烯片上的Ag纳米立方体之间存在大量纳米级间隙,因此在间隙中会形成高密度SERS热点。结果,Ag纳米立方体/氧化石墨烯杂化物显示出较高的SERS活性,增强因子为3.9 x 10(8),并且具有良好的信号均匀性(相对标准偏差类似于12%)。进一步证明,杂化SERS底物对有机污染物(例如4-氯联苯和甲基对硫磷)表现出很高的SERS敏感性,在化学分析,环境监测和食品安全检查等许多领域都显示出广阔的应用前景。

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