首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Hollow nanocubes made of Ag-Au alloys for SERS detection with sensitivity of 10(-8) M for melamine
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Hollow nanocubes made of Ag-Au alloys for SERS detection with sensitivity of 10(-8) M for melamine

机译:由Ag-Au合金制成的空心纳米立方体,用于SERS检测,对三聚氰胺的灵敏度为10(-8)M

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In this work, we transformed Ag nanocubes into Ag-Au hollow nanocubes with a continuous shell of Ag-Au alloy on the surface and some remaining pure Ag in the interior. Upon the removal of the pure Ag with aqueous H2O2 from inside of Ag-Au hollow nanocubes, we obtained Ag-Au nanoboxes. Next, we systematically evaluated the SERS properties of the hollow nanocubes and nanoboxes by benchmarking against the Ag nanocubes. In one study, we collected the SERS spectra of 1,4-benzenedithiol (1,4-BDT) adsorbed on the surfaces of the nanoparticles when the samples were prepared using 1,4-BDT solutions with different concentrations. Our results showed that both the hollow nanocubes and nanoboxes exhibited considerably stronger SERS activity than the original Ag nanocubes. In particular, the remaining pure Ag inside the hollow nanocubes made a significant contribution to achieve SERS detection with sensitivity of 10(-11) M for 1,4-BDT. We further demonstrated their capability for the SERS detection of melamine at 10(-8) M, a concentration considerably lower than the tolerance level of 1 ppm in infant formula. Moreover, we showed that the hollow nanocubes or nanoboxes with Ag-Au alloy shells on the surfaces were more stable compared to Ag nanocubes in an oxidative environment such as a solution containing an oxidant and/or halide ions. Taken together, these Ag-Au alloy nanostructures are good candidates for a trace detection of biological and chemical analytes by SERS.
机译:在这项工作中,我们将Ag纳米立方体转换为Ag-Au中空纳米立方体,在其表面上连续形成了Ag-Au合金外壳,而内部保留了一些纯净的Ag。从Ag-Au中空纳米立方体内部用H2O2水溶液去除纯Ag后,我们获得了Ag-Au纳米盒。接下来,我们通过以Ag纳米立方体为基准,系统地评估了中空纳米立方体和纳米盒的SERS特性。在一项研究中,当使用不同浓度的1,4-BDT溶液制备样品时,我们收集了吸附在纳米颗粒表面的1,4-苯二硫醇(1,4-BDT)的SERS光谱。我们的结果表明,中空纳米立方体和纳米盒均比原始的Ag纳米立方体表现出明显更强的SERS活性。特别是,中空纳米立方体中剩余的纯银为实现SERS检测做出了重大贡献,对1,4-BDT的敏感度为10(-11)M。我们进一步证明了其在10(-8)M时SERS检测三聚氰胺的能力,该浓度大大低于婴儿配方食品中1 ppm的耐受水平。此外,我们表明,在氧化性环境(例如含有氧化剂和/或卤化物离子的溶液)中,与Ag纳米立方体相比,表面带有Ag-Au合金壳的中空纳米立方体或纳米盒更稳定。总而言之,这些Ag-Au合金纳米结构是通过SERS痕量检测生物和化学分析物的良好候选物。

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