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α,ω-Aliphatic Diamines as Molecular Linkers for Engineering Ag Nanoparticle Clusters: Tuning of the Interparticle Distance and Sensing Application

机译:α,ω-脂族二胺作为工程银纳米粒子簇的分子连接剂:粒子间距离的调整和传感应用

摘要

The controlled tuning of interparticle distance at the nanoscale level is a major challenge for nanofabrication of surface-enhanced Raman scattering (SERS) active clusters and their application to molecular sensing. In fact, the geometrical properties of the narrow gaps between nanoparticles play a key role in determining the local field enhancement (and therefore, the SERS enhancement factor) and the spatial enhancement distribution in the gap region. Besides, very short interparticle distances may block the access of the analyte to the hot zone. In this paper, we report the synthesis of silver colloid NP clusters with interparticle distances fine tuned in the ≤2 nm range, by exploiting the chemical properties of linear α,ω-aliphatic diamines as molecular linkers with varying chain length. The bifunctional diamines also form intermolecular cavities within their self-assembled monolayers, suitable to host molecular analytes for nanosensing applications, as evidenced by SERS detection of organochlorine insecticides at the trace level. In this regard, the extension of the aliphatic chain played a crucial role in determining the SAM conformation and thus the final sensitivity of the functionalized SERS substrate. © 2010 Springer Science+Business Media, LLC.
机译:在纳米级水平上受控地调整粒子间距离是纳米制造表面增强拉曼散射(SERS)活性簇及其在分子传感中的应用的主要挑战。实际上,纳米颗粒之间的窄间隙的几何性质在确定局部场增强(以及因此的SERS增强因子)和间隙区域中的空间增强分布方面起着关键作用。此外,非常短的粒子间距离可能会阻止分析物进入热区。在本文中,我们通过利用线性α,ω-脂族二胺作为具有不同链长的分子接头的化学性质,报道了微粒间距离在≤2nm范围内微调的银胶体NP簇的合成。双功能二胺还可以在其自组装单分子层内形成分子间腔,适合容纳用于纳米传感应用的分子分析物,这可通过痕量有机物SERS检测证明。在这方面,脂族链的延伸在确定SAM构象以及因此确定官能化的SERS底物的最终敏感性中起关键作用。 ©2010 Springer Science + Business Media,LLC。

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