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首页> 外文期刊>ACS Omega >Single-Molecule Nonresonant Wide-Field Surface-Enhanced Raman Scattering from Ferroelectrically Defined Au Nanoparticle Microarrays
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Single-Molecule Nonresonant Wide-Field Surface-Enhanced Raman Scattering from Ferroelectrically Defined Au Nanoparticle Microarrays

机译:铁电定义金纳米粒子微阵列的单分子非共振广域表面增强拉曼散射。

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Single-molecule detection by surface-enhanced Raman scattering (SERS) is a powerful spectroscopic technique that is of interest for the sensor development field. An important aspect of optimizing the materials used in SERS-based sensors is the ability to have a high density of “hot spots” that enhance the SERS sensitivity to the single-molecule level. Photodeposition of gold (Au) nanoparticles through electric-field-directed self-assembly on a periodically proton-exchanged lithium niobate (PPELN) substrate provides conditions to form well-ordered microscale features consisting of closely packed Au nanoparticles. The resulting Au nanoparticle microstructure arrays (microarrays) are plasmon-active and support nonresonant single-molecule SERS at ultralow concentrations (<10~(–9)–10~(–13) M) with excitation power densities <1 × 10~(–3) W cm~(–2) using wide-field imaging. The microarrays offer excellent SERS reproducibility, with an intensity variation of <7.5% across the substrate. As most biomarkers and molecules do not support resonance enhancement, this work demonstrates that PPELN is a suitable template for high-sensitivity, nonresonant sensing applications.
机译:通过表面增强拉曼散射(SERS)进行的单分子检测是一种功能强大的光谱技术,在传感器开发领域颇受关注。优化基于SERS的传感器中使用的材料的一个重要方面是能够具有高密度的“热点”,从而将SERS灵敏度提高到单分子水平。通过在周期性质子交换的铌酸锂(PPELN)基板上通过电场定向自组装对金(Au)纳米粒子进行光沉积,为形成由紧密堆积的Au纳米粒子组成的有序微尺度特征提供了条件。产生的金纳米颗粒微结构阵列(微阵列)具有等离子体活性,并以超低浓度(<10〜(–9)–10〜(–13)M)支持非共振单分子SERS,激发功率密度<1×10〜( –3)W cm〜(–2)使用宽视场成像。该微阵列具有出色的SERS重现性,整个底物的强度变化小于7.5%。由于大多数生物标志物和分子不支持共振增强,因此这项工作证明PPELN是适用于高灵敏度,非共振传感应用的模板。

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