首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Shaping Gold Nanostar Electric Fields for Surface-Enhanced Raman Spectroscopy Enhancement via Silica Coating and Selective Etching
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Shaping Gold Nanostar Electric Fields for Surface-Enhanced Raman Spectroscopy Enhancement via Silica Coating and Selective Etching

机译:塑造金纳米星电场,以通过二氧化硅涂层和选择性刻蚀增强表面增强拉曼光谱

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摘要

The application of gold nanostars in direct and indirect surface-enhanced raman spectroscopy (SERS) sensing has significantly grown in the past few years, mainly because of the particles' excellent field enhancement properties. However, experimental demonstrations correlating SERS signal enhancements to specific morphology features of the nanostars are still scarce, primarily because of the complexity of the nanostar morphology itself: Herein, we have addressed this fundmental issue by synthesizing surfactant-free gold nanostars, coating them with a uniform silica layer, and then etching the silica away selectively with NaBH4 to expose increasing amounts of the metallic surface. We have then functionalized the nanoparticles with a Raman active molecule, aminothiophenol (ATP), and compared the resulting SERS spectra with those obtained on surfactant free stars functionalized with ATP. Through comparison of the experimental results with the electric field intensities and distributions calculated via finite element simulations, we have observed a strong correlation between the Raman signal enhancements obtained experimentally and the heat losses calculated on three-dimensional representations of the same nanostructures. We believe that our model could be used to predict the effectiveness of nanostars at enhancing SERS signals based on their overall morphology, even when thorough experimental characterization is lacking.
机译:在过去的几年中,金纳米星在直接和间接表面增强拉曼光谱(SERS)传感中的应用显着增长,这主要是由于粒子具有出色的场增强特性。但是,仍缺乏将SERS信号增强与纳米星特定形态特征相关联的实验性演示,这主要是由于纳米星形态本身本身的复杂性:在这里,我们已经通过合成不含表面活性剂的金纳米星来解决了这一基本问题,均匀的二氧化硅层,然后用NaBH4选择性地蚀刻掉二氧化硅,以暴露越来越多的金属表面。然后,我们用拉曼活性分子氨基硫酚(ATP)对纳米粒子进行了功能化,并将所得SERS光谱与在经ATP功能化的无表面活性剂的恒星上获得的光谱进行了比较。通过将实验结果与通过有限元模拟计算出的电场强度和分布进行比较,我们发现实验获得的拉曼信号增强与相同纳米结构的三维表示所计算出的热损失之间存在很强的相关性。我们认为,即使缺乏全面的实验表征,我们的模型也可用于基于其整体形态预测纳米星增强SERS信号的有效性。

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