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Silver Nanoparticles Coated Zinc Oxide Nanorods Array as Superhydrophobic Substrate for the Amplified SERS Effect

机译:银纳米颗粒涂覆的氧化锌纳米棒阵列作为超疏水基质,可增强SERS效应

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摘要

A superhydrophobic substrate that combines the superhydrophobic condensation effect and high enhancement ability of silver nanoparticle coated zinc oxide nanorods array (Ag@2nO) is explored for surface enhanced Raman scattering (SERS). The effects of water contact angle and droplet volume on the final SERS signal intensity are also investigated for the first time. Our results indicate the superhydrophobic substrate could exhibit 3-fold signal enhancement more than the ordinary hydrophilic Ag@ZnO substrate due to the superhydrophobic condensation effect. This signal amplification effect is affected by the water contact angle and water droplet volume on the substrate, i.e., (1) the higher the contact angle is, the higher the SERS signal is; (2) the SERS intensity fluctuates as the droplet volume increases, and proper volume, not the largest one, should be chosen to achieve a stronger signal. Most importantly, this superhydrophobic substrate with high signal reproducibility is successfully applied to detect small molecules such as adenine and melamine, with the detection limits of 1 order of magnitude less than those on the hydrophilic Ag@ZnO substrate. It is expected this superhydrophobic SERS substrate can be widely used in the trace analysis in the future.
机译:为了表面增强拉曼散射(SERS),探索了一种具有超疏水凝聚作用和银纳米颗粒包覆的氧化锌纳米棒阵列(Ag @ 2nO)的高增强能力的超疏水基底。还首次研究了水接触角和液滴体积对最终SERS信号强度的影响。我们的结果表明,由于超疏水的缩合效应,超疏水的底物比普通的亲水性Ag @ ZnO底物能表现出三倍的信号增强。该信号放大效果受基板上的水接触角和水滴量的影响,即(1)接触角越大,SERS信号越高; (2)随着液滴体积的增加,SERS强度会发生波动,应选择适当的体积而不是最大体积,以获得更强的信号。最重要的是,这种具有高信号重现性的超疏水底物已成功地用于检测小分子,如腺嘌呤和三聚氰胺,其检测限比亲水性Ag @ ZnO底物的检测限小1个数量级。预计该超疏水SERS底物可在未来的痕量分析中广泛使用。

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