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A Reproducible SERS Substrate Based on Electrostatically Assisted APTES-Functionalized Surface-Assembly of Gold Nanostars

机译:基于金纳米星的静电辅助APTES-功能化表面组装的可复制SERS基底。

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A SERS active gold nanostar layer on the surface of ITO glass slip has been prepared by a low-cost electrostatically assisted APTES-functionalized surface-assembly method for SERS analysis. The two-dimensional morphology of the SERS substrate was examined by scanning electron microscopy. Comparative analysis revealed that the optical characteristics and SERS efficiency of these substrates varied as a function of nanostar morphology. It was found that the substrate assembled with the longest branches of nanostars generated the best SERS efficiency, whether the excitation source is 785 or 633 nm. The potential use of these substrates in detection applications was also investigated by using Nile blue A and Rhodamine 6G. The detection limits are 5 X 10~(-11) M and 1 X 10~(-9) M, respectively, when using the 785 nm excitation source. Apart from this high enhancement effect, the substrate here also shows extremely good reproducibility at the same time. All of these indicate that gold nanostars are a very good structure for SERS substrate assembly.
机译:通过用于SERS分析的低成本静电辅助APTES功能化表面组装方法已经制备了ITO玻璃粉浆表面上的SERS活性金纳米星层。通过扫描电子显微镜检查SERS基底的二维形态。比较分析表明,这些底物的光学特性和SERS效率随纳米星形态的变化而变化。结果发现,无论激发源是785 nm还是633 nm,组装有最长的纳米星分支的基板都能产生最佳的SERS效率。还通过使用尼罗蓝A和若丹明6G研究了这些底物在检测应用中的潜在用途。当使用785 nm激发源时,检测极限分别为5 X 10〜(-11)M和1 X 10〜(-9)M。除了这种高增强效果外,此处的基材同时还显示出极佳的重现性。所有这些表明,金纳米星是用于SERS衬底组装的非常好的结构。

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