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Controllable Fabrication of Au-Coated AFM Probes via a Wet-Chemistry Procedure

机译:通过湿化学程序可控地制备金包被的原子力显微镜探针

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摘要

Tip-enhanced Raman spectroscopy (TERS), which offers a spatial resolution far beyond the limitations of the optical diffraction and detection sensitivity down to a single molecular level, has become one of the powerful techniques applied in current nanoscience and technology. However, the excellent performance of a TERS system is very much dependent on the quality of metallized probes used in TERS characterization. Thus, how to prepare higher-quality probes plays a vital role in the development and application of TERS technique. In this work, one simple wet-chemistry procedure was designed to fabricate atomic force microscopy-based TERS (AFM-TERS) probes. Through the controlled growth of a gold film on a commercial silicon AFM probe, TERS probes with different apex diameters were prepared successfully. A series of TERS results indicated that the probes with the apex size of 50~60 nm had the maximum TERS enhancement, and the Raman enhancement factor was in the range of 106 to 107. Compared with those prepared by other fabrication methods, our TERS probes fabricated by this wet-chemistry method have the virtues of good stability, high reproducibility, and strong enhancement effect.
机译:尖端增强拉曼光谱(TERS)提供的空间分辨率远远超出了光学衍射的限制,并且检测灵敏度低至单个分子水平,已成为当前纳米科学和技术中应用的强大技术之一。但是,TERS系统的出色性能在很大程度上取决于用于TERS表征的金属化探针的质量。因此,如何制备更高质量的探针在TERS技术的发展和应用中起着至关重要的作用。在这项工作中,设计了一种简单的湿化学程序来制造基于原子力显微镜的TERS(AFM-TERS)探针。通过在商用硅AFM探针上控制金膜的生长,成功制备了具有不同顶点直径的TERS探针。一系列TERS结果表明,顶端尺寸为50〜60nm的探针具有最大的TERS增强,拉曼增强因子在10 6 至10 7 < / sup>。与其他制造方法相比,采用湿化学法制造的TERS探针具有稳定性好,重现性高,增强效果强的优点。

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