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Highly stable and active SERS substrates with Ag-Ti alloy nanorods

机译:高度稳定和活跃的ser基质

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Silver (Ag) nanostructures have been intensively studied as one of the most promising surface-enhanced Raman scattering (SERS) substrates; however, their practical applications have been limited by the chemical instability with regard to oxidation, sulfuration and etching of Ag. Therefore, designing and fabricating highly active Ag nanostructures with high SERS stability has been recognized as an important research area. Herein, Ag-Ti alloy nanorods (Ag-Ti alloy NRs) are designed and fabricated by the oblique angle deposition (OAD) method to protect Ag. Taking advantage of the higher chemical activity of Ti compared with Ag, Ti can be sacrificed against oxidation and corrosion, protecting Ag in harsh environments, further ensuring long-term stability of the SERS substrates. It is demonstrated that a 2 Ti (in atoms) substrate possesses extremely high SERS sensitivity, and is stable both in air for more than 1 month and in 10 mM HNO3 solution for 1 hour. The alloy nanostructure provides a new opportunity to achieve highly sensitive and highly stable SERS substrates.
机译:银纳米结构(Ag)集中作为最有前途的研究表面增强拉曼散射(ser)基板;有限的化学不稳定关于氧化、硫化和腐蚀Ag)。与高ser高活性Ag纳米结构已经被认为是一个重要的稳定研究领域。(Ag-Ti合金NRs)设计和制造斜角沉积(外形尺寸)方法保护Ag)。钛的化学活动与Ag)相比,钛是牺牲了对氧化和腐蚀,进一步保护Ag)在严酷的环境下确保长期稳定的爵士基板。原子)衬底具有极高的爵士敏感,是稳定的在空气中比1月和10毫米硝酸解决方案1小时。实现高度敏感和机会高度稳定的ser基质。

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