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Flexible and smart fibers decorated with Ag nanoflowers for highly active surface-enhanced Raman scattering detection

机译:柔性纤维纤维装饰着AG纳米轧机,用于高活跃的表面增强拉曼散射检测

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摘要

Surface-enhanced Raman scattering (SERS) is a useful detection technique for molecule recognition. However, the relative difficulty in producing low-cost highly active SERS substrates in large quantities hinders their practical implementation. Here, a fast and facile approach using a one-step solution-phase synthesis is proposed to directly achieve highly active fibrous SERS substrates by uniformly and densely growing silver nanoflowers on reduced graphene oxide fibers within several minutes. Attributed to the abundance of nanogaps throughout the silver nanoflower network, the fibrous substrate exhibits superior stability and high sensitivity in the SERS detection of Rhodamine 6G, with a detection limit of 10(-12) M. Importantly, the proposed method is energy efficient and can work well at room temperature and manually stirring conditions based on naturally shed hair and plant fibers. Due to the advantages of high-volume production, the processing cost is greatly reduced to approximately $0.008 for each substrate. This newly designed approach may greatly improve the practical application of SERS detection in environmental monitoring, medicine and food safety, especially in resource-limited environments.
机译:表面增强拉曼散射(SERS)是分子识别的有用检测技术。然而,大量生产低成本高活性SERS基材的相对困难阻碍了它们的实际实现。这里,提出了一种快速和容易的方法,使用一步溶液相合成的方法通过在几分钟内均匀和致密地生长在还原的石墨烯氧化物纤维上的银纳米锭剂中直接实现高活性纤维锂基质。归因于整个银纳米辊网络的丰度的纳米体,纤维基材在罗丹明6G的SERS检测中表现出优异的稳定性和高灵敏度,检测限为10(-12)M.重要的是,所提出的方法是节能的可以在室温下工作,并根据天然流脱发的头发和植物纤维手动搅拌条件。由于高批量生产的优点,对每个基板的加工成本大大降至约0.008美元。这种新设计的方法可以大大改善SERS检测在环境监测,医学和食品安全方面的实际应用,特别是在资源限制环境中。

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