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Flexible, stable and sensitive surface-enhanced Raman scattering of graphite/titanium-cotton substrate for conformal rapid food safety detection

机译:石墨/钛棉基材的柔性,稳定敏感的表面增强拉曼散射,用于保形快速食品安全检测

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摘要

Fabricating flexible, stable and highly reproducible surface-enhanced Raman scattering (SERS) active substrates is very important in furthering the development of practical SERS sensors. Nevertheless, the fabrication of such SERS substrates is rather challenging in processing conditions for both noble metal and semiconductor substrates. In this study, highly sensitive SERS detection is achieved by fabricating novel textile-based SERS substrates with a structure of graphite/titanium/cotton which are prepared by sputtering cotton fabric with titanium and graphite for different lengths of time at room temperature. The resultant samples show excellent SERS with an enhancement factor of 1.6 x 10(4), limit of detection of 4 x 10(-7) as well as outstanding flexibility. The optimal SERS active substrate in this study also shows promising application for conformal rapid detection in the field of food safety testing.
机译:制造柔性,稳定且高度可再现的表面增强拉曼散射(SERS)活性基板在进一步开发实用SERS传感器的发展方面非常重要。 然而,这种SERS基材的制造在贵金属和半导体基板的加工条件下相当具有挑战性。 在该研究中,通过制造具有石墨/钛/棉的结构的新型纺织品的SERS基材来实现高度敏感的SERs检测,该纺织品/钛/棉花通过在室温下以不同的时间溅射棉织物和石墨制备。 所得样品显示出优异的SERS,增强因子为1.6×10(4),检测限为4×10(-7),以及出色的灵活性。 本研究中最佳的SERS活性基质还显示有希望在食品安全测试领域的共形快速检测的有希望的应用。

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