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首页> 外文期刊>Nanoscale >A facile wet-chemistry approach to engineer an Au-based SERS substrate and enhance sensitivity down to ppb-level detection
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A facile wet-chemistry approach to engineer an Au-based SERS substrate and enhance sensitivity down to ppb-level detection

机译:一个灵巧的湿化学方法工程师一名Au-based ser基质,提高灵敏度到ppb-level检测

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摘要

A two-dimensional flexible surface-enhanced Raman scattering (SERS) filter substrate provides an alternative strategy for the highly sensitive portable detection of various toxic molecules and biomaterials. Herein, we developed a solid-liquid interfacial reduction reaction to post-engineer a solid Au nanostructure surface on filter paper to improve the SERS effect. Among four reductants (ascorbic acid, L-dopamine, hydroquinone (HQ), and formaldehyde), HQ possessed a larger oxidation overpotential and facilitated homogeneous growth, forming small Au branch-structure nanoparticles from HAuCl4 solution. Due to the surface effect by exposing abundant -OH groups and intrinsic aromatic rings from TNA/HQ on nano-gold, the SERS effect on positively charged analytes near the plasmonic Au surface was enhanced, while forming a protective layer against severe water interruption. The resulting SERS substrate with branched nano-gold provided several SERS-enhanced sites, increased the enhancement by more than 6 times compared to original SERS sensing, and displayed a 1.4-7.4 x 10(5) analytical enhancement factor, which leads to a limit of detection down to several ppb. Less than 6% of deviation in the SERS intensity at different sensing sites was observed. We successfully improved the primary SERS substrate using a high overpotential reductant. Owing to its soft and flexible properties, the paper-based SERS substrate can be used conveniently in different sizes, pasting on curved materials, detecting additives in fish, and preventing the coffee-ring effect, showing high practicality and potential commercial value in the future.
机译:一个二维弹性表面增强拉曼底物提供了一个散射(ser)过滤器替代战略高度敏感各种有毒分子和便携式检测生物材料。界面post-engineer一个还原反应固体Au纳米结构表面在滤纸提高ser的效果。(抗坏血酸、L-dopamine对苯二酚(总部)和甲醛),总部拥有一个更大的氧化过电压和促进均匀生长,形成小盟从HAuCl4 branch-structure纳米颗粒解决方案。丰富的-哦组和固有的芳香环从TNA /总部nano-gold, ser的效果带正电的分析物在电浆盟附近表面增强,而形成一种保护层对严重水中断。结果与支nano-gold ser衬底提供几个SERS-enhanced网站,增加相比提高了6倍多原始ser传感,并显示一个1.4 - -7.4 x10(5)分析增强因子,导致检测极限下降到十亿分之几。超过6%的偏差在ser强度不同的观察感知网站。成功地提高了主ser衬底使用一个高的过电压还原剂。它的柔软和灵活的特性,基于纸张的可以方便地用于ser衬底不同大小,粘贴在弯曲的材料,检测食品添加剂在鱼类和防止coffee-ring效应,表现出高实用性和在未来潜在的商业价值。

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