首页> 外文期刊>Analytical chemistry >Ag Nanoparticles Decorated Cactus-Like Ag Dendrites/Si Nanoneedles as Highly Efficient 3D Surface-Enhanced Raman Scattering Substrates toward Sensitive Sensing
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Ag Nanoparticles Decorated Cactus-Like Ag Dendrites/Si Nanoneedles as Highly Efficient 3D Surface-Enhanced Raman Scattering Substrates toward Sensitive Sensing

机译:Ag纳米粒子将仙人掌状的Ag树突状晶体/ Si Nanoneedles装饰为朝向敏感传感的高效3D表面增强拉曼散射基板。

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Surface-enhanced Raman scattering (SERS) has been considered as a promising sensing technique to detect low-level analytes. However, its practical application was hindered owing to the lack of uniform SERS substrates for ultrasensitive and reproducible assay. Herein, inspired by the natural cactus structure, we developed a cactus-like 3D nanostructure with uniform and high-density hotspots for highly efficient SERS sensing by both grafting the silicon nanoneedles onto Ag dendrites and subsequent decoration with Ag nanopartides. The hierarchical scaffolds and high-density hotspots throughout the whole substrate result in great amplification of SERS signal. A high Raman enhancement factor of crystal violet up to 6.6 X 10(7) was achieved. Using malachite green (MG) as a model target, the fabricated SERS substrates exhibited good reproducibility (RSD similar to 9.3%) and pushed the detection limit down to 10(-13) M with a wide linear range of 10(-12) M to 10(-7) M. Excellent selectivity was also demonstrated by facilely distinguishing MG from its derivative, some organics, and coexistent metal ions. Finally, the practicality and reliability of the 3D SERS substrates were confirmed by the quantitative analysis of spiked MG in environmental water with high recoveries (91.2% to 109.6%). By virtue of the excellent performance (good reproducibility, high sensitivity, and selectivity), the cactus-like 3D SERS substrate has great potential to become a versatile sensing platform in environmental monitoring, food safety, and medical diagnostics.
机译:表面增强拉曼散射(SERS)被认为是检测低含量分析物的一种有前途的传感技术。但是,由于缺乏用于超灵敏和可重复测定的均匀SERS底物,其实际应用受到了阻碍。在这里,受天然仙人掌结构的启发,我们开发了一种具有均匀且高密度热点的类似仙人掌的3D纳米结构,可通过将硅纳米针接枝到Ag树突上并随后用Ag纳米粒子进行装饰来实现高效的SERS传感。整个基底上的分层支架和高密度热点导致SERS信号的极大放大。获得了高达6.6 X 10(7)的结晶紫高拉曼增强因子。使用孔雀石绿(MG)作为模型目标,制造的SERS基板显示出良好的重现性(RSD类似于9.3%),并且将检测限降低到10(-13)M,线性范围为10(-12)M到10(-7)M。通过将MG与它的衍生物,某些有机物和共存的金属离子区分开来,也证明了优异的选择性。最后,通过对高回收率(91.2%至109.6%)的环境水中的加标MG进行定量分析,确认了3D SERS基板的实用性和可靠性。凭借出色的性能(良好的重现性,高灵敏度和选择性),类似仙人掌的3D SERS基板具有巨大的潜力,可以成为环境监测,食品安全和医疗诊断中的多功能传感平台。

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