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硅微通道驱动的拉曼散射增强,以改善金纳米棒作为用于单分子检测的表面增强拉曼散射(SERS)基底的功能。

Silicon Microchannel-Driven Raman Scattering Enhancement to Improve Gold Nanorod Functions as a SERS Substrate toward Single-Molecule Detection.

作者信息

Bär Jaciara, de Barros Anerise, de Camargo Davi H S, Pereira Mariane P, Merces Leandro, Shimizu Flavio Makoto, Sigoli Fernando A, Bufon Carlos César Bof, Mazali Italo Odone

机构信息

Laboratory of Functional Materials, Institute of Chemistry, University of Campinas-UNICAMP, 13083-970 Campinas, São Paulo, Brazil.

Brazilian Nanotechnology National Laboratory (LNNano), Brazilian Center for Research in Energy and Materials (CNPEM), Giuseppe Máximo Scolfaro 10000, Polo II de Alta Tecnologia, 13083-100 Campinas, São Paulo, Brazil.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 4;13(30):36482-36491. doi: 10.1021/acsami.1c08480. Epub 2021 Jul 21.

Abstract

The investigation of enhanced Raman signal effects and the preparation of high-quality, reliable surface-enhanced Raman scattering (SERS) substrates is still a hot topic in the SERS field. Herein, we report an effect based on the shape-induced enhanced Raman scattering (SIERS) to improve the action of gold nanorods (AuNRs) as a SERS substrate. Scattered electric field simulations reveal that bare V-shaped Si substrates exhibit spatially distributed interference patterns from the incident radiation used in the Raman experiment, resulting in constructive interference for an enhanced Raman signal. Experimental data show a 4.29 increase in Raman signal intensity for bare V-shaped Si microchannels when compared with flat Si substrates. The combination of V-shaped microchannels and uniform aggregates of AuNRs is the key feature to achieve detections in ultra-low concentrations, enabling reproducible SERS substrates having high performance and sensitivity. Besides SIERS effects, the geometric design of V-shaped microchannels also enables a "trap" to the molecule confinement and builds up an excellent electromagnetic field distribution by AuNR aggregates. The statistical projection of SERS spectra combined with the SIERS effect displayed a silhouette coefficient of 0.83, indicating attomolar (10 mol L) detection with the V-shaped Si microchannel.

摘要

增强拉曼信号效应的研究以及高质量、可靠的表面增强拉曼散射(SERS)基底的制备仍然是SERS领域的一个热门话题。在此,我们报道了一种基于形状诱导增强拉曼散射(SIERS)的效应,以改善金纳米棒(AuNRs)作为SERS基底的作用。散射电场模拟表明,裸露的V形硅基底在拉曼实验中对入射辐射呈现出空间分布的干涉图案,从而产生相长干涉以增强拉曼信号。实验数据表明,与平坦硅基底相比,裸露的V形硅微通道的拉曼信号强度提高了4.29倍。V形微通道与均匀聚集的AuNRs相结合是实现超低浓度检测的关键特征,可实现具有高性能和高灵敏度的可重复使用的SERS基底。除了SIERS效应外,V形微通道的几何设计还能够对分子进行“捕获”限制,并通过AuNR聚集体构建出优异的电磁场分布。结合SIERS效应的SERS光谱统计投影显示轮廓系数为0.83,表明使用V形硅微通道可实现阿托摩尔(10⁻¹⁸ mol/L)检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb4/8389530/92c50b395245/am1c08480_0008.jpg

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