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具有可调几何结构的刷状金纳米线锚定g-CN纳米片用于气态分子的超灵敏和可再生表面增强拉曼散射检测

Brush-like gold nanowires-anchored g-CN nanosheets with tunable geometry for ultrasensitive and regenerative SERS detection of gaseous molecules.

作者信息

Xu Lanxin, Ma Jiali, Chen Dong, Gu Chenjie, Zhou Jun, Jiang Tao

机构信息

Department of Microelectronic Science and Engineering, School of Physical Science and Technology, Ningbo University, Ningbo 315211, Zhejiang, PR China.

Department of Microelectronic Science and Engineering, School of Physical Science and Technology, Ningbo University, Ningbo 315211, Zhejiang, PR China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2022 Dec 15;283:121732. doi: 10.1016/j.saa.2022.121732. Epub 2022 Aug 10.

Abstract

Strapping plasmonic substrate with a reliable ability to anchor molecules and achieve reproducible result provides trustworthy opportunities for flourishing surface-enhanced Raman scattering (SERS) technique. Herein, a facile controllable in-situ anisotropic growth strategy was exploited to anchor gold nanowires (Au NWs) onto two-dimensional g-CN nanosheets (g-CN/Au NWs), facilitating a sensitive and recyclable SERS sensor for gaseous analytes. Benefiting from the attractive enrichment effect of the brush-like surface formed by numerous small Au NWs as well as their rich nanotips-mediated enhancement capability, the hybrid substrate showed an outstanding performance in SERS-based detection of trace 4-Aminothiophenol (4-ATP) molecules, demonstrating a monitoring limitation down to 10 M even in atmosphere. Satisfyingly, under visible light illumination, the efficient green photocatalytic ability derived from the g-CN supporting matrix rendered reusable capability for the substrate, whose SERS signal was kept at a persistent high level throughout 6 cycles. Attributed to the narrow line width of SERS spectrum, the 4-ATP assay under the interference of 2-naphthalenethiol (2-NAT) was acquired in gas phase and the dependable recovery rates from 85.4 to 93.9% were confirmed as well. Thanks to the intriguing features including excellent sensitivity and recyclability, the g-CN/Au NWs substrate proposed here will pave the way toward the potential application of SERS technique in multiplexed gaseous detection.

摘要

用具有可靠分子锚定能力并能实现可重复结果的等离子体基底为蓬勃发展的表面增强拉曼散射(SERS)技术提供了可靠的机会。在此,利用一种简便可控的原位各向异性生长策略将金纳米线(Au NWs)锚定在二维g-CN纳米片(g-CN/Au NWs)上,从而构建了一种用于气态分析物的灵敏且可回收的SERS传感器。得益于众多小Au NWs形成的刷状表面具有的诱人富集效应及其丰富的纳米尖端介导的增强能力,该混合基底在基于SERS的痕量4-氨基硫酚(4-ATP)分子检测中表现出卓越性能,即使在大气环境中也能实现低至10⁻¹² M的监测限。令人满意的是,在可见光照射下,g-CN支撑基质具有的高效绿色光催化能力使该基底具备可重复使用性,其SERS信号在6个循环中始终保持在较高水平。由于SERS光谱的线宽较窄,在气相中获得了2-萘硫酚(2-NAT)干扰下的4-ATP检测结果,并且确认了85.4%至93.9%的可靠回收率。得益于包括出色的灵敏度和可回收性等引人关注的特性,本文提出的g-CN/Au NWs基底将为SERS技术在多重气态检测中的潜在应用铺平道路。

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