Fu Hao, Liu Weiwei, Li Junqing, Wu Wenguang, Zhao Qian, Bao Haoming, Zhou Le, Zhu Shuyi, Kong Jinglin, Zhang Hongwen, Cai Weiping
Key Laboratory of Materials Physics, Institute of Solid State Physics, Hefei Institues of Physical Science (HFIPS), Chinese Academy of Sciences, Hefei 230031, China.
Science Island Branch of Graduate School, University of Science and Technology of China, Hefei 230026, China.
Nanomaterials (Basel). 2022 Jul 10;12(14):2359. doi: 10.3390/nano12142359.
Surface-enhanced Raman scattering (SERS) provides an unprecedented opportunity for fingerprinting identification and trace-level detection in chemistry, biomedicine, materials, and so on. Although great efforts have been devoted to fabricating sensitive plasmonic nanomaterials, it is still challenging to batch-produce a SERS substrate with high sensitivity, good reproducibility, and perfect recyclability. Here, we describe a facile fabrication of three-dimensional (3D) hierarchical Au/CuS nanocomposites, in which high-density Au nanotips enable highly SERS-active sensing, and the well-defined microflower (MF) geometry produces perfect signal reproducibility (RSD < 5%) for large laser spot excitations (>50 μm2), which is particularly suitable for practical on-site detection with a handheld Raman spectrometer. In addition, a self-cleaning ability of this Au/CuS Schottky junction photocatalyst under sunlight irradiation allows complete removal of the adsorbed analytes, realizing perfect regeneration of the SERS substrates over many cycles. The mass-production, ultra-sensitive, high-reproducibility, and fast-recyclability features of hierarchical Au/CuS MFs greatly facilitate cost-effective and field SERS detection of trace analytes in practice.
表面增强拉曼散射(SERS)为化学、生物医学、材料等领域的指纹识别和痕量检测提供了前所未有的机遇。尽管人们在制备灵敏的等离子体纳米材料方面付出了巨大努力,但批量生产具有高灵敏度、良好重现性和完美可回收性的SERS基底仍然具有挑战性。在此,我们描述了一种三维(3D)分级Au/CuS纳米复合材料的简便制备方法,其中高密度的金纳米尖端实现了高SERS活性传感,而明确的微花(MF)结构对于大激光光斑激发(>50μm2)产生了完美的信号重现性(RSD<5%),这特别适用于使用手持式拉曼光谱仪进行实际现场检测。此外,这种Au/CuS肖特基结光催化剂在阳光照射下的自清洁能力能够完全去除吸附的分析物,实现SERS基底在多个循环中的完美再生。分级Au/CuS微花的大规模生产、超灵敏、高重现性和快速可回收性特点极大地促进了实际中痕量分析物的经济高效现场SERS检测。