Key Lab of Nanodevices and Applications, Suzhou Institute of Nano-Tech and Nano-Bionics, Chinese Academy of Sciences (CAS), 215123, Suzhou, China.
Key Laboratory of Multifunctional Nanomaterials and Smart Systems, Chinese Academy of Sciences (CAS), 215123, Suzhou, China.
Nat Commun. 2019 Feb 8;10(1):678. doi: 10.1038/s41467-019-08656-6.
Electrochromic technology has been actively researched for displays, adjustable mirrors, smart windows, and other cutting-edge applications. However, it has never been proposed to overcome the critical problems in the field of surface-enhanced Raman scattering (SERS). Herein, we demonstrate a generic electrochromic strategy for ensuring the reproducibility and renewability of SERS substrates, which are both scientifically and technically important due to the great need for quantitative analysis, standardized production and low cost in SERS. This color-changing strategy is based on a unique quantitative relationship between the SERS signal amplification and the coloration degree within a certain range, in which the SERS activity of the substrate can be effectively inferred by judging the degree of color change. Our results may provide a first step toward the rational design of electrochromic SERS substrates with a high sensitivity, reproducibility, and renewability.
电致变色技术在显示器、可调反射镜、智能窗户和其他前沿应用领域得到了积极研究。然而,它从未被提议用于克服表面增强拉曼散射(SERS)领域的关键问题。在此,我们展示了一种通用的电致变色策略,用于确保 SERS 基底的重现性和可再生性,由于 SERS 分析中对定量分析、标准化生产和低成本的巨大需求,这两个特性在科学和技术上都很重要。这种变色策略基于 SERS 信号放大与一定范围内的着色程度之间的独特定量关系,通过判断颜色变化程度,可以有效地推断出基底的 SERS 活性。我们的结果可能为设计具有高灵敏度、重现性和可再生性的电致变色 SERS 基底提供了一个初步思路。