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使用金纳米粒子结合的聚苯乙烯微粒对微流体流动中的表面增强拉曼散射信号进行统计量化。

Statistical quantification of SERS signals in microfluidic flow using AuNP-bound polystyrene microparticles.

作者信息

Mingcong Shu, Miyagawa Akihisa, Ishizaka Shoji

机构信息

Department of Chemistry, Graduate School of Advanced Science and Engineering, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima, 739-8526, Japan.

出版信息

Anal Sci. 2025 Sep 9. doi: 10.1007/s44211-025-00846-1.

Abstract

Surface-enhanced Raman scattering (SERS) is a powerful analytical technique; however, its quantitative application has been limited by the instability of substrates and significant signal fluctuations. In this study, we demonstrated that 4-aminobenzenethiol (4-ATP) can be quantitatively detected through statistical analysis of SERS signal intensity distributions obtained using citrate-stabilized AuNPs, biotin-functionalized AuNPs, and gold nanoparticle (AuNP)-bound polystyrene (PS) microparticles. Raman spectra obtained in bulk aqueous solution under static conditions showed that the detection sensitivity of 4-ATP using AuNP-bound PS microparticles was approximately twice that achieved with citrate-stabilized AuNPs or biotin-modified AuNPs. Furthermore, the detection sensitivity of 4-ATP was enhanced by introducing AuNP-bound PS microparticles into a microfluidic chip and delivering an aqueous 4-ATP solution under controlled flow conditions. Analysis of the flow rate dependence of SERS signal intensity revealed that the optimal detection sensitivity for 4-ATP was achieved at a flow rate of 0.66 μL·min⁻, with a corresponding detection limit of 1.9 μM under these conditions. These results demonstrate that AuNP-bound PS microparticles introduced into the microfluidic chip serve as efficient SERS substrates, enabling highly sensitive and quantitative detection under flow conditions.

摘要

表面增强拉曼散射(SERS)是一种强大的分析技术;然而,其定量应用受到基底不稳定性和显著信号波动的限制。在本研究中,我们证明通过对使用柠檬酸盐稳定的金纳米颗粒(AuNPs)、生物素功能化的AuNPs以及与金纳米颗粒(AuNP)结合的聚苯乙烯(PS)微球获得的SERS信号强度分布进行统计分析,可以定量检测4-氨基苯硫酚(4-ATP)。在静态条件下在大量水溶液中获得的拉曼光谱表明,使用与AuNP结合的PS微球对4-ATP的检测灵敏度约为使用柠檬酸盐稳定的AuNPs或生物素修饰的AuNPs时的两倍。此外,通过将与AuNP结合的PS微球引入微流控芯片并在受控流动条件下输送4-ATP水溶液,提高了对4-ATP的检测灵敏度。对SERS信号强度的流速依赖性分析表明,在流速为0.66 μL·min⁻时实现了对4-ATP的最佳检测灵敏度,在这些条件下相应的检测限为1.9 μM。这些结果表明,引入微流控芯片中的与AuNP结合的PS微球可作为有效的SERS基底,能够在流动条件下进行高灵敏度和定量检测。

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