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用于电化学和表面增强拉曼散射传感的高表面积纸质金电极的简单且低成本制备

Simple and Inexpensive Fabrication of High Surface-Area Paper-Based Gold Electrodes for Electrochemical and Surface-Enhanced Raman Scattering Sensing.

作者信息

González-Martínez Eduardo, Rekas Adrianna, Moran-Mirabal Jose

机构信息

Department of Chemistry and Chemical Biology, McMaster University, Hamilton, ON L8S 4M1, Canada.

School of Biomedical Engineering, McMaster University, Hamilton, ON L8S 4M1, Canada.

出版信息

ACS Appl Mater Interfaces. 2023 Nov 29;15(47):55183-55192. doi: 10.1021/acsami.3c15224. Epub 2023 Nov 16.

Abstract

Paper has emerged as an excellent alternative to create environmentally benign disposable electrochemical sensing devices. The critical step to fabricating electrochemical sensors is making paper conductive. In this work, paper-based electrodes with a high electroactive surface area (ESA) were fabricated using a simple electroless deposition technique. The polymerization time of a polydopamine adhesion layer and the gold salt concentration during the electroless deposition step were optimized to obtain uniformly conductive paper-based electrodes. The optimization of these fabrication parameters was key to obtaining the highest ESA possible. Roughening factors () of 7.2 and 2.3 were obtained when cyclic voltammetry was done in sulfuric acid and potassium ferricyanide, respectively, demonstrating a surface prone to fast electron transfer. As a proof of concept, mercury detection was done through anodic stripping, achieving a limit of quantification (LOQ) of 0.9 ppb. By changing the metal deposition conditions, the roughness of the metalized papers could also be tuned for their use as surface-enhanced Raman scattering (SERS) sensors. Metallized papers with the highest SERS signal for thiophenol detection yielded a LOQ of 10 ppb. We anticipate that this method of fabricating nanostructured paper-based electrodes can accelerate the development of simple, cost-effective, and highly sensitive electrochemical and SERS sensing platforms.

摘要

纸张已成为制造环境友好型一次性电化学传感装置的绝佳替代品。制造电化学传感器的关键步骤是使纸张具有导电性。在这项工作中,采用简单的化学沉积技术制备了具有高电活性表面积(ESA)的纸质电极。优化了聚多巴胺粘附层的聚合时间和化学沉积步骤中的金盐浓度,以获得均匀导电的纸质电极。这些制造参数的优化是获得尽可能高的ESA的关键。在硫酸和铁氰化钾中进行循环伏安法时,分别获得了7.2和2.3的粗糙度因子(),表明该表面易于快速电子转移。作为概念验证,通过阳极溶出法进行汞检测,实现了0.9 ppb的定量限(LOQ)。通过改变金属沉积条件,还可以调整金属化纸张的粗糙度,以用作表面增强拉曼散射(SERS)传感器。用于检测苯硫酚的具有最高SERS信号的金属化纸张的LOQ为10 ppb。我们预计,这种制造纳米结构纸质电极的方法可以加速简单、经济高效且高灵敏度的电化学和SERS传感平台的开发。

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