基于激光诱导石墨烯的固体接触离子选择电极的见解:长期连续测量的关键性能参数

Insights into solid-contact ion-selective electrodes based on laser-induced graphene: Key performance parameters for long-term and continuous measurements.

作者信息

Soares Raquel R A, Milião Gustavo L, Pola Cícero C, Jing Dapeng, Opare-Addo Jemima, Smith Emily, Claussen Jonathan C, Gomes Carmen L

机构信息

Department of Mechanical Engineering, Iowa State University, Ames, IA, 50011, USA.

Department of Food Science and Human Nutrition, Iowa State University, Ames, IA, 50011, USA.

出版信息

Mikrochim Acta. 2024 Sep 23;191(10):615. doi: 10.1007/s00604-024-06672-y.

Abstract

This work aims to serve as a comprehensive guide to properly characterize solid-contact ion-selective electrodes (SC-ISEs) for long-term use as they advance toward calibration-free sensors. The lack of well-defined SC-ISE performance criteria limits the ability to compare results and track progress in the field. Laser-induced graphene (LIG) is a rapid and scalable method that, by adjusting the CO laser parameters, can create LIG substrates with tunable surface properties, including wettability, surface chemistry, and morphology. Herein, we fabricate laser-induced graphene (LIG) solid-contact electrodes using different laser settings and subsequently convert them into ion-selective sensors using a potassium-selective membrane. We measure the aforementioned tunable surface properties and correlate them with resultant low-frequency capacitance and water layer formation in an effort to pinpoint their effects on the sensitivity (Nernstian response), reproducibility (E°' variation), and potential stability of the LIG-based SC-ISEs. More specifically, we demonstrate that the surface wettability of the LIG substrate, which can be tuned by controlling the lasing parameters, can be modified to exhibit hydrophobic (contact angle > 90°) and even highly hydrophobic surfaces (contact angle ≈ 130°) to help reduce sensor drift. Recommendations are also provided to ensure proper and robust characterization of SC-ISEs for long-term and continuous measurements. Ultimately, we believe that a comprehensive understanding of the correlation between LIG tunable surface properties and SC-ISE performance can be used to improve the electrochemical behavior and stability of SC-ISEs designed with a wide range of materials beyond LIG.

摘要

这项工作旨在作为一份全面指南,用于正确表征固体接触离子选择性电极(SC-ISEs),因为它们正朝着免校准传感器发展,可长期使用。缺乏明确的SC-ISE性能标准限制了比较结果和跟踪该领域进展的能力。激光诱导石墨烯(LIG)是一种快速且可扩展的方法,通过调整CO激光参数,可以创建具有可调表面性质的LIG基底,包括润湿性、表面化学性质和形态。在此,我们使用不同的激光设置制造激光诱导石墨烯(LIG)固体接触电极,随后使用钾选择性膜将其转化为离子选择性传感器。我们测量上述可调表面性质,并将它们与由此产生的低频电容和水层形成相关联,以确定它们对基于LIG的SC-ISEs的灵敏度(能斯特响应)、重现性(E°'变化)和电位稳定性的影响。更具体地说,我们证明了可以通过控制激光参数来调节LIG基底的表面润湿性,使其表现出疏水(接触角>90°)甚至高度疏水的表面(接触角≈130°),以帮助减少传感器漂移。还提供了一些建议,以确保对SC-ISEs进行适当且稳健的表征,用于长期和连续测量。最终,我们相信,全面理解LIG可调表面性质与SC-ISE性能之间的相关性,可用于改善由LIG以外的多种材料设计的SC-ISEs的电化学行为和稳定性。

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