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用于不可逆可视化氢气传感的指示剂染料和催化纳米粒子。

Indicator Dyes and Catalytic Nanoparticles for Irreversible Visual Hydrogen Sensing.

机构信息

Department of Chemistry, University of Cincinnati, Cincinnati, Ohio 45221-0172, United States.

出版信息

Anal Chem. 2020 Aug 4;92(15):10651-10658. doi: 10.1021/acs.analchem.0c01769. Epub 2020 Jul 16.

Abstract

Using ultraviolet-visible (UV-vis) absorption spectroscopy, we have tested the reactivity of various indicator molecules combined with catalytic bimetallic gold-palladium nanoparticles (Au-Pd NPs) in solution for an irreversible and visual response to H. Our aim was to identify the most suitable indicator/Au-Pd NP system for the future development of a thin, wearable, and visual H sensor for noninvasive monitoring of Mg-implant biodegradation in research and clinical settings with fast response time. The indicators studied were bromothymol blue, methyl red, and resazurin, and the reactions of each system with H in the presence of Au-Pd NPs caused visual and irreversible color changes that were concluded to proceed via redox processes. The resazurin/Au-Pd NP system was deemed best-suited for our research objectives because (1) this system had the fastest color change response to H at levels relevant to Mg-implant biodegradation compared to the other indicator/Au-Pd NP systems tested, (2) the observed redox chemistry with H followed well-understood reaction pathways reported in the literature, and (3) the redox products were nontoxic and appropriate for medical applications. Studying the effects of the concentrations of H, Au-Pd NPs, and resazurin on the color change response time within the resazurin/Au-Pd NP system revealed that the H-sensing elements can be optimized to achieve a faster or slower color change with H by varying the relative amounts of resazurin and Au-Pd NPs in solution. The results from this study are significant for future optical H sensor design.

摘要

利用紫外-可见(UV-vis)吸收光谱法,我们测试了各种指示剂分子与催化双金属金钯纳米粒子(Au-Pd NPs)在溶液中的反应活性,以实现对 H 的不可逆和可视化响应。我们的目的是确定最适合的指示剂/Au-Pd NP 体系,用于未来开发一种薄型、可穿戴和可视化的 H 传感器,用于在研究和临床环境中非侵入性监测 Mg 植入物的生物降解,具有快速响应时间。研究的指示剂为溴百里酚蓝、甲基红和 Resazurin,每个系统在 Au-Pd NPs 存在下与 H 的反应导致可见的和不可逆的颜色变化,结论是通过氧化还原过程进行的。Resazurin/Au-Pd NP 系统被认为最适合我们的研究目标,因为 (1) 与其他测试的指示剂/Au-Pd NP 系统相比,该系统在与 Mg 植入物生物降解相关的水平上对 H 具有最快的颜色变化响应速度,(2) 与 H 观察到的氧化还原化学遵循文献中报道的已知反应途径,以及 (3) 氧化还原产物无毒,适合医学应用。研究 H、Au-Pd NPs 和 Resazurin 的浓度对 Resazurin/Au-Pd NP 系统中颜色变化响应时间的影响表明,可以通过改变溶液中 Resazurin 和 Au-Pd NPs 的相对量来优化 H 感测元件,以实现更快或更慢的与 H 的颜色变化。这项研究的结果对未来的光学 H 传感器设计具有重要意义。

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