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使用芯片试纸传感器上的潜水式快速扫描电子顺磁共振对流体溶液中的溶解氧进行原位检测。

Operando detection of dissolved oxygen in fluid solution using a submersible rapid scan EPR on a chip dipstick sensor.

作者信息

McPeak Joseph E, Segantini Michele, Marcozzi Gianluca, Dona Irene, Künstner Silvio, Chu Anh, Kern Michal, Poncelet Martin, Driesschaert Benoit, Anders Jens, Lips Klaus

机构信息

Berlin Joint EPR Laboratory and EPR4Energy, Department Spins in Energy Conversion and Quantum Information Science (ASPIN), Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Berlin, Germany.

Department of Chemistry, Novo Nordisk Foundation Pulse EPR Center, University of Copenhagen, Copenhagen, Denmark.

出版信息

Sci Rep. 2025 Mar 21;15(1):9872. doi: 10.1038/s41598-025-93591-4.

Abstract

Electron paramagnetic resonance (EPR) is an accurate and efficient technique to probe unpaired electrons in many applications across materials science, chemistry, and biology. Dynamic processes are investigated using EPR; however, these applications are limited by the use of resonator-based spectrometers such that the entire process must be confined to the resonator. The EPR-on-a-chip (EPRoC) device circumvents this limitation by integrating the entire EPR spectrometer into a single microchip. In this approach, the coil of a voltage-controlled oscillator (VCO) is used as the microwave source and detector simultaneously, operating under a protective coating such that the device may be placed in the sample solution directly. Additionally, improvements in sensitivity via rapid scan EPR (RS-EPR/RS-EPRoC) increase the accessible applications where SNR per measurement time is the fundamental limit. The herein reported device combines a dipstick EPRoC sensor with the enhanced sensitivity of frequency-swept frequency modulated rapid scan to measure triarylmethyl (trityl, Ox071) oxygen-sensitive probes dissolved in aqueous solutions. EPR spectra of Ox071 solutions were recorded using the RS-EPRoC sensor while varying the oxygen concentration of the solution between normal atmosphere and after purging the solution with nitrogen gas. We demonstrate that EPRoC may be employed to monitor dissolved oxygen in fluid solution in an online fashion.

摘要

电子顺磁共振(EPR)是一种准确且高效的技术,可用于材料科学、化学和生物学等众多领域中探测未成对电子。EPR可用于研究动态过程;然而,这些应用受到基于谐振器的光谱仪的限制,以至于整个过程必须局限于谐振器内。片上EPR(EPRoC)装置通过将整个EPR光谱仪集成到单个微芯片中,克服了这一限制。在这种方法中,压控振荡器(VCO)的线圈同时用作微波源和探测器,在保护涂层下运行,这样该装置可以直接放置在样品溶液中。此外,通过快速扫描EPR(RS-EPR/RS-EPRoC)提高灵敏度,增加了可应用的范围,其中每次测量时间的信噪比是基本限制。本文报道的装置将试纸型EPRoC传感器与扫频调频快速扫描的增强灵敏度相结合,用于测量溶解在水溶液中的三芳基甲基(三苯甲基,Ox071)氧敏感探针。使用RS-EPRoC传感器记录Ox071溶液的EPR光谱,同时在正常大气条件下以及用氮气吹扫溶液后改变溶液的氧浓度。我们证明EPRoC可用于在线监测流体溶液中的溶解氧。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f6c/11928686/2f59b20904ab/41598_2025_93591_Fig1_HTML.jpg

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