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基于氧化铼的pH传感器在较低的沉积后退火温度下具有优异的物理化学和传感特性。

Excellent physicochemical and sensing characteristics of a Re O based pH sensor at low post-deposition annealing temperature.

作者信息

Das Munmun, Chakraborty Titisha, Lei Kin Fong, Lin Chan Yu, Kao Chyuan Haur

机构信息

Department of Electronic Engineering, Chang Gung University 259 Wen-Hwa 1st Road, Kwei-Shan Tao-Yuan 333 Taiwan Republic of China.

Biomedical Engineering, Chang Gung University Taoyuan Taiwan.

出版信息

RSC Adv. 2022 May 6;12(22):13774-13782. doi: 10.1039/d2ra01177h. eCollection 2022 May 5.

Abstract

pH monitoring in clinical assessment is pivotal as pH imbalance significantly influences the physiological and extracellular functions of the human body. Metal oxide based pH sensors, a promising alternative to bulky pH electrodes, mostly require complex fabrication, high-temperature post-deposition treatment, and high expenses that inhibit their practical applicability. So, there is still room to develop a straightforward and cost-effective metal oxide based pH sensor comprising high sensitivity and reliability. In this report, a novel solution-processed and low-temperature annealed (220 °C) mixed-valence (vii/vi) oxide of rhenium (Re O ) was applied in an electrolyte-insulator-semiconductor (EIS) structure. The annealing effect on morphological, structural, and compositional properties was scrutinized by physical and chemical characterizations. The post-annealed Re O exhibited a high pH sensitivity (57.3 mV pH, = 0.99), a lower hysteresis (4.7 mV), and a reduced drift rate (1.7 mV h) compared to the as-prepared sample for an analytically acceptable pH range (2-12) along with good stability and reproducibility. The magnified sensing performance originated due to the valence state of Re from Re to Re attributed to each electron transfer for a single H ion. The device showed high selectivity for H ions, which was confirmed by the interference study with other relevant ions. The feasibility of the sensor was verified by measuring the device in real samples. Hence, the ease-of-fabrication and notable sensing performance of the proposed sensor endorsed its implementation for diagnosing pH-related diseases.

摘要

临床评估中的pH监测至关重要,因为pH失衡会显著影响人体的生理和细胞外功能。基于金属氧化物的pH传感器是笨重的pH电极的一种有前景的替代方案,但大多需要复杂的制造工艺、高温沉积后处理以及高昂的成本,这限制了它们的实际应用。因此,开发一种简单且经济高效、具有高灵敏度和可靠性的基于金属氧化物的pH传感器仍有空间。在本报告中,一种新型的溶液处理和低温退火(220°C)的铼混合价态(vii/vi)氧化物(Re₂O₇)被应用于电解质-绝缘体-半导体(EIS)结构中。通过物理和化学表征仔细研究了退火对形态、结构和组成性质的影响。与制备好的样品相比,退火后的Re₂O₇在分析可接受的pH范围(2-12)内表现出高pH灵敏度(57.3 mV/pH,R² = 0.99)、较低的滞后现象(4.7 mV)和降低的漂移率(1.7 mV/h),同时具有良好的稳定性和重现性。放大的传感性能源于铼的价态从Re⁶⁺变为Re⁵⁺,这归因于单个H⁺离子的每次电子转移。该器件对H⁺离子表现出高选择性,这通过与其他相关离子的干扰研究得到证实。通过在实际样品中测量该器件验证了传感器的可行性。因此,所提出的传感器易于制造且具有显著的传感性能,支持其用于诊断与pH相关疾病的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/724f/9074847/3bf3d7b47d24/d2ra01177h-f1.jpg

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