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多孔 PDMS-ZnO 可穿戴气体传感器用于丙酮生物标志物检测和呼吸分析。

Porous PDMS-ZnO Wearable Gas Sensor for Acetone Biomarker Detection and Breath Analysis.

机构信息

Shenzhen Intern ational Graduate School, Tsinghua University, Shenzhen 518055, China.

出版信息

ACS Appl Mater Interfaces. 2024 Nov 13;16(45):62436-62445. doi: 10.1021/acsami.4c16209. Epub 2024 Oct 31.

Abstract

In response to the growing demand for global health monitoring, we report a nonintrusive health detection method using a compact, conformal wearable ultraviolet (UV)-assisted gas-sensing system based on an intrinsically flexible porous polydimethylsiloxane (PDMS)-zinc oxide (ZnO) composite layer (PPZL) for the breath acetone (BrAce) detection and breath event analysis. The enhanced acetone response is attributed to the synergistic effect of UV irradiation and the high surface area of the porous structure, which also improves the mechanical robustness. The UV-assisted wearable sensor reliably detects acetone concentrations ranging from 1 to 100 ppm at room temperature under 4.05 mW/cm UV intensity, even under mechanical strains such as a bending radius of 5 mm and 60% tensile strain. It accurately analyzes different breathing patterns (12-20 breaths per minute) and BrAce concentrations, maintaining a stable performance over 20 days with less than 5% signal degradation. The sensor exhibits response and recovery times of average 110-150 and 130-180 s, respectively, and maintains a consistent 3 ppm BrAce response under varying humidity levels up to 70% relative humidity, ensuring accurate detection of BrAce concentrations during real-world breath tests. Additionally, the sensor targets only specific gases, and the sensor's selectivity is not a key concern. This flexible acetone gas sensor offers a portable solution for health management and a fabrication method for designing flexible metal oxide materials.

摘要

针对日益增长的全球健康监测需求,我们报告了一种非侵入式健康检测方法,使用紧凑、顺应性的可穿戴紫外(UV)辅助气体传感系统,该系统基于固有灵活的多孔聚二甲基硅氧烷(PDMS)-氧化锌(ZnO)复合层(PPZL),用于呼吸丙酮(BrAce)检测和呼吸事件分析。增强的丙酮响应归因于 UV 照射和多孔结构的高表面积的协同效应,这也提高了机械强度。在 4.05 mW/cm 的 UV 强度下,即使在 5 毫米的弯曲半径和 60%的拉伸应变等机械应变下,UV 辅助可穿戴传感器也能可靠地检测 1 至 100 ppm 范围内的丙酮浓度,在 20 天内保持稳定的性能,信号衰减小于 5%。该传感器准确分析了不同的呼吸模式(每分钟 12-20 次呼吸)和 BrAce 浓度,在高达 70%相对湿度的不同湿度水平下,响应和恢复时间的平均值分别为 110-150 和 130-180 s,保持一致的 3 ppm BrAce 响应,确保在实际呼吸测试中准确检测 BrAce 浓度。此外,传感器仅针对特定气体,传感器的选择性不是关键问题。这种灵活的丙酮气体传感器为健康管理提供了一种便携式解决方案,并为设计灵活的金属氧化物材料提供了一种制造方法。

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