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基于脉冲激光烧蚀石墨烯/二硫化钼叉指电极的柔性pH传感器的制备与表征

Fabrication and Characterization of Flexible pH Sensors Based on Pulsed Laser-Ablated Graphene/MoS Interdigitated Electrodes.

作者信息

Chen Zhaochi, Liu Chengche, Tran Minh-Quang

机构信息

Graduate Institute of Biomedical Optomechatronics, Taipei Medical University, Taipei 230, Taiwan.

Department of Physiology and Biophysics, Graduate Institute of Physiology, National Defense Medical Center, Taipei 114, Taiwan.

出版信息

Nanomaterials (Basel). 2025 Jul 18;15(14):1115. doi: 10.3390/nano15141115.

Abstract

Point-of-care (POC) diagnostic technologies have become essential for the real-time monitoring and management of chronic wounds, where maintaining a moist environment and controlling pH levels are critical for effective healing. In this study, a flexible pH sensor based on a graphene/molybdenum disulfide (graphene/MoS) composite interdigitated electrode (IDE) structure was fabricated using pulsed laser ablation. The pH sensor, with an active area of 30 mm × 30 mm, exhibited good adhesion to the polyethylene terephthalate (PET) substrate and maintained structural integrity under repeated bending cycles. Precise ablation was achieved under optimized conditions of 4.35 J/cm laser fluence, a repetition rate of 300 kHz, and a scanning speed of 500 mm/s, enabling the formation of defect-free IDE arrays without substrate damage. The influence of laser processing parameters on the surface morphology, electrical conductivity, and wettability of the composite thin films was systematically characterized. The fabricated pH sensor exhibited high sensitivity (~4.7% change in current per pH unit) across the pH 2-10 range, rapid response within ~5.2 s, and excellent mechanical stability under 100 bending cycles with negligible performance degradation. Moreover, the sensor retained > 95% of its stable sensitivity after 7 days of ambient storage. Furthermore, the pH response behavior was evaluated for electrode structures with different pitches, demonstrating that structural design parameters critically impact sensing performance. These results offer valuable insights into the scalable fabrication of flexible, wearable pH sensors, with promising applications in wound monitoring and personalized healthcare systems.

摘要

即时护理(POC)诊断技术对于慢性伤口的实时监测和管理至关重要,在慢性伤口护理中,保持湿润环境和控制pH值水平对于有效愈合至关重要。在本研究中,采用脉冲激光烧蚀制备了一种基于石墨烯/二硫化钼(graphene/MoS₂)复合叉指电极(IDE)结构的柔性pH传感器。该pH传感器的有效面积为30 mm×30 mm,对聚对苯二甲酸乙二醇酯(PET)基板具有良好的附着力,并且在反复弯曲循环下保持结构完整性。在4.35 J/cm的激光能量密度、300 kHz的重复频率和500 mm/s的扫描速度的优化条件下实现了精确烧蚀,能够形成无缺陷的IDE阵列且不会损坏基板。系统地表征了激光加工参数对复合薄膜的表面形貌、电导率和润湿性的影响。所制备的pH传感器在pH 2 - 10范围内表现出高灵敏度(每pH单位电流变化约4.7%),在约5.2 s内快速响应,并且在100次弯曲循环下具有出色的机械稳定性,性能降解可忽略不计。此外,在环境储存7天后,该传感器仍保持其稳定灵敏度的> 95%。此外,还对具有不同间距的电极结构的pH响应行为进行了评估,结果表明结构设计参数对传感性能有至关重要的影响。这些结果为柔性、可穿戴pH传感器的可扩展制造提供了有价值的见解,在伤口监测和个性化医疗系统中具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/939d/12299791/a1cf945b2c93/nanomaterials-15-01115-g001.jpg

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