PEDOT沉积在柔性射频传感器制造中的作用

IF 2.3 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Giovanni Andrea Casula;Antonello Mascia;Enrico Mattana;Giacomo Muntoni;Giuseppe Sforazzini;Piero Cosseddu;Paolo Maxia;Giorgio Montisci
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引用次数: 0

摘要

本文探讨了将导电聚合物聚(3,4)-乙烯二氧噻吩(PEDOT)集成到高频(HF) RFID标签中,用于实时传感应用。通过将PEDOT建模为具有可变电导率的材料,该研究研究了三种沉积策略:部分替换金属痕迹,选择性应用于特定区域,以及全标签涂层。分析了PEDOT分子结构和沉积技术对传感器性能的影响,优化了传感器的功能。所提出的传感器具有成本效益,可扩展,并与现有的13.56 MHz RFID基础设施完全兼容。实验评估和数值模拟证实了其基于环境刺激精确调节标签频率响应的能力。关键应用包括物流、医疗保健、物联网系统和环境监测,实现先进的跟踪、温度完整性控制和可持续性。在初步模拟的基础上,这项工作进展到严格的实验验证,证明了有机半导体RFID传感器作为工业和商业环境中高灵敏度实时监控的变革性解决方案的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Role of PEDOT Deposition in the Fabrication of Flexible RF Sensors
This paper explores the integration of Poly(3,4)-ethylenedioxythiophene (PEDOT), a conductive polymer, into high-frequency (HF) RFID tags for real-time sensing applications. By modeling PEDOT as a material with variable conductivity, the study investigates three deposition strategies: partial replacement of metallic traces, selective application to specific regions, and full tag coating. The impact of PEDOT molecular organization and deposition technique on sensor performance is analyzed to optimize functionality. The proposed sensor is cost-effective, scalable, and fully compatible with existing 13.56 MHz RFID infrastructure. Experimental evaluations and numerical simulations confirm its ability to precisely modulate the tag frequency response based on environmental stimuli. Key applications include logistics, healthcare, IoT systems, and environmental monitoring, enabling advanced tracking, temperature integrity control, and sustainability. Building on preliminary simulations, this work advances to rigorous experimental validation, demonstrating the potential of organic semiconductor-based RFID sensors as a transformative solution for high-sensitivity, real-time monitoring in industrial and commercial settings.
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CiteScore
5.70
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