Althumayri Majed, Das Ritu, Banavath Ramu, Beker Levent, Achim Alin M, Ceylan Koydemir Hatice
Department of Biomedical Engineering, Texas A&M University, College Station, TX, 77843, USA.
Center for Remote Health Technologies and Systems, Texas A&M Engineering Experiment Station, College Station, TX, 77843, USA.
Adv Sci (Weinh). 2024 Oct;11(38):e2405099. doi: 10.1002/advs.202405099. Epub 2024 Aug 9.
This review examines the recent advancements in transparent electrodes and their crucial role in multimodal sensing technologies. Transparent electrodes, notable for their optical transparency and electrical conductivity, are revolutionizing sensors by enabling the simultaneous detection of diverse physical, chemical, and biological signals. Materials like graphene, carbon nanotubes, and conductive polymers, which offer a balance between optical transparency, electrical conductivity, and mechanical flexibility, are at the forefront of this development. These electrodes are integral in various applications, from healthcare to solar cell technologies, enhancing sensor performance in complex environments. The paper addresses challenges in applying these electrodes, such as the need for mechanical flexibility, high optoelectronic performance, and biocompatibility. It explores new materials and innovative techniques to overcome these hurdles, aiming to broaden the capabilities of multimodal sensing devices. The review provides a comparative analysis of different transparent electrode materials, discussing their applications and the ongoing development of novel electrode systems for multimodal sensing. This exploration offers insights into future advancements in transparent electrodes, highlighting their transformative potential in bioelectronics and multimodal sensing technologies.
本综述探讨了透明电极的最新进展及其在多模态传感技术中的关键作用。透明电极以其光学透明性和导电性而闻名,通过实现对多种物理、化学和生物信号的同时检测,正在彻底改变传感器技术。诸如石墨烯、碳纳米管和导电聚合物等材料,在光学透明性、导电性和机械柔韧性之间取得了平衡,处于这一发展的前沿。这些电极在从医疗保健到太阳能电池技术等各种应用中不可或缺,可在复杂环境中提高传感器性能。本文论述了应用这些电极时面临的挑战,如对机械柔韧性、高光电性能和生物相容性的需求。它探索了新材料和创新技术以克服这些障碍,旨在拓宽多模态传感设备的功能。该综述对不同的透明电极材料进行了比较分析,讨论了它们的应用以及用于多模态传感的新型电极系统的持续发展。这一探索为透明电极的未来进展提供了见解,突出了它们在生物电子学和多模态传感技术中的变革潜力。