Sharma Simran, Mondal Titash
Rubber Technology Centre, Indian Institute of Technology, Kharagpur, 721302, India.
Small. 2025 Jul;21(27):e2501722. doi: 10.1002/smll.202501722. Epub 2025 May 9.
Flexible sensors are uplifting many application segments with their versatility and ease of fabrication and integration. The amalgamation of functional fillers and polymers advances the field of flexible sensors. Various fillers are currently utilized to develop polymer nanocomposites for sensing applications. However, graphene-polymer nanocomposites find widespread applicability in flexible sensing applications due to the excellent properties of graphene, such as high electrical and thermal conductivity, 2D (2 dimensional) layered structure, and high aspect ratio. This review explores the potential of graphene-polymer nanocomposites as various sensors, including physical, chemical, electrochemical, triboelectric, and moisture-electric generator-based sensors. The technological advancements in developing these sensors are thoroughly discussed, followed by the various underlying sensing mechanisms. Also, the broad application areas where these sensors can be utilized are reviewed and discussed. The review critically assesses the advancements in the established sensing technologies based on graphene-polymer composites. Also, it discusses the challenges and new avenues that are yet to be addressed and explored, paving the way to develop next-generation flexible sensors for advanced applications.
柔性传感器凭借其多功能性以及易于制造和集成的特点,正在提升许多应用领域。功能填料与聚合物的融合推动了柔性传感器领域的发展。目前,各种填料被用于开发用于传感应用的聚合物纳米复合材料。然而,由于石墨烯具有诸如高电导率和热导率、二维(2D)层状结构以及高纵横比等优异性能,石墨烯 - 聚合物纳米复合材料在柔性传感应用中具有广泛的适用性。本综述探讨了石墨烯 - 聚合物纳米复合材料作为各种传感器的潜力,包括物理传感器、化学传感器、电化学传感器、摩擦电传感器以及基于湿度 - 发电机的传感器。全面讨论了开发这些传感器的技术进展,随后阐述了各种潜在的传感机制。此外,还对这些传感器可应用的广泛领域进行了综述和讨论。本综述批判性地评估了基于石墨烯 - 聚合物复合材料的现有传感技术的进展。同时,它还讨论了尚未解决和探索的挑战与新途径,为开发用于先进应用的下一代柔性传感器铺平道路。