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用于先进传感的激光诱导石墨烯:应用综述

Laser-Induced Graphene for Advanced Sensing: Comprehensive Review of Applications.

作者信息

Aftab Sikandar, Koyyada Ganesh, Mukhtar Maria, Kabir Fahmid, Nazir Ghazanfar, Memon Sufyan Ali, Aslam Muhammad, Assiri Mohammed A, Kim Jae Hong

机构信息

Department of Semiconductor Systems Engineering and Clean Energy, Sejong University, Seoul 05006, Republic of Korea.

Department of Artificial Intelligence and Robotics, Sejong University, Seoul 05006, Republic of Korea.

出版信息

ACS Sens. 2024 Sep 27;9(9):4536-4554. doi: 10.1021/acssensors.4c01717. Epub 2024 Sep 16.

Abstract

Laser-induced graphene (LIG) and Laser-scribed graphene (LSG) are both advanced materials with significant potential in various applications, particularly in the field of sustainable sensors. The practical uses of LIG (LSG), which include gas detection, biological process monitoring, strain assessment, and environmental variable tracking, are thoroughly examined in this review paper. Its tunable characteristics distinguish LIG (LSG), which is developed from accurate laser beam modulation on polymeric substrates, and they are essential in advancing sensing technologies in many applications. The recent advances in LIG (LSG) applications include energy storage, biosensing, and electronics by steadily advancing efficiency and versatility. The remarkable flexibility of LIG (LSG) and its transformative potential in regard to sensor manufacturing and utilization are highlighted in this manuscript. Moreover, it thoroughly examines the various fabrication methods used in LIG (LSG) production, highlighting precision and adaptability. This review navigates the difficulties that are encountered in regard to implementing LIG sensors and looks ahead to future developments that will propel the industry forward. This paper provides a comprehensive summary of the latest research in LIG (LSG) and elucidates this innovative material's advanced and sustainable elements.

摘要

激光诱导石墨烯(LIG)和激光刻写石墨烯(LSG)都是具有巨大潜力的先进材料,在各种应用中,特别是在可持续传感器领域。本文全面探讨了LIG(LSG)的实际用途,包括气体检测、生物过程监测、应变评估和环境变量跟踪。LIG(LSG)由在聚合物基底上精确的激光束调制形成,其可调谐特性使其独具特色,这对于推动许多应用中的传感技术至关重要。LIG(LSG)应用的最新进展包括通过不断提高效率和多功能性,在能量存储、生物传感和电子领域的应用。本文强调了LIG(LSG)卓越的柔韧性及其在传感器制造和应用方面的变革潜力。此外,本文全面研究了LIG(LSG)生产中使用的各种制造方法,突出了其精确性和适应性。本综述探讨了在实施LIG传感器时遇到的困难,并展望了推动该行业向前发展的未来发展方向。本文全面总结了LIG(LSG)的最新研究,并阐明了这种创新材料的先进和可持续元素。

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