Abdou Ahmed Abdou Elsehsah Khaled, Ahmad Noorden Zulkarnain, Mat Saman Norhafezaidi
Institute of High Voltage and High Current, Faculty of Electrical Engineering, Universiti Teknologi Malaysia, 81310, Johor Bahru, Johor, Malaysia.
Heliyon. 2024 Aug 30;10(17):e37071. doi: 10.1016/j.heliyon.2024.e37071. eCollection 2024 Sep 15.
Supercapacitors present a compelling alternative to conventional batteries, offering rapid energy storage and high power density. Despite their advantages, they typically fall short in energy density compared to traditional batteries, primarily due to limitations in electrode materials. Graphene Aerogels (GA) have emerged as a promising solution to enhance supercapacitor performance because of their unique properties, such as high surface area and excellent conductivity. This systematic review provides a comprehensive analysis of recent advancements in GA technology, focusing on their synthesis methods and applications in supercapacitors. It highlights significant improvements that GA can bring to Electric Double-Layer Capacitors (EDLCs), pseudocapacitors, and hybrid supercapacitors. Additionally, the review explores GA's potential for enhancing electric generators and integrating into flexible, wearable technologies. Future research directions are emphasised, particularly regarding GA's potential applications in waste management and environmental protection. The review was conducted through a thorough literature search, prioritising peer-reviewed sources related to GA synthesis and supercapacitor applications. Methodological quality and potential biases of the included studies were assessed using principles similar to the Cochrane Risk of Bias tool. Thematic analysis was employed to synthesise findings and identify key trends and challenges. Limitations such as potential biases and methodological variations are discussed. Overall, this review highlights the technological prospects of GA and provides guidance for future research in supercapacitor development and applications.
超级电容器是传统电池的一种极具吸引力的替代方案,具有快速储能和高功率密度的特点。尽管具有这些优势,但与传统电池相比,它们的能量密度通常较低,主要原因是电极材料存在局限性。石墨烯气凝胶(GA)因其独特的性能,如高表面积和优异的导电性,已成为提高超级电容器性能的一种有前途的解决方案。本系统综述对GA技术的最新进展进行了全面分析,重点关注其合成方法及其在超级电容器中的应用。它突出了GA能给双电层电容器(EDLC)、赝电容器和混合超级电容器带来的显著改进。此外,该综述还探讨了GA在增强发电机以及集成到柔性可穿戴技术方面的潜力。强调了未来的研究方向,特别是GA在废物管理和环境保护方面的潜在应用。该综述通过全面的文献检索进行,优先选择与GA合成和超级电容器应用相关的同行评审来源。使用与Cochrane偏倚风险工具类似的原则评估纳入研究的方法学质量和潜在偏倚。采用主题分析来综合研究结果并确定关键趋势和挑战。讨论了潜在偏倚和方法学差异等局限性。总体而言,本综述突出了GA的技术前景,并为超级电容器开发和应用的未来研究提供了指导。