Mansha Muhammad, Ayub Asif, Khan Ibad Ali, Ali Shahid, Alzahrani Atif Saeed, Khan Majad, Arshad Muhammad, Rauf Abdul, Akram Khan Safyan
Interdisciplinary Research Center for Hydrogen and Energy Storage, King Fahd University of Petroleum and Minerals, Dhahran, 31261, Saudi Arabia.
Department of Chemistry, Islamia University Bahawalpur, 63100, Punjab, Pakistan.
Chem Rec. 2024 Jan;24(1):e202300284. doi: 10.1002/tcr.202300284. Epub 2023 Nov 27.
In recent years, aqueous organic redox flow batteries (AORFBs) have attracted considerable attention due to advancements in grid-level energy storage capacity research. These batteries offer remarkable benefits, including outstanding capacity retention, excellent cell performance, high energy density, and cost-effectiveness. The organic electrolytes in AORFBs exhibit adjustable redox potentials and tunable solubilities in water. Previously, various types of organic electrolytes, such as quinones, organometallic complexes, viologens, redox-active polymers, and organic salts, were extensively investigated for their electrochemical performance and stability. This study presents an overview of recently published novel organic electrolytes for AORFBs in acidic, alkaline, and neutral environments. Furthermore, it delves into the current status, challenges, and prospects of AORFBs, highlighting different strategies to overcome these challenges, with special emphasis placed on their design, composition, functionalities, and cost. A brief techno-economic analysis of various aqueous RFBs is also outlined, considering their potential scalability and integration with renewable energy systems.
近年来,水系有机氧化还原液流电池(AORFBs)因在电网级储能容量研究方面的进展而备受关注。这些电池具有显著优势,包括出色的容量保持率、优异的电池性能、高能量密度和成本效益。AORFBs中的有机电解质在水中表现出可调节的氧化还原电位和可调的溶解度。此前,人们对各种类型的有机电解质,如醌类、有机金属配合物、紫精、氧化还原活性聚合物和有机盐等的电化学性能和稳定性进行了广泛研究。本研究概述了最近发表的用于酸性、碱性和中性环境中AORFBs的新型有机电解质。此外,还深入探讨了AORFBs的现状、挑战和前景,强调了克服这些挑战的不同策略,特别关注其设计、组成、功能和成本。还概述了各种水系液流电池的简要技术经济分析,考虑了它们的潜在可扩展性以及与可再生能源系统的集成。