← 返回
揭示磁场在电化学储能中的潜力:综述
Unravelling the potential of magnetic field in electrochemical energy storage: A review
| 作者 | Sarita Yadav · Yogesh Sharm |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 383 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | SiC器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | The underlying mechanisms of magnetic fields in Electrochemical Energy Storage (EES) are discussed. |
语言:
中文摘要
储能器件是推动便携式电子设备、固定式储能系统以及电动汽车发展的核心。为了进一步提升这些器件的效率、能量密度和功率容量,亟需可规模化且高效的端到端解决方案。已有大量研究表明,作为非接触式能量源的磁场已成为增强储能器件电化学性能的一种有力工具。在某些情况下,磁场会引起电极材料在结构、形貌和比表面积方面的显著变化;而在其他情况下,磁化电极的局部磁环境则可调节其储能特性。此外,由磁场驱动的作用力能够改变电极材料的本征磁性,并调控电极/电解质界面处的电子传输与离子迁移行为。一些文献还报道了磁场在废弃电极材料回收过程中的关键作用。因此,磁场的作用不容忽视,应对其进行系统深入的研究。尽管已有研究证实磁场在提升电化学性能方面具有显著贡献,但此类依赖磁场现象的内在机理仍缺乏充分的理解与足够的研究关注。本综述旨在全面探讨从电极制备到电池、超级电容器及燃料电池电化学性能全过程中的磁场效应,阐述磁场作用于电化学储能的基本原理,总结近年来的研究进展,并分析当前面临的技术挑战与未来发展前景。我们希望通过本文引起学术界对这一基础性跨学科课题的关注,以期催生新型概念和技术的发展。
English Abstract
Abstract Energy storage devices are the backbone to revolutionize portable electronics, stationary storage, and electric vehicles. To further improve the efficiency, energy, and power capacity of these devices, scalable and effective approaches providing end-to-end solutions are most desirable. As evidenced by several reports, magnetic field as non-contact energy has emerged as a powerful tool to boost the electrochemical performance of energy storage devices. In some cases, the magnetic field is responsible for substantial changes in the structure, morphology, and surface area of electrode materials while in others, the local magnetic environment of the magnetized electrode tunes the storage properties. Further, the magnetic field-driven forces are capable of changing the intrinsic magnetism of electrode materials, controlling the electronic transport and ionic movement at the interface of electrode/electrolyte. Some literature reports the crucial role of magnetic fields in the recycling of waste electrode materials. Hence, the role of a magnetic field cannot be ignored and should be comprehensively studied. Although studies have shown the remarkable contribution of magnetic fields in improving electrochemical performance, the origin of such magnetic field-dependent behavior still lacks adequate understanding and research interest. This review aims to explore the insights of the magnetic field effects from electrode fabrication to electrochemical performance for batteries, supercapacitors , and fuel cells. The fundamentals of the underlying phenomenon of magnetic field on electrochemical energy storage are discussed, followed by the recent advancements with the current challenges and prospects. We tried to bring the attention of the research community towards this fundamental interdisciplinary topic that may bring the development of novel concepts.
S
SunView 深度解读
该磁场调控技术对阳光电源储能系统具有重要应用价值。在ST系列PCS和PowerTitan储能产品中,磁场可优化电极材料形貌与比表面积,提升电池能量密度和功率性能。对于SiC功率器件应用,磁场调控电子输运特性可降低开关损耗。此外,磁场辅助的废旧电极材料回收技术可支撑储能系统全生命周期管理,与iSolarCloud平台的预测性维护形成协同。该跨学科研究为储能系统电化学性能突破和SiC器件优化提供了创新思路,值得在PowerTitan等大型储能项目中探索工程化应用潜力。