Department of Materials Science and Engineering, Research Institute of Advanced Materials (RIAM), Seoul National University, 1 Gwanak Road, Seoul, 151-742, Republic of Korea.
Center for Nanoparticle Research, Institute for Basic Science (IBS), Seoul National University, 1 Gwanak Road, Seoul, 151-742, Republic of Korea.
Adv Mater. 2018 Oct;30(42):e1704682. doi: 10.1002/adma.201704682. Epub 2018 Mar 27.
Organic rechargeable batteries, which use organics as electrodes, are excellent candidates for next-generation energy storage systems because they offer design flexibility due to the rich chemistry of organics while being eco-friendly and potentially cost efficient. However, their widespread usage is limited by intrinsic problems such as poor electronic conductivity, easy dissolution into liquid electrolytes, and low volumetric energy density. New types of organic electrode materials with various redox centers or molecular structures have been developed over the past few decades. Moreover, research aimed at enhancing electrochemical properties via chemical tuning has been at the forefront of organic rechargeable batteries research in recent years, leading to significant progress in their performance. Here, an overview of the current developments of organic rechargeable batteries is presented, with a brief history of research in this field. Various strategies for improving organic electrode materials are discussed with respect to tuning intrinsic properties of organics using molecular modification and optimizing their properties at the electrode level. A comprehensive understanding of the progress in organic electrode materials is provided along with the fundamental science governing their performance in rechargeable batteries thus a guide is presented to the optimal design strategies to improve the electrochemical performance for next-generation battery systems.
有机可充电池使用有机物作为电极,是下一代储能系统的优秀候选者,因为它们具有丰富的有机物化学性质,设计灵活,同时具有环保性和潜在的成本效益。然而,由于固有问题的限制,如电子电导率差、容易溶解在液体电解质中以及体积能量密度低,它们的广泛应用受到限制。在过去的几十年中,已经开发出了具有各种氧化还原中心或分子结构的新型有机电极材料。此外,近年来,通过化学调谐来提高电化学性能的研究一直处于有机可充电池研究的前沿,这使得它们的性能取得了显著进展。本文概述了有机可充电池的最新发展情况,并简要介绍了该领域的研究历史。讨论了各种改进有机电极材料的策略,包括使用分子修饰来调整有机物的固有性质,以及在电极层面优化其性能。提供了对有机电极材料进展的全面理解,以及控制其在可充电池中性能的基础科学,从而为改善下一代电池系统的电化学性能提供了优化设计策略的指导。