Aqueous Organic Batteries Using the Proton as a Charge Carrier

材料科学 阳极 纳米技术 阴极 电化学 储能 电池(电) 质子 电极 化学 功率(物理) 物理化学 量子力学 物理
作者
Mangmang Shi,Pratteek Das,Zhong‐Shuai Wu,Tie‐gen Liu,Xiaoyan Zhang
出处
期刊:Advanced Materials [Wiley]
卷期号:35 (42) 被引量:21
标识
DOI:10.1002/adma.202302199
摘要

Benefiting from the merits of low cost, nonflammability, and high operational safety, aqueous rechargeable batteries have emerged as promising candidates for large-scale energy-storage applications. Among various metal-ion/non-metallic charge carriers, the proton (H+ ) as a charge carrier possesses numerous unique properties such as fast proton diffusion dynamics, a low molar mass, and a small hydrated ion radius, which endow aqueous proton batteries (APBs) with a salient rate capability, a long-term life span, and an excellent low-temperature electrochemical performance. In addition, redox-active organic molecules, with the advantages of structural diversity, rich proton-storage sites, and abundant resources, are considered attractive electrode materials for APBs. However, the charge-storage and transport mechanisms of organic electrodes in APBs are still in their infancy. Therefore, finding suitable electrode materials and uncovering the H+ -storage mechanisms are significant for the application of organic materials in APBs. Herein, the latest research progress on organic materials, such as small molecules and polymers for APBs, is reviewed. Furthermore, a comprehensive summary and evaluation of APBs employing organic electrodes as anode and/or cathode is provided, especially regarding their low-temperature and high-power performances, along with systematic discussions for guiding the rational design and the construction of APBs based on organic electrodes.
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