He Xiaoming, Chen Ling, Baumgartner Thomas
Key Laboratory of Applied Surface and Colloid Chemistry (Ministry of Education), School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an 710062, P.R. China.
Department of Chemistry, York University, 4700 Keele Street, Toronto, Ontario M3J 1P3, Canada.
ACS Appl Mater Interfaces. 2024 Sep 18;16(37):48689-48705. doi: 10.1021/acsami.3c09856. Epub 2023 Aug 16.
Efficient electrochemical energy storage has been identified as one of the most pressing needs for a sustainable energy economy. Inorganic battery materials have traditionally been the center of attention, with the current state-of-the-art device being the lithium-ion battery. Recent pursuits have led to organic materials for their beneficial chemistry and properties, but suitable materials for organic batteries are still few and far between. This Spotlight on Applications highlights two intriguing pyridinium-based organic materials, modified viologens and carbonylpyridiniums, that have both been successfully employed in electrode materials for solid-state Li-ion-type organic batteries (LOBs). We first provide an overview of the inherent electronic properties of each building block and how they can effectively be modified while maintaining or enhancing their desirable electrochemical properties for practical applications. We then describe a range of different material designs for a battery context and their application in various organic device settings, with some examples showing competitive performance with traditional Li-ion batteries.
高效的电化学储能已被视为可持续能源经济最迫切的需求之一。无机电池材料一直是关注的焦点,目前最先进的设备是锂离子电池。最近的研究促使人们关注有机材料,因为它们具有有益的化学性质和特性,但适用于有机电池的材料仍然很少。本应用聚焦突出了两种有趣的基于吡啶鎓的有机材料,即改性紫精和羰基吡啶鎓,它们都已成功应用于固态锂离子型有机电池(LOB)的电极材料中。我们首先概述了每个结构单元的固有电子特性,以及如何在保持或增强其实际应用所需的电化学特性的同时有效地对其进行改性。然后,我们描述了一系列适用于电池的不同材料设计及其在各种有机器件中的应用,一些例子显示出与传统锂离子电池相比具有竞争力的性能。