Zhu Qijian, Fu Danfei, Ji Qing, Yang Zhongjie
Department of Resources and Environment, Moutai Institute, Renhuai 564500, China.
School of Chemistry and Materials, Guizhou Normal University, Guiyang 550025, China.
Molecules. 2024 May 27;29(11):2522. doi: 10.3390/molecules29112522.
Macrocycles composed of diverse aromatic or nonaromatic structures, such as cyclodextrins (CDs), calixarenes (CAs), cucurbiturils (CBs), and pillararenes (PAs), have garnered significant attention due to their inherent advantages of possessing cavity structures, unique functional groups, and facile modification. Due to these distinctive features enabling them to facilitate ion insertion and extraction, form crosslinked porous structures, offer multiple redox-active sites, and engage in host-guest interactions, macrocycles have made huge contributions to electrochemical energy storage and conversion (EES/EEC). Here, we have summarized the recent advancements and challenges in the utilization of CDs, CAs, CBs, and PAs as well as other novel macrocycles applied in EES/EEC devices. The molecular structure, properties, and modification strategies are discussed along with the corresponding energy density, specific capacity, and cycling life properties in detail. Finally, crucial limitations and future research directions pertaining to these macrocycles in electrochemical energy storage and conversion are addressed. It is hoped that this review is able to inspire interest and enthusiasm in researchers to investigate macrocycles and promote their applications in EES/EEC.
由多种芳香族或非芳香族结构组成的大环化合物,如环糊精(CDs)、杯芳烃(CAs)、葫芦脲(CBs)和柱芳烃(PAs),因其具有空腔结构、独特官能团和易于修饰等固有优势而备受关注。由于这些独特特性使它们能够促进离子插入和萃取、形成交联多孔结构、提供多个氧化还原活性位点并参与主客体相互作用,大环化合物在电化学能量存储和转换(EES/EEC)方面做出了巨大贡献。在此,我们总结了环糊精、杯芳烃、葫芦脲和柱芳烃以及其他应用于EES/EEC器件的新型大环化合物在利用方面的最新进展和挑战。详细讨论了分子结构、性质和修饰策略以及相应的能量密度、比容量和循环寿命性能。最后,阐述了这些大环化合物在电化学能量存储和转换方面的关键局限性和未来研究方向。希望本综述能够激发研究人员对大环化合物的兴趣和热情,并促进其在EES/EEC中的应用。