Yan Mengdan, Qin Yuchen, Wang Lixia, Song Meirong, Han Dandan, Jin Qiu, Zhao Shiju, Zhao Miaomiao, Li Zhou, Wang Xinyang, Meng Lei, Wang Xiaopeng
College of Science, Henan Agricultural University, Zhengzhou 450001, China.
Nanomaterials (Basel). 2022 Mar 11;12(6):930. doi: 10.3390/nano12060930.
Compared with currently prevailing Li-ion technologies, sodium-ion energy storage devices play a supremely important role in grid-scale storage due to the advantages of rich abundance and low cost of sodium resources. As one of the crucial components of the sodium-ion battery and sodium-ion capacitor, electrode materials based on biomass-derived carbons have attracted enormous attention in the past few years owing to their excellent performance, inherent structural advantages, cost-effectiveness, renewability, etc. Here, a systematic summary of recent progress on various biomass-derived carbons used for sodium-ion energy storage (e.g., sodium-ion storage principle, the classification of bio-microstructure) is presented. Current research on the design principles of the structure and composition of biomass-derived carbons for improving sodium-ion storage will be highlighted. The prospects and challenges related to this will also be discussed. This review attempts to present a comprehensive account of the recent progress and design principle of biomass-derived carbons as sodium-ion storage materials and provide guidance in future rational tailoring of biomass-derived carbons.
与目前流行的锂离子技术相比,钠离子储能装置因其钠资源丰富、成本低的优势,在电网规模储能中发挥着极其重要的作用。作为钠离子电池和钠离子电容器的关键部件之一,基于生物质衍生碳的电极材料因其优异的性能、固有的结构优势、成本效益、可再生性等,在过去几年中受到了广泛关注。在此,本文对用于钠离子储能的各种生物质衍生碳的最新进展(如钠离子存储原理、生物微观结构分类)进行了系统总结。将重点介绍目前关于生物质衍生碳的结构和组成设计原则以改善钠离子存储的研究。还将讨论与此相关的前景和挑战。本综述旨在全面介绍生物质衍生碳作为钠离子存储材料的最新进展和设计原则,并为未来合理定制生物质衍生碳提供指导。