Elucidating the charge storage mechanism of carbonaceous and organic electrode materials for sodium ion batteries

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초록

Sodium ion batteries (SIB) have received much research attention in the past decades as they are considered to be one alternative to the currently prevalent lithium ion batteries, and carbonaceous and organic compounds present two promising classes of SIB electrode materials advantaged by abundance of their constituent elements and reduced environmental footprints. To accelerate the development of these materials for SIB applications, future research directions must be guided by a thorough understanding of the charge storage mechanism. This review presents recent efforts in mechanism elucidation for these two classes of SIB electrode materials since, compared to their inorganic counterparts, they have unique challenges in material analysis. Topics covered will include characterization techniques and analytical frameworks for mechanism elucidation, emphasizing the advantages and limitations of individual experimental methodologies and providing a commentary on scientific rigor in result interpretation.

키워드

HIGH-CAPACITYCATHODE MATERIALANODE MATERIALSELECTROCHEMICAL INTERCALATIONPHOTOELECTRON-SPECTROSCOPYRAMAN-SPECTROSCOPYHARD CARBONSSOFT CARBONLITHIUMPERFORMANCE
제목
Elucidating the charge storage mechanism of carbonaceous and organic electrode materials for sodium ion batteries
저자
Lau, Vincent Wing-heiKim, Jae-BumZou, FengKang, Yong-Mook
DOI
10.1039/d1cc04925a
발행일
2021-12-14
유형
Article
저널명
Chemical Communications
57
99
페이지
13465 ~ 13494