Dimension-controlled N-doped graphitic carbon nanostructures through low-temperature metal-catalyzed transformation from C3N4 for high-performance electrochemical barrier in lithium-sulfur batteries

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초록

Continuous efforts have been devoted to establishing viable synthetic guidelines for dimension-controlled carbon nanomaterials. This paper proposes a dimension-convertible synthetic procedure based on metal-organic com-plexes. One-or two-dimensional carbon nanostructures can be developed through the different graphitization behaviors of metal-organic complexes according to the selected metal ions. These nanostructures possess vital functions from surface nitrogen functionalities and embedded metal species for a wide range of applications. These distinctive structural functions are applied to functionalize the general separator as an electrochemical barrier for lithium-sulfur (Li-S) batteries. Benefiting from the polysulfide blocking function and electrocatalytic effect, the resulting separator Li-S cells exhibit high-rate capability and stable cycling performance. The remarkable performance combined with comprehensive characterization of the resulting dimension-controlled carbon nanomaterials provides new insights into the design of functional nanomaterials for energy and envi-ronmental research.

키워드

Graphitic carbon nanostructureMetal-organic complexesMetal-catalyzed graphitizationLithium-sulfur batteriesFunctional separatorPOROUS CARBONNANOTUBESCOMPOSITESMECHANISMPROGRESSGREENREDOX
제목
Dimension-controlled N-doped graphitic carbon nanostructures through low-temperature metal-catalyzed transformation from C3N4 for high-performance electrochemical barrier in lithium-sulfur batteries
저자
Park, Jae SeoPark, Dong YoonYang, Seo MiRyu, Jeong HeonPark, Jae HuiKim, Sang MinJin, Hyoung-JoonPark, Chong RaeKim, Jae HoYang, Seung Jae
DOI
10.1016/j.carbon.2022.05.001
발행일
2022-08-30
유형
Article
저널명
Carbon
196
페이지
204 ~ 212