Hierarchical nitrogen‐doped multichannel carbon nanofibers for efficient potassium–selenium batteries

材料科学 碳纤维 兴奋剂 碳纳米纤维 氮气 纳米技术 无机化学 化学工程 碳纳米管 复合材料 冶金 光电子学 有机化学 化学 复合数 工程类
作者
Jae Bong Lim,Hyun Jin Kim,Jeong Ho Na,Jin Koo Kim,Seong‐Yong Jeong,Seung‐Keun Park
出处
期刊:Rare Metals [Springer Science+Business Media]
卷期号:44 (6): 3839-3851 被引量:9
标识
DOI:10.1007/s12598-024-03133-6
摘要

Abstract K–Se batteries have been identified as promising energy storage systems owing to their high energy density and cost‐effectiveness. However, challenges such as substantial volume changes and low Se utilization require further investigation. In this study, novel N‐doped multichannel carbon nanofibers (h‐NMCNFs) with hierarchical porous structures were successfully synthesized as efficient cathode hosts for K–Se batteries through the carbonization of two electrospun immiscible polymer nanofibers and subsequent chemical activation. Mesopores originated from the decomposition of the polymer embedded in the carbon nanofibers, and micropores were introduced via KOH activation. During the activation step, hierarchical porous carbon nanofibers with enhanced pore volumes were formed because of the micropores in the carbon nanofibers. Owing to the mesopores that enabled easy access to the electrolyte and the high utilization of chain‐like Se within the micropores, the Se‐loaded hierarchical porous carbon nanofibers (60 wt% Se) exhibited a high discharge capacity and excellent rate performance. The discharge capacity of the nanofibers at the 1,000th cycle was 210.8 mA·h·g −1 at a current density of 0.5C. The capacity retention after the initial activation was 64%. In addition, a discharge capacity of 165 mA·h·g −1 was obtained at an extremely high current density of 3.0C.
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