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短链硫封装于氮掺杂空心碳纳米球中用于高容量钾存储

Short-Chain Sulfur Confined into Nitrogen-Doped Hollow Carbon Nanospheres for High-Capacity Potassium Storage.

作者信息

Liu Wenhan, Shi Tengfei, Liu Fang, Yang Chen, Qiao Fan, Han Kang, Han Chunhua, Meng Jiashen, Wang Xuanpeng

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.

Hubei Longzhong Laboratory, Wuhan University of Technology (Xiangyang Demonstration Zone), Xiangyang 441000, China.

出版信息

Nanomaterials (Basel). 2024 Mar 20;14(6):550. doi: 10.3390/nano14060550.

Abstract

Carbon-based materials are one of the ideal negative electrode materials for potassium ion batteries. However, the limited active sites and sluggish diffusion ion kinetics still hinder its commercialization process. To address these problems, we design a novel carbon composite anode, by confining highly reactive short-chain sulfur molecules into nitrogen-doped hollow carbon nanospheres (termed SHC-450). The formation process involves the controlled synthesis of hollow polyaniline (PANI) nanospheres as precursors via an Ostwald ripening mechanism and subsequent sulfuration treatment. The high content of constrained short-chain sulfur molecules (20.94 wt%) and considerable N (7.15 wt%) ensure sufficient active sites for K storage in SHC-450. Accordingly, the SHC-450 electrode exhibits a high reversible capacity of 472.05 mAh g at 0.1 A g and good rate capability (172 mAh g at 2 A g). Thermogravimetric analysis shows that SHC-450 has impressive thermal stability to withstand a high temperature of up to 640 °C. Ex situ spectroscopic characterizations reveal that the short-chain sulfur provides high capacity through reversible formation of KS. Moreover, its special hollow structure not only provides ample space for highly active short-chain sulfur reactants but also effectively mitigates volume expansion during the sulfur conversion process. This work offers new perspectives on enhanced K storage performance from an interesting anode design and the space-limited domain principle.

摘要

碳基材料是钾离子电池理想的负极材料之一。然而,有限的活性位点和缓慢的离子扩散动力学仍然阻碍着其商业化进程。为了解决这些问题,我们设计了一种新型碳复合负极,即将高活性的短链硫分子限制在氮掺杂的空心碳纳米球中(称为SHC - 450)。其形成过程包括通过奥斯特瓦尔德熟化机制可控合成空心聚苯胺(PANI)纳米球作为前驱体,以及随后的硫化处理。受限短链硫分子的高含量(20.94 wt%)和可观的氮含量(7.15 wt%)确保了SHC - 450中有足够的钾存储活性位点。因此,SHC - 450电极在0. A g时表现出472.05 mAh g的高可逆容量和良好的倍率性能(在2 A g时为172 mAh g)。热重分析表明,SHC - 450具有令人印象深刻的热稳定性,能够承受高达640℃的高温。非原位光谱表征表明,短链硫通过可逆形成KS提供高容量。此外,其特殊的空心结构不仅为高活性的短链硫反应物提供了充足的空间,还有效地减轻了硫转化过程中的体积膨胀。这项工作从有趣的负极设计和空间限制域原理为增强钾存储性能提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f88d/10976248/468020643f75/nanomaterials-14-00550-g001.jpg

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