Microcrystalline regulation of bituminous coal derived hard carbon by pre-oxidation strategy for improved sodium-ion storage

微晶 碳化 阳极 碳纤维 材料科学 化学工程 储能 化学 电极 复合数 有机化学 复合材料 物理 工程类 物理化学 量子力学 功率(物理) 扫描电子显微镜 结晶学
作者
Zhuojia Lou,Hua Wang,Dongyang Wu,Fei Sun,Jihui Gao,Xiaoyong Lai,Guangbo Zhao
出处
期刊:Fuel [Elsevier BV]
卷期号:310: 122072-122072 被引量:104
标识
DOI:10.1016/j.fuel.2021.122072
摘要

Middle metamorphic coal has the advantages of high earth abundance and easily-adjusted aromatic units and thus is a feasible raw material for the development of functional carbon materials. For the preparation of high-performance Na+ storage hard carbon, the key is to inhibit the long-range graphitization of internal microcrystalline in coal structure during thermal conversion process. Herein, we introduce a simple gas/liquid-phase pre-oxidation procedure to graft oxygen-containing cross bonds into bituminous coal, by which the growth of long-range graphitization process during high-temperature carbonization can be suppressed and thereby enable the preparation of hard carbon with short-range microcrystalline distribution and enlarged interlayer distance of 0.38 ∼ 0.385 nm. Benefiting the regulated microcrystalline environment, the fabricated hard carbon anode delivers a high reversible capacity of 274.2 mAh g−1, which is 24 % higher than the carbon anode prepared without pre-oxidation treatment. Electrochemical kinetics analyses further reveal that the improved Na+ storage capacity mainly stems from the enhanced Na+ diffusion and intercalation into microcrystalline interlayers at the low voltage region, which is of significance for the construction of high energy–density full cell for practical applications.
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