微观结构
热解
煤
材料科学
矿物学
化学工程
复合材料
化学
有机化学
工程类
作者
Jiaxing Yue,Jiao Huang,Yaming Zhu,Yuzhu Zhang,Jun Lv,Junxia Cheng,Xuefei Zhao
标识
DOI:10.1016/j.jaap.2025.107001
摘要
With the rapid development of the new energy industry, pitch-derived coke now shows greater potential than graphite anode. For investigate the correlation between optical microstructures and macroscopic properties of pitch coke, 6 pitch cokes with varying structures were prepared from medium temperature coal pitch (MTP) and its 5 fractions. Then, these pitch cokes were applied in lithium-ion batteries to evaluate their electrochemical performances . The results showed that the optical microstructures of pitch coke have significant influence on the macroscopic properties including electrochemical performances. In fact, pitch coke with high anisotropic index (DRAS) possesses high capacity and low powder resistivity. Its fibrous structure brings better oxidation resistance . While the mosaic structure contributes more to the improvement of the micro-strength intensity (MSI) of pitch coke. In addition, fine and medium mosaic structure have obvious influence on the rate performance and Warburg factor (σ) of pitch coke, respectively. Among several pitch cokes, BAI-TS-1400 has the best rate performance and initial coulombic efficiency (73.84 %). After 400 cycles at 0.05 A·g −1 , its capacity maintains 402.4 mAh·g −1 , exhibiting nice cycle stability. Thus, it’s a promising for lithium-ion battery anodes material . This work provides theoretical and experimental support for the high value-added utilization of pitch coke. In this work, 6 derived pitch cokes were prepared from medium temperature coal pitch and its 5 sequential extraction products, and the structure-activity relationship between optical microstructures and macroscopic properties, especially electrochemical performances of pitch cokes was investigated through a series of characterizations. • Structure of derived coke greatly influenced by solvent type. • Fibrous structure is more difficult to form. • The correlation of optical structure and macroscopic properties are constructed. • BAI-TS-1400 is a potential anode material for lithium-ion battery.
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