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纤维生物炭-金属有机框架基质复合材料在电化学储能中的应用。

Application of Fiber Biochar-MOF Matrix Composites in Electrochemical Energy Storage.

作者信息

Gao Meixiang, Lu Meng, Zhang Xia, Luo Zhenhui, Xiao Jiaqi

机构信息

State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.

Advanced Research Institute for Multidisciplinary Science, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, China.

出版信息

Polymers (Basel). 2022 Jun 15;14(12):2419. doi: 10.3390/polym14122419.

Abstract

Fiber biochar-metal organic framework (MOF) composites were successfully prepared by three different biochar preparation methods, namely, the ionic liquid method, the pyrolysis method, and the direct composite method. The effects of the different preparation methods of fiber biochar on the physical and chemical properties of the biochar-MOF composites showed that the composite prepared by the ionic liquid method with the Zeolite-type imidazolate skeleton -67 (ZIF-67) composite after high temperature treatment exhibited a better microstructure. Electrochemical tests showed that it had good specific capacity, a fast charge diffusion rate, and a relatively good electrochemical performance. The maximum specific capacity of the composite was 63.54 F/g when the current density was 0.01 A/g in 1 mol/L KCl solution. This work explored the preparation methods of fiber biochar-MOF composites and their application in the electrochemical field and detailed the relationship between the preparation methods of the composites and the electrochemical properties of the electrode materials.

摘要

通过三种不同的生物炭制备方法,即离子液体法、热解法和直接复合法,成功制备了纤维生物炭-金属有机框架(MOF)复合材料。纤维生物炭不同制备方法对生物炭-MOF复合材料物理和化学性质的影响表明,采用离子液体法制备并经高温处理后的沸石型咪唑酯骨架-67(ZIF-67)复合材料具有更好的微观结构。电化学测试表明,其具有良好的比容量、快速的电荷扩散速率和相对较好的电化学性能。在1 mol/L KCl溶液中,当电流密度为0.01 A/g时,该复合材料的最大比容量为63.54 F/g。这项工作探索了纤维生物炭-MOF复合材料的制备方法及其在电化学领域的应用,并详细阐述了复合材料制备方法与电极材料电化学性质之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f597/9228875/c0f65cdb16cb/polymers-14-02419-g001.jpg

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