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质量平衡策略增强了稻壳衍生的活性炭基超级电容器在氢氧化钾电解液中的循环稳定性。

Mass-balancing strategy enhances the cycling stability of rice husk-derived activated carbon-based supercapacitors in KOH electrolyte.

作者信息

Liu Dechen, Zhang Wenli, Lin Haibo, Lin Nan

机构信息

Jilin Province Innovation Center for Criminal Science and Technology, Jilin Police College Changchun 130117 China.

College of Chemistry, Jilin University Changchun 130012 China

出版信息

RSC Adv. 2025 Jul 21;15(32):25940-25948. doi: 10.1039/d5ra03028e.

Abstract

Rice husk-derived activated carbon prepared KOH activation usually has high specific capacitance due to its high oxygen content and high specific surface area, which is regarded as a promising candidate for supercapacitor electrodes. However, the poor cycling stability of supercapacitors based on rice husk-derived activated carbon in KOH electrolyte severely limit its commercial application. In this study, the influence of different positive-to-negative electrode mass ratios on the cycling stability of supercapacitors was systematically investigated using rice husk-derived activated carbon as electrode materials. The results show that increasing the positive-to-negative electrode mass ratios significantly enhances the cycling stability of supercapacitors. In this process, the continuous increase in positive electrode potential is effectively suppressed, which avoid the oxidation of the positive electrode. When the positive-to-negative electrode mass ratio is increased from 1 to 2, the capacitance retention of the supercapacitors significantly increases from 27.9% to 96.4% after 10 000 charge-discharge cycles. Meanwhile, the specific capacitance is only reduced by 9.1%. The supercapacitor with positive-to-negative electrode mass ratio s of 1 and 2 shows energy densities of 10.68 W h kg and 9.54 W h kg at 0.5 A g, retaining 46.8% and 43.4% of energy densities at 20 A g. Adjusting the positive-to-negative electrode mass ratio does not significantly affect the electrochemical properties of supercapacitors. Thus, this work unfolds a new strategy for enhancing the cycling stability of activated carbon-based supercapacitors in alkaline electrolytes and a viable route for practical energy storage applications of rice husk-derived activated carbon in supercapacitors.

摘要

通过KOH活化制备的稻壳基活性炭通常具有较高的比电容,这归因于其高氧含量和高比表面积,被视为超级电容器电极的有潜力候选材料。然而,基于稻壳基活性炭的超级电容器在KOH电解液中的循环稳定性较差,严重限制了其商业应用。在本研究中,以稻壳基活性炭为电极材料,系统研究了不同正负极质量比对超级电容器循环稳定性的影响。结果表明,增加正负极质量比可显著提高超级电容器的循环稳定性。在此过程中,有效抑制了正极电位的持续升高,避免了正极的氧化。当正负极质量比从1增加到2时,超级电容器在10000次充放电循环后的电容保持率从27.9%显著增加到96.4%。同时,比电容仅降低了9.1%。正负极质量比为1和2的超级电容器在0.5 A g时的能量密度分别为10.68 W h kg和9.54 W h kg,在20 A g时分别保持能量密度的46.8%和43.4%。调整正负极质量比对超级电容器的电化学性能影响不显著。因此,这项工作为提高碱性电解液中活性炭基超级电容器的循环稳定性开辟了一种新策略,并为稻壳基活性炭在超级电容器中的实际储能应用提供了一条可行途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5514/12278731/c8f09cbd794d/d5ra03028e-f1.jpg

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