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用于双电层电容器的石油沥青基活性炭的预氧化研究

A Study on Pre-Oxidation of Petroleum Pitch-Based Activated Carbons for Electric Double-Layer Capacitors.

作者信息

Kim Jong-Woo, Kim Dae-Won, Lee Seul-Yi, Park Soo-Jin

机构信息

Department of Chemistry, Inha University, 100 Inharo, Incheon 22212, Korea.

出版信息

Molecules. 2022 May 18;27(10):3241. doi: 10.3390/molecules27103241.

Abstract

Electric double-layer capacitors (EDLCs) are an excellent electrochemical energy storage system (ESS) because of their superior power density, faster charge-discharge ability, and longer cycle life compared to those of other EES systems. Activated carbons (ACs) have been mainly used as the electrode materials for EDLCs because of their high specific surface area, superior chemical stability, and low cost. Petroleum pitch (PP) is a graphitizable carbon that is a promising precursor for ACs because of its high carbon content, which is obtained as an abundant by-product during the distillation of petroleum. However, the processibility of PP is poor because of its stable structure. In this study, pre-oxidized PP-derived AC (OPP-AC) was prepared to investigate the effects of pre-oxidation on the electrochemical behaviors of PP. The specific surface area and pore size distribution of OPP-AC were lower and narrower, respectively, compared to the textural properties of untreated PP-derived AC (PP-AC). On the other hand, the specific capacitance of OPP-AC was 25% higher than that of PP-AC. These results revealed that pre-oxidation of PP induces a highly developed micropore structure of ACs, resulting in improved electrochemical performance.

摘要

双电层电容器(EDLCs)是一种出色的电化学储能系统(ESS),因为与其他储能系统相比,它们具有更高的功率密度、更快的充放电能力和更长的循环寿命。活性炭(ACs)因其高比表面积、出色的化学稳定性和低成本,一直被主要用作双电层电容器的电极材料。石油沥青(PP)是一种可石墨化的碳,由于其高碳含量,是一种很有前景的活性炭前驱体,它是在石油蒸馏过程中作为丰富的副产品获得的。然而,由于其结构稳定,PP的加工性能较差。在本研究中,制备了预氧化PP衍生的活性炭(OPP-AC),以研究预氧化对PP电化学行为的影响。与未处理的PP衍生活性炭(PP-AC)的结构性质相比,OPP-AC的比表面积和孔径分布分别更低和更窄。另一方面,OPP-AC的比电容比PP-AC高25%。这些结果表明,PP的预氧化诱导了活性炭高度发达的微孔结构,从而提高了电化学性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50cb/9147739/3b6cf73b4985/molecules-27-03241-g001.jpg

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