Facile Preparation of Petroleum Pitch-Based Activated Carbon with Open Macropore Walls for High Energy Density Supercapacitors

Author:

Jang Suhyeon12,Lee Woo Cheol12,Park Sang-Hoon3ORCID,Lim Chang-Hun12,Park JaeHyun4,Kang Jin-kyun5,Han Yujin3,Song Byung Jin4ORCID,Kim Hyun-Kyung12ORCID

Affiliation:

1. Department of Battery Convergence Engineering, Kangwon National University, 1 Kangwondaehak-gil, Chuncheon 24341, Republic of Korea

2. Interdisciplinary Program in Advanced Functional Materials and Devices Development, Kangwon National University, Chuncheon 24341, Republic of Korea

3. Ulsan Advanced Energy Technology R&D Center, Korea Institute of Energy Research, Ulsan 44776, Republic of Korea

4. Dongyang Environment Co., Ltd., Daejeon 34301, Republic of Korea

5. Safety Protection Technical Support Team, Research and Development Division, Korea Institute of Convergence Textile, Iksan-si 54588, Republic of Korea

Abstract

Electric double-layer capacitors have attracted considerable attention for energy storage because of their excellent power capability, high stability, and long cycle life. Activated carbon is the most widely employed electrode material for electric double-layer capacitors owing to its high specific surface area, hierarchical porous structure, and high electrical conductivity. However, to increase the energy density of the devices, new synthetic methods for enhancing their specific capacitances are required. We developed a facile preparation method for petroleum pitch-based activated carbon and investigated the optimal conditions to improve its electrochemical performance in terms of rate capability, specific capacitance, and cycle life. The obtained activated carbon exhibited a high specific capacitance (163.67 F/g at 0.1 A/g), which can be attributed to the efficient charge transport due to the micropores developed in the open macroporous walls of the carbon structure and the high electrical conductivity. Our approach provides an efficient strategy for synthesizing activated carbon with excellent properties. The results reveal a correlation between the physicochemical and electrochemical properties of activated carbon.

Funder

Ministry of Science, ICT and Future Planning

Publisher

Hindawi Limited

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

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