Efficient production of activated carbons from PET for organic supercapacitor applications: A single-step approach

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초록

This study introduces a novel approach for synthesizing supercapacitor electrode materials using polyethylene terephthalate (PET), a plastic facing recycling challenges. Unlike conventional methods that involve separate carbonization and activation steps, we employ a single-step method. In this process, activated carbons are synthesized using potassium hydroxide (KOH) as an activating agent. Remarkably, the yield via the single-step method (S_PACXs) exceeds that of the two-step method (T_PACYs) by at least 1.7 times. During the single-step process, KOH forms a layer on the PET surface before activation, which leads to increased yields, higher specific surface areas, and more developed mesopores. Furthermore, S_PACXs exhibit superior specific surface areas compared to commercial activated carbon. These enhanced properties significantly improve electrochemical performance, with S_PACXs demonstrating superior performance compared to T_PACYs. Ultimately, this study validates the efficiency of the single-step method in producing high-quality activated carbon from PET, saving time and energy, and outperforming the two-step method.

키워드

Single-step methodActivated carbonPolyethylene terephthalateSupercapacitorOrganic electrolyteENERGY-STORAGE SYSTEMELECTROCHEMICAL PROPERTIESSONOCHEMICAL SYNTHESISMESOPOROUS CARBONSURFACE-AREAPORE-SIZEELECTRODESTECHNOLOGIESPATHWAY
제목
Efficient production of activated carbons from PET for organic supercapacitor applications: A single-step approach
저자
Choi, JongyunJung, WonjongJung, Ji Chul
DOI
10.1016/j.materresbull.2024.113166
발행일
2025-02
유형
Article
저널명
Materials Research Bulletin
182