Intrinsic chlorine-mediated self activation of quinacridones for high-performance alkali-ion batteries

  • Lee, Taewoong; 
  • Kwon, Woong; 
  • Chae, Seongwook; 
  • Kim, Byeong Jin; 
  • Park, Jae Bin; 
  • ... Jeong, Euigyung; 
  • 외 4명
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초록

To address the growing demand for efficient energy storage systems, alternative battery technologies beyond lithium-ion batteries (LIBs) are essential. Sodium-ion and potassium-ion batteries (SIBs/PIBs) have emerged as promising candidates, however, their further development is hindered by sluggish redox kinetics in graphite anodes. Disordered carbons, with enlarged interlayer spacing and defective domains, shows efficient alkali-ion storage capabilities. In this study, quinacridones (QAs) are explored as carbon precursors for alkali-ion batteries (AIBs). We demonstrate that despite having similar crystalline orientations, QAs with different substituents undergo distinct structural transformations during pyrolysis, influencing their carbon microstructures and electrochemical properties. Specifically, 2,9-dichloroquinacridone (2,9-DCQA) exhibits a high carbon yield (55 % at 600 degrees C) and develops hydrangea-like morphologies with an enlarged surface area. Pyrolysis behavior analysis reveals that the bond-breakage of Cl substituents induces continuous evolution of Cl-containing gases, promoting unique morphological development and surface area enlargement. Additionally, the enlarged interlayer spacing and disordered domains in pyrolyzed DCQA (p-DCQA) enhance alkali-ion storage capabilities via of Interface (2025) diffusion-and surface-driven processes. These findings provide key insights into the utilization of QAs for high-performance energy storage applications.

키워드

Alkali-ion batteries; Energy storage; Electrochemistry; Quinacridone; MECHANISM; STORAGE
제목
Intrinsic chlorine-mediated self activation of quinacridones for high-performance alkali-ion batteries
저자
Lee, Taewoong; Kwon, Woong; Chae, Seongwook; Kim, Byeong Jin; Park, Jae Bin; Kwon, Taekyun; Heo, Woo Sub; Jeong, Euigyung; Lee, Jin Hong; Lee, Seung Geol
DOI
10.1016/j.jcis.2025.138598
발행일
2025-12-15
유형
Article
저널명
Journal of Colloid and Interface Science
권
700