Unveiling K-storage mechanisms in Te-based electrodes for potassium-ion batteries
  • Kitchamsetti, Narasimharao
  • Kim, Kyoung-ho
  • Han, HyukSu
  • Mhin, Sungwook
Citations

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2
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3

초록

Potassium-ion batteries (PIBs) are drawing significant attention in the energy storage community because of their merits, including high power density, low redox potential, wide operating temperature range, and cost-effectiveness. However, their large-scale application is still limited by challenges like modest capacity, short cycle life, and severe electrode volume variation. Among the various electrode options, tellurium (Te)-based materials have emerged as promising candidates owing to their superior electrical conductivity, high theoretical capacity, and unique structural characteristics. This review summarizes recent developments on elemental Te, metal tellurides, Te-containing compounds, and Te-doped frameworks for PIB electrodes. The discussion focuses on their electrochemical behavior, potassium (K) storage mechanisms, and structural changes during cycling. Furthermore, strategies such as morphology design, composite construction, and defect engineering are highlighted for enhancing stability, rate capability, and K+ transport kinetics. Finally, key challenges and future directions are presented to guide the design of next-generation Te-based PIB electrodes.

키워드

Electrode design strategiesK-storage mechanismsModulation approachesPotassium ion batteriesTellurium-based compoundsANODE MATERIALSTELLURIUMCARBONCHEMISTRY
제목
Unveiling K-storage mechanisms in Te-based electrodes for potassium-ion batteries
저자
Kitchamsetti, NarasimharaoKim, Kyoung-hoHan, HyukSuMhin, Sungwook
DOI
10.1016/j.est.2025.119817
발행일
2026-01-30
유형
Review
저널명
Journal of Energy Storage
144