Biomass-Derived Hard Carbon Anodes for Sodium-Ion Batteries: Recent Advances in Synthesis Strategies

  • Kitchamsetti, Narasimharao
  • Kim, Kyoung-ho
  • Han, Hyuksu
  • Mhin, Sungwook
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초록

Biomass-derived hard carbon (BHC) has attracted considerable attention as a sustainable and cost-effective anode material for sodium-ion batteries (SIBs), owing to its natural abundance, environmental friendliness, and promising electrochemical performance. This review provides a detailed overview of recent progress in the synthesis, structural design, and performance optimization of BHC materials. It encompasses key fabrication routes, such as high-temperature pyrolysis, hydrothermal pretreatment, chemical and physical activation, heteroatom doping, and templating techniques, that have been employed to control pore architecture, defect density, and interlayer spacing. Among these strategies, activation-assisted pyrolysis and heteroatom doping have shown the most significant improvements in sodium (Na) storage capacity and long-term cycling stability. The review further explores the correlations between microstructure and electrochemical behavior, outlines the main challenges limiting large-scale application, and proposes future research directions toward scalable production and integration of BHC anodes in practical SIB systems. Overall, these advancements highlight the strong potential of BHC as a next-generation anode for grid-level and renewable energy storage technologies.

키워드

preparation approachesbiomasshard carbonanodessodium-ion batteriesHIGH-PERFORMANCE ANODESPOROUS CARBONHIGH-CAPACITYSUSTAINABLE ROUTESTORAGENITROGENINSERTIONLITHIUMCARBONIZATIONMECHANISMS
제목
Biomass-Derived Hard Carbon Anodes for Sodium-Ion Batteries: Recent Advances in Synthesis Strategies
저자
Kitchamsetti, NarasimharaoKim, Kyoung-hoHan, HyuksuMhin, Sungwook
DOI
10.3390/nano15201554
발행일
2025-10
유형
Review
저널명
Nanomaterials
15
20
페이지
1 ~ 25