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Advances and Prospects of Lignin-Derived Hard Carbons for Next-Generation Sodium-Ion Batteriesopen access

Authors
Kitchamsetti, NarasimharaoMhin, Sungwook
Issue Date
Oct-2025
Publisher
MDPI
Keywords
lignin-derived hard carbon; sodium ion batteries; feedstock pretreatment; preparation process tuning; post treatment
Citation
Polymers, v.17, no.20, pp 1 - 69
Pages
69
Indexed
SCIE
SCOPUS
Journal Title
Polymers
Volume
17
Number
20
Start Page
1
End Page
69
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/61931
DOI
10.3390/polym17202801
ISSN
2073-4360
2073-4360
Abstract
Lignin-derived hard carbon (LHC) has emerged as a highly promising anode material for sodium-ion batteries (SIBs), owing to its renewable nature, structural tunability, and notable electrochemical properties. Although considerable advancements have been made in the development of LHCs in recent years, the absence of a comprehensive and critical review continues to impede further innovation in the field. To address this deficiency, the present review begins by examining the intrinsic characteristics of lignin and hard carbon (HC) to elucidate the underlying mechanisms of LHC microstructure formation. It then systematically categorizes the synthesis strategies, structural attributes, and performance influences of various LHCs, focusing particularly on how feedstock characteristics and fabrication parameters dictate final material behavior. Furthermore, optimization methodologies such as feedstock pretreatment, controlled processing, and post-synthesis modifications are explored in detail to provide a practical framework for performance enhancement. Finally, informed recommendations and future research directions are proposed to facilitate the integration of LHCs into next-generation SIB systems. This review aspires to deepen scientific understanding and guide rational design for improved LHC applications in energy storage.
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