Synergistic regulation of pore structure in PAN-based carbon nanofibers with lignin and pitch for sodium-ion storage

Carbon nanofibers (CNFs) have attracted considerable attention due to their interconnected fibrous architecture and excellent electrical conductivity for sodium-ion batteries (SIBs) as anode materials. However, polyacrylonitrile (PAN)-based CNFs often exhibit limited sodium storage performance because of their insufficient pore structure. In this work, PAN was employed as a precursor, while low-cost lignin and pitch were introduced as synergistic modifiers to construct composite CNFs via electrospinning followed by pre-oxidation and carbonization. The influence of precursor composition on the structural evolution and sodium storage behavior of the CNFs was systematically investigated. During pyrolysis, lignin-rich oxygen-containing functional groups released gases to generate abundant open pores, whereas the melt rheology of pitch enhanced fiber adhesion, partially sealed open pores, and formed a compact three-dimensional network with closed pores. Benefiting from this synergistic structural regulation, the optimized PPL622-CNF exhibited a high reversible capacity of 238.9 mAh g −1 at 0.03 A g −1 with a significantly enhanced plateau capacity. Moreover, a capacity retention of 86.7% after 200 cycles at 0.2 A g −1 was achieved. This work demonstrated an effective strategy for tailoring the pore structure of PAN-based CNFs through lignin/pitch synergy, providing valuable insights for the development of low-cost, high-performance anode materials for SIBs.

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Journal
Journal of Power Sources
Published
2026-09-16
DOI
https://doi.org/10.1016/j.jpowsour.2026.241521
Primary Topic
Advancements in Battery Materials
Type
article
Field-Weighted Citation Impact
0.00

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article

Synergistic regulation of pore structure in PAN-based carbon nanofibers with lignin and pitch for sodium-ion storage

Jianxiao Yang, Mengzhu Li, Junjie Huang, Ji Qin et al.
Journal of Power Sources
Advancements in Battery Materials
article

Synergistic regulation of pore structure in PAN-based carbon nanofibers with lignin and pitch for sodium-ion storage

Jianxiao Yang, Mengzhu Li, Junjie Huang, Ji Qin, Xinyu Liu, Liuzhuang Li, Tao Liu
article en

Abstract

Carbon nanofibers (CNFs) have attracted considerable attention due to their interconnected fibrous architecture and excellent electrical conductivity for sodium-ion batteries (SIBs) as anode materials. However, polyacrylonitrile (PAN)-based CNFs often exhibit limited sodium storage performance because of their insufficient pore structure. In this work, PAN was employed as a precursor, while low-cost lignin and pitch were introduced as synergistic modifiers to construct composite CNFs via electrospinning followed by pre-oxidation and carbonization. The influence of precursor composition on the structural evolution and sodium storage behavior of the CNFs was systematically investigated. During pyrolysis, lignin-rich oxygen-containing functional groups released gases to generate abundant open pores, whereas the melt rheology of pitch enhanced fiber adhesion, partially sealed open pores, and formed a compact three-dimensional network with closed pores. Benefiting from this synergistic structural regulation, the optimized PPL622-CNF exhibited a high reversible capacity of 238.9 mAh g −1 at 0.03 A g −1 with a significantly enhanced plateau capacity. Moreover, a capacity retention of 86.7% after 200 cycles at 0.2 A g −1 was achieved. This work demonstrated an effective strategy for tailoring the pore structure of PAN-based CNFs through lignin/pitch synergy, providing valuable insights for the development of low-cost, high-performance anode materials for SIBs.

Journal of Power SourcesVol. 696
Hunan University (CN), Taiyuan University of Technology (CN)
National Natural Science Foundation of China, Natural Science Foundation of Hunan Province
Openalex Percentile: Top 20%
Advancements in Battery Materials
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Synergistic regulation of pore structure in PAN-based carbon nanofibers with lignin and pitch for sodium-ion storage — Jianxiao Yang, Mengzhu Li, et al. · Journal of Power Sources (2026) | TGRS Research Map | TGRS