Lignin carbon fiber: advancement from precursor chemistry to manufacturing

Lignin, as a renewable biopolymer from plant cell walls and also a byproduct stream from biorefining and paper industry, has displayed its great potential for producing sustainable and cost-effective carbon fiber. Nevertheless, its commercialization is still largely hindered by the poor mechanical performance, since the underlying science for processing-structure-properties relationship from lignin precursor chemistry to manufacturing technologies is still under well-understood. In this review, we thus comprehensively reviewed the advancements in lignin chemistry and the technologies to tailor it for superior carbon fiber, especially focusing on the molecular structural features of lignin and its derived precursor fiber, carbon fiber, and graphited carbon fiber. In addition, we also systematically reviewed the fundamental chemistry for the synthesis of lignin-based carbon fiber, such as spinning, thermostabilization, carbonization, and graphitization, as well as the fundamentals and technologies of surface processing of as-prepared carbon fibers, including oxidation, coating, and plasma treatment. Revisiting these fundamentals could inspire innovations in lignin-based carbon fibers to enhance their performance and advance toward industrialization.

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Publication Details

Journal
Advanced Composites and Hybrid Materials
Published
2026-09-15
DOI
https://doi.org/10.1007/s42114-026-02071-4
Primary Topic
Lignin and Wood Chemistry
Type
article
Field-Weighted Citation Impact
0.00
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Lignin carbon fiber: advancement from precursor chemistry to manufacturing

Qiang Li, Arthur J. Ragauskas, Fengbo Sun, Xu YouMing et al.
Advanced Composites and Hybrid Materials
Lignin and Wood Chemistry
article

Lignin carbon fiber: advancement from precursor chemistry to manufacturing

Qiang Li, Arthur J. Ragauskas, Fengbo Sun, Xu YouMing, Hairong Gao, Song Wei, Yan Zhang
article en

Abstract

Lignin, as a renewable biopolymer from plant cell walls and also a byproduct stream from biorefining and paper industry, has displayed its great potential for producing sustainable and cost-effective carbon fiber. Nevertheless, its commercialization is still largely hindered by the poor mechanical performance, since the underlying science for processing-structure-properties relationship from lignin precursor chemistry to manufacturing technologies is still under well-understood. In this review, we thus comprehensively reviewed the advancements in lignin chemistry and the technologies to tailor it for superior carbon fiber, especially focusing on the molecular structural features of lignin and its derived precursor fiber, carbon fiber, and graphited carbon fiber. In addition, we also systematically reviewed the fundamental chemistry for the synthesis of lignin-based carbon fiber, such as spinning, thermostabilization, carbonization, and graphitization, as well as the fundamentals and technologies of surface processing of as-prepared carbon fibers, including oxidation, coating, and plasma treatment. Revisiting these fundamentals could inspire innovations in lignin-based carbon fibers to enhance their performance and advance toward industrialization.

Advanced Composites and Hybrid Materials
International Bamboo and Rattan Organization (CN), Huazhong Agricultural University (CN), Knoxville College (US), Shanghai Zhangjiang Laboratory (CN), University of Tennessee at Knoxville (US)
Industry, innovation and infrastructure
Openalex Percentile: Top 21%
Lignin and Wood Chemistry
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Lignin carbon fiber: advancement from precursor chemistry to manufacturing — Qiang Li, Arthur J. Ragauskas, et al. · Advanced Composites and Hybrid Materials (2026) | TGRS Research Map | TGRS