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  4. Hierarchical pore engineering of lignocellulose-based carbon materials for electric double-layer capacitors
 
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October 2025
Journal Article
Title

Hierarchical pore engineering of lignocellulose-based carbon materials for electric double-layer capacitors

Abstract
Lignocellulose is an ideal precursor for supercapacitor electrodes due to its diverse structures and abundant availability. For supercapacitors, particularly electric double-layer capacitors (EDLCs), pore structure is critical. This review summarizes advances in lignocellulose-derived hierarchical porous carbon (LHPC) for supercapacitors, focusing on pore structure and future research directions. We discuss how pore structure influences supercapacitor performance, the activation methods for creating pores in LHPC, and review studies on optimizing pore structure for high-performance supercapacitors. Hierarchical porous carbon should feature a sufficient micropore surface area along with suitable mesoporous and macroporous surfaces to enhance rate performance while maintaining capacitance. This review is expected to actively advance the selection of lignocellulosic precursors and the development of optimized pore structure models, with the ultimate goal of enabling efficient production of lignocellulose-derived hierarchical porous carbon electrodes with superior properties.
Author(s)
Li, Yanyu
Shen, Huyan
Zhu, Yiyan
Zada, Imran
Song, Fang
Liu, Qinglei
Pan, Hui
Zhu, Shenmin
Li, Juan  
Fraunhofer-Institut für Holzforschung Wilhelm-Klauditz-Institut WKI  
Kasal, Bohumil  
Fraunhofer-Institut für Holzforschung Wilhelm-Klauditz-Institut WKI  
Li, Yao
Zhang, Di
Journal
Nano research  
Open Access
File(s)
Download (39.21 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.26599/nr.2025.94907960
10.24406/publica-7690
Additional link
Full text
Language
English
Fraunhofer-Institut für Holzforschung Wilhelm-Klauditz-Institut WKI  
Keyword(s)
  • electric double-layer capacitors

  • lignocellulose-derived hierarchical porous carbon

  • pore structure construction

  • capacitance

  • rate performance

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