TY - JOUR
T1 - Biomass-derived carbon materials for batteries
T2 - Navigating challenges, structural diversities, and future perspective
AU - Rehman, Wasif ur
AU - Ma, Yanan
AU - khan, Zahoor
AU - Laaskri, Fatima Zahra Ait
AU - Xu, Jiawei
AU - Farooq, Umar
AU - Ghani, Awais
AU - Rehman, Hamid
AU - Xu, Youlong
N1 - Publisher Copyright:
© 2024 The Authors
PY - 2025/4
Y1 - 2025/4
N2 - Biomass-derived carbon offers a promising solution for energy storage due to its low-cost abundance and environmentally sustainable nature. However, biomass carbon materials (BCMs) possess differing physical and chemical properties, which may affect their performance in energy storage applications. It is crucial to tailor the materials for specific applications to achieve consistency and controllable properties, such as pore structure, surface chemistry, and electrical conductivity. Herein, we comprehensively summarize biomass preparation methods and their diverse structures for energy storage validation. This review systematically explains the natural advantages of materials derived from biomass and their use as electrodes in advanced rechargeable batteries, such as lithium-ion, sodium-ion, potassium-ion, lithium-sulfur, and other batteries. This study provided the current research state on biomass-based carbon, encompassing its synthesis, properties, and electrochemical performance. Finally, we discuss the existing challenges and future opportunities to explore further the potential of biomass-derived carbon for the energy storage sector.
AB - Biomass-derived carbon offers a promising solution for energy storage due to its low-cost abundance and environmentally sustainable nature. However, biomass carbon materials (BCMs) possess differing physical and chemical properties, which may affect their performance in energy storage applications. It is crucial to tailor the materials for specific applications to achieve consistency and controllable properties, such as pore structure, surface chemistry, and electrical conductivity. Herein, we comprehensively summarize biomass preparation methods and their diverse structures for energy storage validation. This review systematically explains the natural advantages of materials derived from biomass and their use as electrodes in advanced rechargeable batteries, such as lithium-ion, sodium-ion, potassium-ion, lithium-sulfur, and other batteries. This study provided the current research state on biomass-based carbon, encompassing its synthesis, properties, and electrochemical performance. Finally, we discuss the existing challenges and future opportunities to explore further the potential of biomass-derived carbon for the energy storage sector.
KW - Activation methods
KW - Batteries
KW - Biomass-derived carbon
KW - Diverse structures
KW - Electrochemical performances
KW - Synthesis routes
UR - https://www.scopus.com/pages/publications/85211051469
U2 - 10.1016/j.nxmate.2024.100450
DO - 10.1016/j.nxmate.2024.100450
M3 - 文献综述
AN - SCOPUS:85211051469
SN - 2949-8228
VL - 7
JO - Next Materials
JF - Next Materials
M1 - 100450
ER -