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Wang et al. Soft Sci. 2026, 6, 8                                                 Page 25 of 28





               67.  Xia, Y.; Gao, W.; Gao, C. A review on graphene‐based electromagnetic functional materials: electromagnetic wave shielding and
                  absorption. Adv. Funct. Mater. 2022, 32, 2204591. DOI
               68.  Ding, H.; Hu, B.; Wang, Y.; Du, Y. Current progress and frontiers in three-dimensional macroporous carbon-based aerogels for
                  electromagnetic wave absorption: a review. Nanoscale 2024, 16, 21731-60. DOI PubMed
               69.  Wang, H.; Xiao, J.; Qi, X.; et al. Microstructural optimization and non-metallic doping strategy to develop mesoporous N-doped carbon
                  hollow nanospheres for strong and broadband microwave absorption. J. Mater. Sci. Technol. 2026, 247, 55-63. DOI
               70.  Qiao, J.; Song, Q.; Zhang, X.; et al. Enhancing interface connectivity for multifunctional magnetic carbon aerogels: an in situ growth
                  strategy of metal-organic frameworks on cellulose nanofibrils. Adv. Sci. 2024, 11, e2400403. DOI PubMed PMC
               71.  Zeng, X.; Peng, X.; Ning, Y.; Jiang, X.; Yu, R.; Zhang, X. 3D multifunctional porous pine carbon aerogels coupled with highly dispersed
                  CoFe nanoparticles for robust electromagnetic wave response. J. Mater. Sci. Technol. 2024, 192, 6-18. DOI
               72.  Ai, Y.; Xing, R.; Ren, N.; et al. Biomass-derived hierarchical carbon frameworks enable robust microwave absorption. Matter 2025, 8,
                  102289. DOI
               73.  Zhao, L.; Zhuang, Q.; Hu, G.; Zhang, B.; Pan, S. Ni/porous carbon-based composite derived from poplar wood with ultrabroad band
                  microwave absorption performance. ECS. J. Solid. State. Sci. Technol. 2024, 13, 021004. DOI
               74.  Gou, G.; Hua, W.; Liu, K.; Cheng, F.; Xie, X. Bimetallic MOF@wood-derived hierarchical porous carbon composites for efficient
                  microwave absorption. Diam. Relat. Mater. 2024, 141, 110688. DOI
               75.  Cui, A.; Miao, Y.; Wang, C.; et al. NiFe 2 O 4 /Ni 3 Fe nanoparticles Decorate wood carbon strategies for efficient electromagnetic
                  absorption. Chem. Eng. J. 2025, 507, 160354. DOI
               76.  Cui, C.; Geng, L.; Jiang, S.; et al. Architecture design of a bamboo cellulose/Nb 2 CT x  MXene/ZIF-67-derived lightweight
                  Co/Nb 2 CT x /carbon aerogel for highly efficient electromagnetic wave absorption, thermal insulation, and flame retardant. Ind. Eng. Chem.
                  Res. 2023, 62, 8297-311. DOI
               77.  Shen, M.; Li, X.; Qi, J.; et al. Magnetic metal-loaded wood carbon aerogel composites for electromagnetic shielding and microwave
                  absorption. Compos. Part. A. Appl. Sci. Manuf. 2025, 198, 109070. DOI
               78.  Xiao, J.; Wen, B.; Liu, X.; et al. In-situ growth of carbon nanotubes for the modification of wood-derived biomass porous carbon to
                  achieve efficient Low/Mid-Frequency electromagnetic wave absorption. J. Colloid. Interface. Sci. 2024, 676, 33-44. DOI PubMed
               79.  Cheng, Y.; Zhao, H.; Lv, H.; Shi, T.; Ji, G.; Hou, Y. Lightweight and flexible cotton aerogel composites for electromagnetic absorption
                  and shielding applications. Adv. Elect. Mater. 2020, 6, 1900796. DOI
               80.  Huang, X.; Wang, Y.; Lou, Z.; Chen, Y.; Li, Y.; Lv, H. Porous, magnetic carbon derived from bamboo for microwave absorption.
                  Carbon 2023, 209, 118005. DOI
               81.  Chang, Q.; Xie, Z.; Long, C.; Feng, X.; Shi, B.; Wu, H. Magnetic hierarchically porous biomass carbon for realizing broadband and
                  strong absorption of electromagnetic wave. Ceram. Int. 2023, 49, 27015-23. DOI
               82.  Li, Z.; Liang, J.; Wei, Z.; et al. Lightweight foam-like nitrogen-doped carbon nanotube complex achieving highly efficient
                  electromagnetic wave absorption. J. Mater. Sci. Technol. 2024, 168, 114-23. DOI
               83.  Yu, J.; Luo, H.; Wang, Z.; et al. Surface morphology of magnetic carbon foam regulated electromagnetic properties for microwave
                  absorption. J. Alloys. Compd. 2024, 971, 172757. DOI
               84.  Yu, J.; Luo, H.; Lv, S.; et al. Facile fabrication of melamine/MXene/FeNi‐PBA composite derived multi‐interface magnetic carbon foam
                  for high‐efficiency microwave absorption. Adv. Elect. Mater. 2025, 11, 2400265. DOI
               85.  Jia, T.; Qi, X.; Wang, L.; et al. Constructing mixed-dimensional lightweight flexible carbon foam/carbon nanotubes-based
                  heterostructures: an effective strategy to achieve tunable and boosted microwave absorption. Carbon 2023, 206, 364-74. DOI
               86.  Rong, H.; Song, H.; Gao, T.; Li, Y.; Zhao, R.; Zhang, X. Ultralight melamine foam derived metal nanoparticles encapsulated
                  CNTs/porous carbon composite for electromagnetic absorption. Synth. Met. 2023, 294, 117306. DOI
               87.  Zhu, X.; Dong, Y.; Xiang, Z.; et al. Morphology-controllable synthesis of polyurethane-derived highly cross-linked 3D networks for
                  multifunctional and efficient electromagnetic wave absorption. Carbon 2021, 182, 254-64. DOI
               88.  Lou, Z.; Li, R.; Wang, P.; et al. Phenolic foam-derived magnetic carbon foams (MCFs) with tunable electromagnetic wave absorption
                  behavior. Chem. Eng. J. 2020, 391, 123571. DOI
               89.  Shao, G.; Yang, Y.; Jia, S.; et al. Covalent organic framework‐amplified polarization loss in ultralight Schottky heterojunction aerogels
                  for low‐frequency electromagnetic wave absorption. Adv. Funct. Mater. 2025, e16078. DOI
               90.  Guo, Y.; Wang, D.; Tian, Y.; et al. FeCo alloy nanoparticle decorated cellulose based carbon aerogel as a low-cost and efficient
                  electromagnetic microwave absorber. J. Mater. Chem. C. 2021, 10, 126-34. DOI
               91.  Yang, P.; Wang, L.; Ruan, H.; et al. Heterogeneous interface engineering and directional tuning electromagnetic parameters of
                  MXene/Fe NPs absorbers for precise low-frequency microwave absorption. Nano. Res. 2025, 18, 94907783. DOI
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