Page 49 - Read Online
P. 49

Liu et al. Soft Sci. 2025, 5, 7  https://dx.doi.org/10.20517/ss.2024.69         Page 23 of 25

                    carbon-slag composite foams towards absorption dominated electromagnetic interference shielding. Sustain. Mater. Technol. 2022,
                    33, e00453.  DOI
               42.       Ma, Z.; Deng, Z.; Zhou, X.; et al. Multifunctional and magnetic MXene composite aerogels for electromagnetic interference shielding
                    with low reflectivity. Carbon 2023, 213, 118260.  DOI
               43.       Zhang, H.; Cao, F.; Xu, H.; et al. Plasma-enhanced interfacial engineering of FeSiAl@PUA@SiO  hybrid for efficient microwave
                                                                                     2
                    absorption and anti-corrosion. Nano. Res. 2023, 16, 645-53.  DOI
               44.       Dong, F.; Dai, B.; Zhang, H.; et al. Fabrication of hierarchical reduced graphene oxide decorated with core-shell Fe O @polypyrrole
                                                                                               3  4
                    heterostructures for excellent electromagnetic wave absorption. J. Colloid. Interface. Sci. 2023, 649, 943-54.  DOI
               45.       Wu, N.; Zhao, B.; Lian, Y.; et al. Metal organic frameworks derived NixSey@NC hollow microspheres with modifiable composition
                    and broadband microwave attenuation. Carbon 2024, 226, 119215.  DOI
               46.       Huyan, W.; Yao, J.; Tao, J.; et al. MXene@C heterogeneous nanocomposites with the 2D-0D structure for ultra-light and broadband
                    electromagnetic wave absorption. Carbon 2022, 197, 444-54.  DOI
               47.       Tian, X.; Xu, X.; Bo, G.; Su, X.; Yan, J.; Yan, Y. A 3D flower-like Fe O @PPy composite with core-shell heterostructure as a
                                                                    3  4
                    lightweight and efficient microwave absorbent. J. Alloys. Compd. 2022, 923, 166416.  DOI
               48.       Yang, D.; Tao, J.; Yang, Y.; et al. Effect interfacial size and multiple interface on electromagnetic shielding of silicon rubber/carbon
                    nanotube composites with mixing segregated particles. Compos. Struct. 2022, 292, 115668.  DOI
               49.       Liu, S.; He, M.; Zhang, D.; et al. New construction strategies of carbon-based composites for flexible electromagnetic interference
                    shielding films. Polym. Compos. 2024, 45, 5804-26.  DOI
               50.       Li, Z.; Xu, C.; Zheng, J.; et al. Robust and flexible composite aerogel films with porous multilayered structures toward broadband
                    electromagnetic wave absorption. J. Mater. Chem. C. 2024, 12, 3632-43.  DOI
               51.       Liu, Y.; Wang, F.; Wang, Y.; et al. A combined engineering of hollow and core-shell structures for C@MoS  microcapsules toward
                                                                                           2
                    high-efficiency electromagnetic absorption. Compos. Part. B. Eng. 2024, 273, 111244.  DOI
               52.       Zeng, Y.; Long, L.; Yu, J.; Li, Y.; Li, Y.; Zhou, W. High-efficiency electromagnetic wave absorption of lightweight Nb O /CNTs/
                                                                                                   2  5
                    polyimide with excellent thermal insulation and compression resistance integration. Compos. Sci. Technol. 2024, 250, 110531.  DOI
               53.       Shao, S.; Guo, C.; Wang, H.; et al. Multifunctional graphene/Ti C T MXene aerogel inlaid with Ni@TiO  core-shell microspheres for
                                                                                       2
                                                              2
                                                             3
                    high-efficiency electromagnetic wave absorption and thermal insulation. Chem. Eng. J. 2024, 488, 150918.  DOI
               54.       Qin, L.; Liu, S.; Qin, S.; Liao, L.; He, M.; Yu, J. MOF derived porous Ni/Co@C nanocomposite as electromagnetic wave absorber
                    with optimized impedance matching. Compos. Commun. 2022, 33, 101196.  DOI
               55.       Yu, M.; Huang, Y.; Liu, X.; Zhao, X.; Fan, W.; She, K. In situ modification of MXene nanosheets with polyaniline nanorods for
                    lightweight and broadband electromagnetic wave absorption. Carbon 2023, 208, 311-21.  DOI
               56.       Qin, L.; Liu, S.; Yang, J.; He, M.; Yu, J. Carbon nanotube modified hierarchical NiCo/porous nanocomposites with enhanced
                    electromagnetic wave absorption. J. Alloys. Compd. 2023, 966, 171599.  DOI
               57.       Pan, F.; Cai, L.; Shi, Y.; et al. Heterointerface engineering of β-chitin/carbon nano-onions/Ni-P composites with boosted maxwell-
                    wagner-sillars effect for highly efficient electromagnetic wave response and thermal management. Nanomicro. Lett. 2022, 14, 85.
                    DOI  PubMed  PMC
               58.       Zhang, Y.; Zhang, L.; Tang, L.; Du, R.; Zhang, B. S-NiSe/HG nanocomposites with balanced dielectric loss encapsulated in room-
                    temperature self-healing polyurethane for microwave absorption and corrosion protection. ACS. Nano. 2024, 18, 8411-22.  DOI
               59.       Dou, Y.; Zhang, X.; Zhao, X.; et al. N, O-doped walnut-like porous carbon composite microspheres loaded with Fe/Co nanoparticles
                    for adjustable electromagnetic wave absorption. Small 2024, 20, e2308585.  DOI
               60.       Liu, S.; Yang, J.; Fan, Q.; He, L.; Qin, S.; He, M. Surface modification of basalt fibers with improved reactivity, thermal stability, and
                    tensile strength. Fibers. Polym. 2024, 25, 3403-13.  DOI
               61.       Liu, S.; Luo, D.; He, M.; Qin, S. In situ crosslinking of silica aerogel with reactive carbon fiber for high mechanical property, thermal
                    insulation and superhydrophobicity. Micropor. Mesopor. Mat. 2024, 377, 113203.  DOI
               62.       Wei,  J.;  Shao,  G.;  Huang,  X.  Freeze-cast  Ni-MOF  nanobelts/chitosan-derived  magnetic  carbon  aerogels  for  broadband
                    electromagnetic wave absorption. ACS. Appl. Mater. Interfaces. 2024, 16, 20969-79.  DOI
               63.       Xu, P.; He, H.; Fang, J.; et al. Design and fabrication of a hollow nanobowl-like heterostructured PPy@Co/CoFe O @HNBC
                                                                                                  2  4
                    composite as a remarkable electromagnetic wave absorber. J. Alloys. Compd. 2022, 926, 166749.  DOI
               64.       Gao, Y.; Wu, Q.; Pan, L.; et al. Ordered heterostructured aerogel for multi-spectra stealth in microwave, infrared and visible light
                    bands. Chem. Eng. J. 2024, 484, 149422.  DOI
               65.       Zheng, S.; Wang, Y.; Wang, X.; Lu, H. Research progress on high-performance electromagnetic interference shielding materials with
                    well-organized multilayered structures. Mater. Today. Phys. 2024, 40, 101330.  DOI
               66.       Huang, P.; Wang, Y.; El-Shorbagy, M.; Akhtar, M. N.; Hoi, H. T. Optical and electromagnetic absorption features of hierarchical
                    pampon and cauliflower-like magneto/dielectric composite based absorber for C and X bands application. Ceram. Int. 2022, 48,
                    16280-9.  DOI
               67.       Deng, Y.; Ren, B.; Jia, Y.; Wang, Q.; Li, H. Layered composites made of polymer derived SiOC/ZrB  reinforced by ZrO /SiO  fibers
                                                                                                     2
                                                                                                  2
                                                                                     2
                    with simultaneous microwave absorption and thermal insulation. J. Mater. Sci. Technol. 2024, 196, 50-9.  DOI
               68.       Tang, Y.; Wang, Y.; Huang, M.; Wang, M. Effect of interfacial morphology on electromagnetic shielding performance of poly (l -
                    lactide)/polydimethylsiloxane/multi-walled carbon nanotube composites with honeycomb like conductive networks. Polym. Compos.
                    2024, 45, 2253-67.  DOI
   44   45   46   47   48   49   50   51   52   53   54