REFERENCES
1. Zhuo, L.; Shen, D.; Gou, P.; et al. Anisotropic high-strength polyimide-based electromagnetic interference shielding foam based on cation-π interaction. Chem. Eng. J. 2023, 477, 146992.
2. Chakraborty, T.; Saha, S.; Gupta, K.; et al. An effective microwave absorber using multi-layer design of carbon allotrope based Co2Z hexaferrite-polymer nanocomposite film for EMI shielding applications. Chem. Eng. J. 2024, 487, 150323.
3. Palsaniya, S.; Mukherji, S. Enhanced dielectric and electrostatic energy density of electronic conductive organic-metal oxide frameworks at ultra-high frequency. Carbon 2022, 196, 749-62.
4. Liu, S.; Chevali, V. S.; Xu, Z.; Hui, D.; Wang, H. A review of extending performance of epoxy resins using carbon nanomaterials. Compos. Part. B. Eng. 2018, 136, 197-214.
5. Yan, Y.; Zhang, K.; Qin, G.; et al. Phase engineering on MoS2 to realize dielectric gene engineering for enhancing microwave absorbing performance. Adv. Funct. Mater. 2024, 34, 2316338.
6. Gao, Z.; Iqbal, A.; Hassan, T.; Hui, S.; Wu, H.; Koo, C. M. Tailoring built-in electric field in a self-assembled zeolitic imidazolate framework/MXene nanocomposites for microwave absorption. Adv. Mater. 2024, 36, e2311411.
7. Zhang, S.; Pei, Y.; Zhao, Z.; Guan, C.; Wu, G. Simultaneous manipulation of polarization relaxation and conductivity toward self-repairing reduced graphene oxide based ternary hybrids for efficient electromagnetic wave absorption. J. Colloid. Interface. Sci. 2023, 630, 453-64.
8. Li, Z.; Zhu, H.; Rao, L.; et al. Wrinkle structure regulating electromagnetic parameters in constructed core-shell ZnFe2O4@PPy microspheres as absorption materials. Small 2024, 20, e2308581.
9. Ma, L.; Wei, L.; Hamidinejad, M.; Park, C. B. Layered polymer composite foams for broadband ultra-low reflectance EMI shielding: a computationally guided fabrication approach. Mater. Horiz. 2023, 10, 4423-37.
10. Xu, M.; Wei, L.; Ma, L.; et al. Microcellular foamed polyamide 6/carbon nanotube composites with superior electromagnetic wave absorption. J. Mater. Sci. Technol. 2022, 117, 215-24.
11. Guo, J.; Li, X.; Chen, Z.; et al. Magnetic NiFe2O4/polypyrrole nanocomposites with enhanced electromagnetic wave absorption. J. Mater. Sci. Technol. 2022, 108, 64-72.
12. Sun, Y.; Han, X.; Guo, P.; et al. Slippery graphene-bridging liquid metal layered heterostructure nanocomposite for stable high-performance electromagnetic interference shielding. ACS. Nano. 2023, 17, 12616-28.
13. Wu, J.; Wang, K.; Ye, S.; et al. One-pot synthesis of conductive metal–organic framework@polypyrrole hybrids with enhanced electromagnetic wave absorption performance. Small. Struct. 2024, 5, 2400205.
14. He, W.; Zheng, J.; Dong, W.; et al. Efficient electromagnetic wave absorption and Joule heating via ultra-light carbon composite aerogels derived from bimetal-organic frameworks. Chem. Eng. J. 2023, 459, 141677.
15. Guo, Z.; Ren, P.; Yang, F.; et al. Robust multifunctional composite films with alternating multilayered architecture for highly efficient electromagnetic interference shielding, Joule heating and infrared stealth. Compos. Part. B. Eng. 2023, 263, 110863.
16. Liu, S.; Qin, S.; He, M.; et al. Construction and application of flexible electromagnetic interference shielding films with multifunctionality. Compos. Commun. 2024, 50, 102011.
17. Zhao, T.; Jia, Z.; Liu, J.; Zhang, Y.; Wu, G.; Yin, P. Multiphase interfacial regulation based on hierarchical porous molybdenum selenide to build anticorrosive and multiband tailorable absorbers. Nanomicro. Lett. 2023, 16, 6.
18. Xu, P.; Huang, B.; Tang, R.; Wang, Z.; Tu, J.; Ding, Y. Improved mechanical and EMI shielding properties of PLA/PCL composites by controlling distribution of PIL-modified CNTs. Adv. Compos. Hybrid. Mater. 2022, 5, 991-1002.
19. Zhang, B.; Wu, C.; Ye, K.; Sun, C.; Wang, Z. Dual-induced SiC/SME multifunction composite for high - Efficiency broadband electromagnetic wave absorption. Carbon 2023, 213, 118253.
20. Wang, C.; Liu, Y.; Jia, Z.; Zhao, W.; Wu, G. Multicomponent nanoparticles synergistic one-dimensional nanofibers as heterostructure absorbers for tunable and efficient microwave absorption. Nanomicro. Lett. 2022, 15, 13.
21. Cheng, Z.; Zhou, J.; Liu, Y.; et al. 3D printed composites based on the magnetoelectric coupling of Fe/FeCo@C with multiple heterogeneous interfaces for enhanced microwave absorption. Chem. Eng. J. 2024, 480, 148188.
22. Zhou, B.; Song, J.; Wang, B.; Feng, Y.; Liu, C.; Shen, C. Robust double-layered ANF/MXene-PEDOT:PSS Janus films with excellent multi-source driven heating and electromagnetic interference shielding properties. Nano. Res. 2022, 15, 9520-30.
23. Yang, R.; Zhang, D.; Gao, H.; Wang, Y.; Li, N.; Zhang, H. Size-progressively-reduced FeCoNi@C nanoparticles spatially confined within polypyrrole-derived hollow carbon nanoboxes against electromagnetic contamination. Chem. Eng. J. 2024, 495, 153114.
24. Duan, Y.; Xu, P.; Liu, T.; et al. Design of PDMS/SiO2@MXene composites with “Floatable Interlayer” structure for the electromagnetic shielding behavior improvement. Chem. Eng. J. 2023, 461, 141853.
25. Yuan, L.; Zhao, W.; Miao, Y.; et al. Constructing core-shell carbon fiber/polypyrrole/CoFe2O4 nanocomposite with optimized conductive loss and polarization loss toward efficient electromagnetic absorption. Adv. Compos. Hybrid. Mater. 2024, 7, 864.
26. Sun, M.; Wang, D.; Xiong, Z.; et al. Multi-dimensional Ni@C-CoNi composites with strong magnetic interaction toward superior microwave absorption. J. Mater. Sci. Technol. 2022, 130, 176-83.
27. Dong, C.; Li, D.; Wang, H.; et al. CoSe2@polythiophene core-shell composites with enhanced interfacial polarization for high-performance broadband electromagnetic absorption. Carbon 2023, 215, 118459.
28. Sharma, G. K.; James, N. R. Aligned, carbon nanofibers containing barium titanate and their polydimethylsiloxane composites for electromagnetic interference shielding. Carbon 2024, 220, 118846.
29. Xu, C.; Ma, L.; Li, H.; et al. Biomass derived PANI/BPC composite with enhanced polarization loss for efficient electromagnetic wave absorption. Mater. Res. Bull. 2024, 176, 112805.
30. Cao, K.; Yang, X.; Zhang, Y.; et al. Preparation of magnetic three-dimensional porous Co-rGO aerogel for enhanced microwave absorption. Carbon 2023, 208, 111-22.
31. Yu, M.; Huang, Y.; Liu, X.; et al. Synthetic strategy of biomimetic sea urchin-like Co-NC@PANI modified MXene-based magnetic aerogels with enhanced electromagnetic wave absorption properties. Nano. Res. 2024, 17, 2025-37.
32. Liu, S.; Qin, S.; Jiang, Y.; Song, P.; Wang, H. Lightweight high-performance carbon-polymer nanocomposites for electromagnetic interference shielding. Compos. Part. A. Appl. Sci. Manuf. 2021, 145, 106376.
33. Liu, X.; Huang, Y.; Zhao, X.; Yan, J.; Zong, M. Flexible N-doped carbon fibers decorated with Cu/Cu2O particles for excellent electromagnetic wave absorption. J. Colloid. Interface. Sci. 2022, 616, 347-59.
34. Sharma, S.; Pratap, S. B.; Hur, S. H.; Choi, W. M.; Chung, J. S. Facile fabrication of stacked rGO/MoS2 reinforced polyurethane composite foam for effective electromagnetic interference shielding. Compos. Part. A. Appl. Sci. Manuf. 2023, 166, 107366.
35. Bai, Y.; Yang, H.; He, L.; Ge, C.; Zhai, R.; Zhang, X. Construction of core-shell BN-OH@Fe3O4@PAn nanocomposite with ultra-wide microwave absorption and efficiency thermal management. J. Alloys. Compd. 2023, 936, 168174.
36. Wang, C.; Wang, Y.; Jiang, H.; et al. Three-dimensional bamboo-like amorphous N/S co-doped carbon nanotubes encapsulated with Cu nanoparticles/carbon fiber heterostructures for boosting electromagnetic wave absorbing properties. Ceram. Int. 2023, 49, 2792-805.
37. Rao, L.; Li, Z.; Qian, Y.; et al. Heterointerface engineering in porous microspheres for magnetic-dielectric balance to boost electromagnetic wave absorption. Chem. Eng. J. 2024, 488, 150955.
38. Tan, D.; Wang, Q.; Li, M.; et al. Magnetic media synergistic carbon fiber@Ni/NiO composites for high-efficiency electromagnetic wave absorption. Chem. Eng. J. 2024, 492, 152245.
39. Feng, S.; Wang, H.; Ma, J.; et al. Fabrication of hollow Ni/NiO/C/MnO2@polypyrrole core-shell structures for high-performance electromagnetic wave absorption. Compos. Part. B. Eng. 2024, 275, 111344.
40. Dhugga, L. K.; Baskey, H. B.; Gaur, K. K.; Singh, D. P. Absorption dominant electromagnetic interference shielding in the novel polypyrrole-CaCu3Ti4O12-CoFe2O4 nanocomposites. Compos. Sci. Technol. 2023, 240, 110067.
41. Patle, V. K.; Mehta, Y.; Dwivedi, N.; Mondal, D.; Srivastava, A.; Kumar, R. Thermal insulating and fire-retardant lightweight carbon-slag composite foams towards absorption dominated electromagnetic interference shielding. Sustain. Mater. Technol. 2022, 33, e00453.
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.
43. Zhang, H.; Cao, F.; Xu, H.; et al. Plasma-enhanced interfacial engineering of FeSiAl@PUA@SiO2 hybrid for efficient microwave absorption and anti-corrosion. Nano. Res. 2023, 16, 645-53.
44. Dong, F.; Dai, B.; Zhang, H.; et al. Fabrication of hierarchical reduced graphene oxide decorated with core-shell Fe3O4@polypyrrole heterostructures for excellent electromagnetic wave absorption. J. Colloid. Interface. Sci. 2023, 649, 943-54.
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.
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.
47. Tian, X.; Xu, X.; Bo, G.; Su, X.; Yan, J.; Yan, Y. A 3D flower-like Fe3O4@PPy composite with core-shell heterostructure as a lightweight and efficient microwave absorbent. J. Alloys. Compd. 2022, 923, 166416.
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.
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.
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.
51. Liu, Y.; Wang, F.; Wang, Y.; et al. A combined engineering of hollow and core-shell structures for C@MoS2 microcapsules toward high-efficiency electromagnetic absorption. Compos. Part. B. Eng. 2024, 273, 111244.
52. Zeng, Y.; Long, L.; Yu, J.; Li, Y.; Li, Y.; Zhou, W. High-efficiency electromagnetic wave absorption of lightweight Nb2O5/CNTs/polyimide with excellent thermal insulation and compression resistance integration. Compos. Sci. Technol. 2024, 250, 110531.
53. Shao, S.; Guo, C.; Wang, H.; et al. Multifunctional graphene/Ti3C2T MXene aerogel inlaid with Ni@TiO2 core-shell microspheres for high-efficiency electromagnetic wave absorption and thermal insulation. Chem. Eng. J. 2024, 488, 150918.
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.
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.
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.
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.
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.
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.
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.
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.
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.
63. Xu, P.; He, H.; Fang, J.; et al. Design and fabrication of a hollow nanobowl-like heterostructured PPy@Co/CoFe2O4@HNBC composite as a remarkable electromagnetic wave absorber. J. Alloys. Compd. 2022, 926, 166749.
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.
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.
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.
67. Deng, Y.; Ren, B.; Jia, Y.; Wang, Q.; Li, H. Layered composites made of polymer derived SiOC/ZrB2 reinforced by ZrO2/SiO2 fibers with simultaneous microwave absorption and thermal insulation. J. Mater. Sci. Technol. 2024, 196, 50-9.
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.
69. Ma, R.; Yi, S.; Li, J.; et al. Highly efficient electromagnetic interference shielding and superior mechanical performance of carbon nanotube/polydimethylsiloxane composite with interface-reinforced segregated structure. Compos. Sci. Technol. 2023, 232, 109874.
70. Ma, Z.; Jiang, R.; Jing, J.; et al. Lightweight dual-functional segregated nanocomposite foams for integrated infrared stealth and absorption-dominant electromagnetic interference shielding. Nanomicro. Lett. 2024, 16, 223.
71. Tan, Y.; Xue, Y.; Li, K.; et al. PVDF/MWCNTs/RGO@Fe3O4/AgNWs composite film with a bilayer structure for high EMI shielding and electrical conductivity. Polym. Compos. 2023. DOI: 10.1002/pc.27803.
72. Liu, T.; Zhang, N.; Zhang, K.; Wang, Y.; Qi, Y.; Zong, M. Multi-components matching manipulation of MXene/PPy@β2-SiW11Co/Fe3O4 nanocomposites for enhancing electromagnetic wave absorption performance. Compos. Part. A. Appl. Sci. Manuf. 2022, 159, 107020.
73. Zhang, Y.; Feng, Y.; Li, J.; et al. Multi-interfacial bridging engineering of flexible MXene film for efficient electromagnetic shielding and energy conversion. J. Colloid. Interface. Sci. 2024, 665, 733-41.
74. Tao, W.; Ma, M.; Liao, X.; et al. Cellulose nanofiber/MXene/mesoporous carbon hollow spheres composite films with porous structure for deceased reflected electromagnetic interference shielding. Compos. Commun. 2023, 41, 101647.
75. Tang, P.; Li, M.; Du, J.; et al. Construction of Fe3O4/PANI composites with hollow 0D/1D structures for efficient microwave absorption. Appl. Surf. Sci. 2024, 649, 159183.
76. Wang, X.; Li, C.; Geng, H.; et al. Tunable dielectric properties and electromagnetic wave absorbing performance of MoS2/Fe3O4/PANI composite. Colloid. Surfaces. A. 2022, 637, 128285.
77. Xiao, C.; Liu, S.; Gong, Y.; Liu, Y.; He, M.; Yu, J. Reinforcement of polyamide 6 with carbon fiber surface modified by a polar cross-linked network interfacial phase. J. Mater. Res. Technol. 2023, 24, 362-75.
78. Liu, X.; Sun, H.; Yan, W.; Yang, S.; Jiang, X. Fabrication and microwave absorption properties of FeSiAl@PANI composites. ACS. Appl. Electron. Mater. 2024, 6, 394-405.
79. Hu, K.; Wan, X.; Lai, S.; et al. Preparation of polyaniline/sludge fly ash with improved electromagnetic microwave absorption performance. Mater. Lett. 2022, 316, 132061.
80. Tho, P.; Tran, N.; Tuan, N.; et al. Detailed microwave loss mechanisms for nanocomposites of La-doped BaFe12O19 and polyaniline. Ceram. Int. 2023, 49, 23669-79.
81. Liu, Z.; Zhao, X.; Jiang, X.; Yan, X.; Yu, L. Carbon microspheres/carbon sheets as efficient electromagnetic wave absorbers. Micropor. Mesopor. Mat. 2024, 372, 113090.
82. Wu, W.; Yuan, S.; Zhang, W.; et al. Preparation and performance of a bamboo-based electromagnetic wave absorber by interfacial polymerization of graphene oxide/polyaniline. Arab. J. Chem. 2024, 17, 105651.
83. Liu, X.; Huang, Y.; Zhao, X.; Han, X.; Jia, Y.; Zong, M. Core-shell N-doped carbon nanofibers@poly(3,4-ethylenedioxythiophene): Flexible composite fibers for enhanced electromagnetic wave absorption. Compos. Part. A. Appl. Sci. Manuf. 2022, 163, 107227.
84. Çelebi, N.; Soysal, F.; Salimi, K. Well-defined core/shell pDA@Ni-MOF heterostructures with photostable polydopamine as electron-transfer-template for efficient photoelectrochemical H2 evolution. Int. J. Hydrogen. Energy. 2022, 47, 13828-37.
85. Li, X.; Luo, J.; Wang, Q.; Wu, Y.; Dai, Z.; Xie, Y. Polydopamine-derived nitrogen-doped carbon coupled with MoSe2 nanosheets composites toward high-efficiency electromagnetic wave absorption. Carbon 2024, 225, 119119.
86. Jiang, W.; Jiang, B.; Yang, J.; Wang, M. Q.; Li, Y. High electrical conductivity and π–π stacking interface design for tunable electromagnetic wave absorption composite foams. J. Mater. Chem. C. 2022, 10, 15458-65.
87. Li, Y.; Li, X.; Li, Q.; Zhao, Y.; Wang, J. Low-energy-consumption fabrication of porous TPU/graphene composites for high-performance microwave absorption and the influence of Fe3O4 incorporation. J. Alloys. Compd. 2022, 909, 164627.
88. Li, Y.; Zhang, D.; Zhou, B.; et al. Synergistically enhancing electromagnetic interference shielding performance and thermal conductivity of polyvinylidene fluoride-based lamellar film with MXene and graphene. Compos. Part. A. Appl. Sci. Manufa. 2022, 157, 106945.
89. Xu, Y.; Tan, Y.; Xue, Y.; et al. A novel PVA/MWCNTs hydrogel with high toughness and electromagnetic shielding properties. Polym. Eng. Sci. 2023, 63, 3555-64.
90. Yang, R.; Zhou, Y.; Ren, Y.; et al. Promising PVDF-CNT-Graphene-NiCo chains composite films with excellent electromagnetic interference shielding performance. J. Alloys. Compd. 2022, 908, 164538.
91. Yang, R.; Tan, Y.; Zhou, T.; et al. A PVDF/MWCNTs/GO@MWCNTs/AgNWs bilayer structured composite film with ultra-high EMI shielding and conductivity performance. Polym. Compos. 2024, 45, 11044-61.
92. Liu, Y.; Zhan, Y.; He, M.; et al. Amino-functionalized carbon fiber/polyamide 6 composites with enhanced interfacial and mechanical properties. J. Mater. Res. Technol. 2022, 20, 3229-40.
93. Feng, Y.; Liao, H.; Wang, J. Multifunctional melamine-based multilayer foam with heterogeneous alternating structure towards electromagnetic interference shielding. Colloid. Surface. A. 2023, 674, 131953.
94. Du, B.; Zhang, G.; Huan, X.; et al. Electrostatically self-assembled Fe3O4@SiO2/MXene 3D interlayered structure improves Ku-band microwave absorption efficiency of epoxy-based nanocomposites. Compos. Part. A. Appl. Sci. Manuf. 2024, 177, 107956.
95. Qian, Y.; Luo, Y.; Haruna, A. Y.; et al. Multifunctional epoxy-based electronic packaging material MDCF@LDH/EP for electromagnetic wave absorption, thermal management, and flame retardancy. Small 2022, 18, e2204303.
96. Luo, J.; Yang, X.; Xue, Y.; et al. High-performance, multifunctional, and designable carbon fiber felt skeleton epoxy resin composites EP/CF-(CNT/AgBNs)x for thermal conductivity and electromagnetic interference shielding. Small 2024, 20, e2306828.
97. Anju; Masař, M.; Machovský, M.; et al. Optimization of CoFe2O4 nanoparticles and graphite fillers to endow thermoplastic polyurethane nanocomposites with superior electromagnetic interference shielding performance. Nanoscale. Adv. 2024, 6, 2149-65.
98. Sun, Z.; Shen, J.; Chen, W.; et al. High-performance polyurethane composite elastomers with coral reef-like hierarchical heterostructures for electromagnetic wave absorption and flexible sensing. Mater. Today. Chem. 2024, 35, 101840.
99. Xiao, W.; Zhang, L.; Zhang, S.; Yan, J.; Zhang, G.; Gao, J. Electrically conductive and magnetic nanofiber composites with an asymmetric structure for efficient electromagnetic interference shielding. Colloids. Surf. A. Physicochem. Eng. Asp. 2023, 675, 132063.
100. Ye, L.; Liu, L.; Yin, G.; et al. Highly conductive, hydrophobic, and acid/alkali-resistant MXene@PVDF hollow core-shell fibers for efficient electromagnetic interference shielding and Joule heating. Mater. Today. Phys. 2023, 35, 101100.
101. Suresh, S.; Krishnan, V. G.; Dasgupta, D.; Surendran, K. P.; Gowd, E. B. Directional-freezing-enabled MXene orientation toward anisotropic PVDF/MXene aerogels: orientation-dependent properties of hybrid aerogels. ACS. Appl. Mater. Interfaces. 2023, 15, 49567-82.
102. Lee, S.; Nguyen, N. K.; Kim, M.; Park, P.; Nah, J. Conductivity-controlled polyvinylidene fluoride nanofiber stack for absorption-dominant electromagnetic interference shielding materials. ACS. Appl. Mater. Interfaces. 2023, 15, 33180-9.
103. Guo, Z.; Ren, P.; Yang, F.; et al. MOF-derived Co/C and MXene co-decorated cellulose-derived hybrid carbon aerogel with a multi-interface architecture toward absorption-dominated ultra-efficient electromagnetic interference shielding. ACS. Appl. Mater. Interfaces. 2023, 15, 7308-18.
104. Du, Y.; Xu, J.; Fang, J.; et al. Ultralight, highly compressible, thermally stable MXene/aramid nanofiber anisotropic aerogels for electromagnetic interference shielding. J. Mater. Chem. A. 2022, 10, 6690-700.
105. Lu, X.; Zhu, D.; Li, X.; Wang, Y. Architectural design and interfacial engineering of CNTs@ZnIn2S4 heterostructure/cellulose aerogel for efficient electromagnetic wave absorption. Carbon 2022, 197, 209-17.
106. Lu, Z.; Wang, Y.; Di, X.; Wang, N.; Cheng, R.; Yang, L. Heterostructure design of carbon fiber@graphene@layered double hydroxides synergistic microstructure for lightweight and flexible microwave absorption. Carbon 2022, 197, 466-75.
107. Sun, M.; Guo, Z.; Zhang, W.; et al. A strategy to fabricate hierarchical microporous architecture of polyimide nanofibrous aerogels with efficient electromagnetic wave absorption and thermal insulation. Compos. Part. A. Appl. Sci. Manuf. 2024, 177, 107940.
108. Geng, T.; Yu, G.; Shao, G.; Huang, X. Enhanced electromagnetic wave absorption properties of ZIF-67 modified polymer-derived SiCN ceramics by in situ construction of multiple heterointerfaces. Rare. Met. 2023, 42, 1635-44.