Journal of Inorganic Materials
Previous Articles Next Articles
LIU Weiheng, LUO Juhua, JIAO Yingzhi, DAI Ziyang, FENG Mengna
Received:2026-07-05
Revised:2026-08-24
Contact:
LUO Juhua, professor. E-mail: ljh@ycit.edu.cn
About author:LIU Weiheng (1999–), male, Master candidate. E-mail: 1272395604@qq.com
Supported by:CLC Number:
LIU Weiheng, LUO Juhua, JIAO Yingzhi, DAI Ziyang, FENG Mengna. Structural Modulation and Microwave Absorption Performance of Bi-MOF-derived Bi/Bi2O3@C Composites[J]. Journal of Inorganic Materials, DOI: 10.15541/jim20260289.
| [1] HAN Y X, YANG Y R, LI T H,et al. Hierarchical heterogeneous Co-based magnetic absorbers for superior broadband high-efficiency microwave absorption. Advanced Functional Materials, 2026, 36(24): e25719. [2] GAO B S, YAN Y F, ZHANG K L,et al. Ultralight broadband electromagnetic wave absorption enabled by interface-engineered two-layered periodic carbon fiber fabrics. Advanced Functional Materials, 2026, 36(36): e32108. [3] XIAO J X, ZHAN B B, TAN Z Y,et al. Integration of photo-driven rapid self-healing and environmental robustness for durable electromagnetic wave absorbing elastomers. InfoMat, 2026, 8(4): e70127. [4] LUO J H, FENG M N, DAI Z Y,et al. MoS2 wrapped MOF-derived N-doped carbon nanocomposite with wideband electromagnetic wave absorption. Nano Research, 2022, 15(7): 5781. [5] CHENG M L, REN W L, LI H X,et al. Multiscale collaborative coupling of wood-derived porous carbon modified by three-dimensional conductive magnetic networks for electromagnetic interference shielding. Composites Part B: Engineering, 2021, 224: 109169. [6] HAN G Y, WANG Q, DING F F,et al. Assembly of partially unzipped multiwalled carbon nanotubes into ultralight, highly efficient and multifunctional electromagnetic wave absorbing aerogel. Carbon, 2023, 213: 118220. [7] ZHANG K L, LIU Y H, LIU Y N,et al. Tracking regulatory mechanism of trace Fe on graphene electromagnetic wave absorption. Nano-Micro Letters, 2024, 16(1): 66. [8] ZHANG J Y, CHEN L L, CAI J N,et al. Overcoming the compatibility challenge with a biomimetic mandala heterostructure for cross-spectrum electromagnetic wave absorption and efficient electrothermal deicing. Small, 2026, 22(37): e73816. [9] JI R, ZHOU G Y, LIANG K X,et al. Boosting the electromagnetic protective, thermal dissipative, mechanical, and waterproof properties of C/Co porous particles through Fe-doping and magnetic-field-orientation engineering. Chemical Engineering Journal, 2026, 531: 173912. [10] LIU Q T, LIU X F, FENG H B,et al. Metal organic framework-derived Fe/carbon porous composite with low Fe content for lightweight and highly efficient electromagnetic wave absorber. Chemical Engineering Journal, 2017, 314: 320. [11] REHMAN S U, XU S, LI Z H,et al. Hierarchical-bioinspired MOFs enhanced electromagnetic wave absorption. Small, 2024, 20(6): e2306466. [12] WEN H L, XU W, LIN S,et al. Enhanced microwave absorption using multiple heterostructures derived from in-situ grown Sn-metal-organic framework on La-doped Fe3O4. Carbon, 2024, 230: 119613. [13] HUANG M Q, LI B X, QIAN Y T,et al. MOFs-derived strategy and ternary alloys regulation in flower-like magnetic-carbon microspheres with broadband electromagnetic wave absorption. Nano-Micro Letters, 2024, 16(1): 245. [14] ZHANG X, QIAO J, JIANG Y Y,et al. Carbon-based MOF derivatives: emerging efficient electromagnetic wave absorption agents. Nano-Micro Letters, 2021, 13(1): 135. [15] LUO J H, LI X P, YAN W X,et al. RGO supported bimetallic MOFs-derived Co/MnO/porous carbon composite toward broadband electromagnetic wave absorption. Carbon, 2023, 205: 552. [16] LIU Y N, SU X G, LAN D,et al. Bimetallic MOF-derived CoZn-C/MWCNTs composite for lightweight and wideband microwave absorption. Acta Physico-Chimica Sinica, 2026, 42(6): 100276. [17] REN S N, YU H J, WANG L,et al. State of the art and prospects in metal-organic framework-derived microwave absorption materials. Nano-Micro Letters, 2022, 14(1): 68. [18] QIAO J, ZHANG X, LIU C,et al. Non-magnetic bimetallic MOF-derived porous carbon-wrapped TiO2/ZrTiO4 composites for efficient electromagnetic wave absorption. Nano-Micro Letters, 2021, 13(1): 75. [19] ZHANG X, TIAN X L, WU N, ,et al. Metal-organic frameworks with fine-tuned interlayer spacing for microwave absorption. Science Advances. Metal-organic frameworks with fine-tuned interlayer spacing for microwave absorption. Science Advances, 2024, 10(11): eadl6498. [20] WANG G Z, LIU Y Y, HUANG B B,et al. A novel metal-organic framework based on bismuth and trimesic acid: synthesis, structure and properties. Dalton Transactions, 2015, 44(37): 16238. [21] CHE R C, PENG L M, DUAN X F,et al. Microwave absorption enhancement and complex permittivity and permeability of Fe encapsulated within carbon nanotubes. Advanced Materials, 2004, 16(5): 401. [22] LI L L, JIANG H C, XU N,et al. Stable bismuth phosphosulfide nanoparticle encapsulation into hollow multi-channel carbon nanofibers toward high performance sodium storage. Journal of Materials Chemistry A, 2021, 9(32): 17336. [23] ZHAO L, XIAO X, PENG L,et al. Visible-light photocatalytic mechanism of bisphenol-A on nano-Bi2O3: a combined DFT calculation and experimental study. RSC Advances, 2014, 4(20): 10343. [24] TUINSTRA F, KOENIG J L.Raman spectrum of graphite.The Journal of Chemical Physics, 1970, 53(3): 1126. [25] FERRARI A C, BASKO D M.Raman spectroscopy as a versatile tool for studying the properties of graphene.Nature Nanotechnology, 2013, 8(4): 235. [26] XIAO Y B, GUO S J, OUYANG Y,et al. Constructing heterogeneous structure in metal-organic framework-derived hierarchical sulfur hosts for capturing polysulfides and promoting conversion kinetics. ACS Nano, 2021, 15(11): 18363. [27] WANG Y R, ZHANG Q.Temperature-dependent tailoring of the pore structure based on MOF-derived carbon electrodes for electrochemical capacitors.RSC Advances, 2023, 13(26): 18145. [28] LI X, HU R Z, XIONG Z Q,et al. Metal-organic gel leading to customized magnetic-coupling engineering in carbon aerogels for excellent radar stealth and thermal insulation performances. Nano-Micro Letters, 2024, 16(1): 42. [29] WANG T, CHEN G, ZHU J H,et al. Deep understanding of impedance matching and quarter wavelength theory in electromagnetic wave absorption. Journal of Colloid and Interface Science, 2021, 595: 1. [30] COLE K S, COLE R H.Dispersion and absorption in dielectrics I. alternating current characteristics.The Journal of Chemical Physics, 1941, 9(4): 341. [31] LI J S, LU W B, SUHR J,et al. Superb electromagnetic wave-absorbing composites based on large-scale graphene and carbon nanotube films. Scientific Reports, 2017, 7: 2349. [32] MA Z, CAO C T, LIU Q F,et al. A new method to calculate the degree of electromagnetic impedance matching in one-layer microwave absorbers. Chinese Physics Letters, 2012, 29(3): 038401. [33] WU Y, ZHAO Y, ZHOU M,et al. Ultrabroad microwave absorption ability and infrared stealth property of nano-micro CuS@rGO lightweight aerogels. Nano-Micro Letters, 2022, 14(1): 171. |
| [1] | LI Yang, CHEN Jianing, QING Yuchang, FAN Bingbing. Interface Modulation and Microwave Absorbing Mechanism of Ti4O7/CoNi/CNT Heterostructures [J]. Journal of Inorganic Materials, 2026, 41(7): 915-922. |
| [2] | ZHANG Xiaomin, TONG Liangyu, GAO Hongjie, CHEN Xu, YAN Huhu, GAO Yang. 3D Network-structured Fly Ash Microbeads@Carbon Nanotubes Composites for Electromagnetic Wave Absorption [J]. Journal of Inorganic Materials, 2026, 41(2): 208-216. |
| [3] | WANG Yue, WANG Xin, YU Xianli. Room-temperature Ferromagnetic All-carbon Films Based on Reduced Graphene Oxide [J]. Journal of Inorganic Materials, 2025, 40(3): 305-313. |
| [4] | LIU Pengdong, WANG Zhen, LIU Yongfeng, WEN Guangwu. Research Progress on the Application of Silicon Slurry in Lithium-ion Batteries [J]. Journal of Inorganic Materials, 2024, 39(9): 992-1004. |
| [5] | MA Yongjie, LIU Yongsheng, GUAN Kang, ZENG Qingfeng. Gas-phase Kinetic Study of Pyrolysis in the System of CH4+C2H5OH+Ar [J]. Journal of Inorganic Materials, 2024, 39(11): 1235-1244. |
| [6] | LI Kunru, HU Xinghui, ZHANG Zhengfu, GUO Yuzhong, HUANG Ruian. Three-dimensional Porous Biogenic Si/C Composite for High Performance Lithium-ion Battery Anode Derived from Equisetum Fluviatile [J]. Journal of Inorganic Materials, 2021, 36(9): 929-935. |
| [7] | HE Yong-Qin, LI Xiao-Yun, ZHANG Jing-Xian, LI Xiao-Guang. In situ Pyrolyzed Carbon on the Property of AlN-based Microwave Attenuation Ceramics [J]. Journal of Inorganic Materials, 2018, 33(4): 421-426. |
| [8] | ZHENG Jin-Huang, LI He-Jun, CUI Hong, WANG Yi, DENG Hai-Liang, YIN Zhong-Yi, YAO Dong-Mei, SU Hong. Relations between Needling Processing Parameters and Tensile Strength of C/C Composites [J]. Journal of Inorganic Materials, 2017, 32(11): 1147-1153. |
| [9] | XU Jian, TANG Zhe-Peng, PENG Yu-Qing, GU Chuan-Qing, KOYO Norinaga, LI Ai-Jun. Numerical Simulation for Influence of Surface Area/Volume Ratio and Inlet Gas Pressure on Pyrolytic Carbon Texture [J]. Journal of Inorganic Materials, 2016, 31(12): 1327-1334. |
| [10] | SHEN Xue-Tao, LI Wei, LI Ke-Zhi. Microstructure and Mechanical Properties of C/C-ZrC Composites [J]. Journal of Inorganic Materials, 2015, 30(5): 459-466. |
| [11] | TANG Ying-Mao, MIAO Qing-Qing, XIAO Li-Ren, QIAN Qing-Rong, CHEN Qing-Hua. Preparation and Characterization of Electrospun Magnetic Carbon Composite Nanofibres [J]. Journal of Inorganic Materials, 2014, 29(8): 827-834. |
| [12] | NI Xin-Ye, TANG Xiao-Bin, LIN Tao, GENG Chang-Ran, CAI Lei-Ming, GU Wei-Dong, CHEN Da. Friction of Pyrolytic Carbon Coating Prepared by Gradient CVD on Medical Carbon/Carbon Composites Surface [J]. Journal of Inorganic Materials, 2012, 27(5): 545-549. |
| [13] | REN Xiao-Bin, LI He-Jun, LU Jin-Hua, GUO Ling-Jun, WANG Jie, SONG Xin-Rui. Influence of Interlayer’s Thickness on Strength of Joints between LAS Glass-ceramic and Carbon/Carbon Composites [J]. Journal of Inorganic Materials, 2011, 26(8): 847-851. |
| [14] | SHEN Xue-Tao,LI Ke-Zhi,LI He-Jun,FENG Tao,ZHANG Lei-Lei,WANG Bin. Thermochemical Erosion of Hafnium Carbide Modified Carbon/Carbon Composite Throat in a Small Solid Rocket Motor [J]. Journal of Inorganic Materials, 2011, 26(4): 427-432. |
| [15] | SU Zhe-An, YANG Xin, HUANG Qi-Zhong, HUANG Bai-Yun, ZHANG Ming-Yu, HUANG Yan. Influenceof Chemical Vapor Reaction SiC Coating on Mechanical Properties of C/C Composites [J]. Journal of Inorganic Materials, 2011, 26(3): 233-238. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||