[ 1 ]王全磊 , 孙珊珊 , 朱岩岩 , 等 . 吸波材料与屏蔽材料的研究现状及进展[ J ] . 山东化工 , 2022, 51(14): 117 - 119. [2]Tian K, Hu D, Wei Q, et al. Recent progress on multifunctional electromagnetic interference shielding polymer composites[J]. Journal of Materials Science & Technology, 2023, 134: 106-131. [3]孙佳文, 朱曜峰. 多相碳粒硅橡胶柔性吸波膜的制备及其性能[J]. 浙江理工大学学报(自然科学版), 2022, 47(4): 533-541. [4]Huang Q, Bao C, Wang Q, et al. Tuning the microwave absorption capacity of TiP 2O 7 by composited with biomass carbon[J]. Applied Surface Science, 2020, 515: 145974. [5]叶喜葱, 高琦, 何恩义, 等. 熔融沉积成形锰锌铁氧体/聚乳酸复合材料的力学和吸波性能[J]. 复合材料学报, 2023, 40(5): 2744-2756. [6]周必成, 王东红, 贾琨, 等. 羰基铁吸波材料性能提升研究进展[J]. 科学技术与工程, 2021, 21(8): 2989-2996. [7]Chen M D, Yu H Z, Jie X H, et al. Optimization on microwave absorbing properties of carbon nanotubes and magnetic oxide composite materials[J]. Applied Surface Science, 2018, 434: 1321-1326. [8]Entezari H, Almasi-Kashi M, Alikhanzadeh-Arani S. Comparative study of the electromagnetic wave absorption properties in (FeNi, CoNi and FeCo)/ZnS nanocomposites[J]. Journal of Cluster Science, 2022, 33(6): 2689-2696. [9]Li N N, Shu R W, Zhang J B, et al. Synthesis of ultralight three-dimensional nitrogen-doped reduced graphene oxide/multi-walled carbon nanotubes/zinc ferrite composite aerogel for highly efficient electromagnetic wave absorption[J]. Journal of Colloid and Interface Science, 2021, 596: 364-375. [10]倪梦然, 张超智, 高蕾. 石墨烯基吸波材料的研究进展[J]. 南京大学学报(自然科学), 2022, 58(3): 540-559.
[1]薛飞,朱流,王金芳,等.化学活化诱导碳化钨化学镀镍铜磷三元合金的研究[J].浙江理工大学学报,2015,33-34(自科5):635.
XUE Fei,ZHU Liu,WANG Jin fang,et al.Investigation on Ni Cu P Ternary Alloy by Wolfram Carbide ChemicalPlating Induced by Chemical Activation[J].Journal of Zhejiang Sci-Tech University,2015,33-34(自科一):635.