研究成果与著作 |
以第一或通讯作者发表论文40余篇,部分成果如下: [1] Qiang Wang, Xiaolei Su*, Yan Jia, Yi Liu*, et al., Regulation of microstructure and absorption properties of MXene materials: theoretical and experimental, Advanced Science, 2025, e09994. [2] Haipeng Xiang, Yi Liu*, et al., In-situ synthesis of Ni3Sn2S2 heterojunction to boost the polarization and electromagnetic performance of FeCoCrNiAl high-entropy alloy, Nano Research, 2026, 19(5): 94908494. [3] Haipeng Xiang, Yi Liu*, et al., Synergistic Optimization of Microwave Absorption and Thermal Properties via Morphology Control in Tin Disulfide Coated FeCoCrNiAl Powders, Rare Metals, 2026; 45:e70313. [4] Qiang Wang, Yi Liu*, et al., Influence of Reducing Agent Concentration on Properties of Flexible Microwave Absorbing Coating Containing Silver Coated FeSiAl Powders, Materials Today Nano, 2025, 29: 100603. [5] Haipeng Xiang, Yi Liu*, et al., Electromagnetic Wave Absorbing Properties of Flexible Thermal Conductive ZnO@FeSiAl Silicone Rubber, Materials Today Nano, 2025, 29, 100587. 已授权发明专利: [1] 一种银纳米线/生物质多孔碳电磁波吸收材料的制备方法,授权号: ZL 202010674108.4. [2] 一种钴铁合金/多孔碳电磁波吸收复合材料制备方法,授权号:ZL202010171082.1. [3] 一种银/生物质多孔碳电磁波吸收复合材料的制备方法, 授权号:ZL 202010674833.1. [4] 一种钛碳/镍复合粉体电磁波吸收剂及制备方法, 中国专利, 授权号:ZL 201810320992.4. [5] 一种钛硅碳/钴铁合金耐高温电磁波吸收剂及其制备方法,授权号:ZL 201710212078.3. [6] 一种钛硅碳/钴铁氧体电磁波吸收剂及制备方法, 中国专利, 授权号:ZL 201710121211.4. [7] 一种Ti3SiC2/Cu复合导电粉体的制备方法, 中国专利, 授权号:ZL 201710403789.9. [8] 一种Ti3SiC2/Ag复合导电粉体的制备方法, 中国专利, 授权号:ZL 201710404501.X. [9] 一种Co3Fe7磁性合金微粉吸收剂的制备方法, 中国专利, 授权号:ZL 201710212081.5. [10] 基于镀Ag三维石墨烯的双层柔性吸波涂层的制备方法,授权号:ZL 202311163874.4.
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