◆发表论文
代表性第一作者/最后通讯作者论文:
[1] Construction of NiCo2O4/NiCoO2 co-embedded porous bio-carbon with rich heterogeneous interfaces for excellent bacteriostatic microwave radiation protection. Carbon, 2025, 232: 119798. (通讯作者, IF=10.5)
[2] Multiple Tin compounds modified carbon fibers to construct heterogeneous interfaces for corrosion prevention and electromagnetic wave absorption. Nano-Micro Letters, 2025, 17: 23. (通讯作者, IF=31.6)
[3] Research progress of structural regulation and composition optimization to strengthen absorbing mechanism in emerging composites for efficient electromagnetic protection. Journal of Materials Science & Technology, 2025, 204: 204-223. (第一作者, IF=11.2,ESI高被引论文)
[4] Microporous cobalt ferrite with bio-carbon loosely decorated to construct multi-functional composite for dye adsorption, anti-bacteria and electromagnetic protection. Small, 2024, 20(45): 2404449. (通讯作者, IF=13.0)
[5] Constructing mixed-dimensional lightweight magnetic cobalt-based composites heterostructures: An effective strategy to achieve boosted microwave absorption and self-anticorrosion. Journal of Materials Science & Technology, 2024, 196: 60-70. (通讯作者, IF=11.2,ESI高被引论文)
[6] Multi-mode tunable electromagnetic wave absorber based on hollow nano-cage structure and self-anticorrosion performance. Advanced Composites and Hybrid Materials, 2024, 7: 40. (通讯作者, IF=23.2,ESI高被引论文)
[7] Multi-level hollow sphere rich in heterojunctions with dual function: efficient microwave absorption and antiseptic. Journal of Materials Science & Technology, 2024, 189: 155-165. (通讯作者, IF=11.2,ESI高被引论文/热点论文)
[8] Controllable heterogeneous interfaces and dielectric modulation of biomass-derived nanosheets metal-sulfide complexes for high-performance electromagnetic wave absorption. Journal of Materials Science & Technology, 2024, 185: 165-173. (通讯作者, IF=11.2)
[9] Structural engineering of porous biochar loaded with ferromagnetic/anti-ferromagnetic NiCo2O4/CoO for excellent electromagnetic dissipation with flexible and self-cleaning properties. Journal of Materials Science & Technology, 2024, 180: 12-22. (第一作者, IF=11.2)
[10] Multiphase interfacial regulation based on hierarchical porous molybdenum selenide to build anticorrosive and multiband tailorable absorbers. Nano-Micro Letters, 2024, 16: 6. (通讯作者, IF=31.6)
[11] Modulation engineering of electromagnetic wave absorption performance of layered double hydroxides derived hollow metal carbides integrating corrosion protection. Small, 2024, 20(8): 2305849. (通讯作者, IF=13.0)
[12] Construction of three-dimensional conductive network and heterogeneous interfaces via different ratio for tunable microwave absorption. Advanced Composites and Hybrid Materials, 2023, 6: 187. (通讯作者, IF=23.2,ESI高被引论文)
[13] Self-assembled MoS2 cladding for corrosion resistant and frequency-modulated electromagnetic wave absorption materials from X-band to Ku-band. Small, 2023, 19(52): 2304932. (通讯作者, IF=13.0,ESI高被引论文)
[14] Anion exchange of metal particles on carbon-based skeletons for promoting dielectric equilibrium and high-efficiency electromagnetic wave absorption. Small, 2023, 19(42): 2303463. (通讯作者, IF=13.0,ESI高被引论文)
[15] Customized dielectric-magnetic balance enhanced electromagnetic wave absorption performance in CuxS/CoFe2O4 composites. Chemical Engineering Journal, 2023, 457: 140876. (通讯作者, IF=13.3)
[16] Hierarchically flower-like structure assembled with porous nanosheet-supported MXene for ultrathin electromagnetic wave absorption. Chemical Engineering Journal, 2023, 454: 140277. (通讯作者, IF=13.3,ESI高被引论文)
[17] Multiple dimension-component designed Co/Co9S8/Ti3C2Tx MXene composite for enhanced microwave absorption. Applied Physics Letters, 2023, 122: 131901. (通讯作者, IF=3.5,自然指数期刊,ESI高被引论文)
[18] Metal-organic framework-derived carbon nanotubes for broadband electromagnetic wave absorption. Chemical Engineering Journal, 2022, 450: 138205. (通讯作者, IF=13.3,ESI高被引论文)
[19] Structure regulation in N-doping biconical carbon frame decorated with CoFe2O4 and (Fe,Ni) for broadband microwave absorption. Chemical Engineering Journal, 2022, 446: 136975. (第一作者, IF=13.3,ESI高被引论文)
[20] Porous carbon sphere decorated with Co/Ni nanoparticles for strong and broadband electromagnetic dissipation. Carbon, 2022, 197: 389-399. (通讯作者, IF=10.5)
专利软著:
[1] 殷鹏飞, 唐玉挺, 马国娟, 罗玉梅. 一种氮掺杂微波吸收材料及其制备方法. 发明专利, ZL202210350319.1;
[2] 殷鹏飞, 罗玉梅, 马国娟, 刘骏驰. 一种生物质多孔碳吸波材料结构. 实用新型专利, ZL202123245822.0;
[3] 殷鹏飞, 邓玉, 张蓉. 一种空气中微纳米带电粉体荷质比的非接触测量装置. 实用新型专利, ZL201721375271.0;
[4] 殷鹏飞, 邓玉, 李华耀, 陶雨, 李尤宏羽, 祁亚利. 一种带有金属屏蔽板的吸波材料结构. 实用新型专利, ZL201721488183.1;
[5] 殷鹏飞, 邓玉, 李华耀, 陶雨, 李尤宏羽, 祁亚利. 一种组合式吸波材料结构装置. 实用新型专利, ZL201721488203.5;
[6] 殷鹏飞, 邓玉, 李尤宏羽, 李华耀, 陶雨, 祁亚利. 复层式吸波材料结构. 实用新型专利, ZL201721389454.8;
[7] 殷鹏飞, 邓玉, 李尤宏羽, 李华耀, 陶雨, 祁亚利. 通风用吸波材料结构. 实用新型专利, ZL201721389442.5;
[8] 殷鹏飞, 邓玉, 陶雨, 李尤宏羽, 李华耀, 祁亚利. 一种带有吸波材料的污水过滤器. 实用新型专利, ZL201721488184.6;
[9] 殷鹏飞, 邓玉. 材料电磁参数及吸波性能计算软件V1.0, 2018SR569685。