李逸兴

发稿时间:2024-02-27浏览次数:14

李逸兴

九三学社社员

E-mailliyx@mail.neu.edu.cn


1. 教育经历:

12012.092016.06,东北大学,美高梅mgm1888-官方网站-App Store,工学学士

22016.092020.07,东北大学,美高梅mgm1888-官方网站-App Store,工学博士,导师:秦高梧、张雪峰


2. 科研与工作经历

12020.082022.12,东北大学,美高梅mgm1888-官方网站-App Store,讲师

22020.082022.10,东北大学,冶金学院,博士后

32023.01至今,东北大学,美高梅mgm1888-官方网站-App Store,副教授


3. 研究方向

1)电磁兼容材料制备及性能研究

2)高频磁性材料设计与制备

3)六角铁氧体制备与性能研究


4. 科研项目

1)国家自然科学基金青年项目,2023.012025.12,渗碳体(Fe3C)软磁材料平面各向异性设计及微波吸收性能,在研,主持

2)国家自然科学基金区域联合重点项目,2023.012026.12Mn基磁相变合金中压磁发电效应和电场调控磁斯格明子研究,在研,参与

3)辽宁省科技计划面上项目,轻质非金属元素掺杂铁磁@石墨复合纳米胶囊结构设计、制备及微波吸收机理研究,2021.082023.07,结题,主持


5. 发表论文

2023年:

1Y. X. Li, L. L. Yang, Y. J. Liao, R. Z. Zhao, L. Z. Ji, R. Su, D. K. Xu*, F. H. Wang, Photothermal Heating-Assisted Superior Antibacterial and Antibiofilm Activity of High-Entropy-Alloy Nanoparticles. Adv. Funct. Mater. (2023), 33(35), 2302712.

2J. C. Ruan, Z. X. Chang, H. W. Rong*, T. S. Alomar, D. P. Zhu, N. AlMasoud, Y. J. Liao, R. Z. Zhao, X. Y. Zhao, Y. X. Li*, B. B. Xu, Z. H. Guo*, Z. M. El-Bahy, H. D. Li, X. F. Zhang, S. B. Ge*, High-conductivity nickel shells encapsulated wood-derived porous carbon for improved electromagnetic interference shielding. Carbon (2023) 213, 118208.

3廖怡君, 马艺, 冀连泽, 戎华威李逸兴*, 张雪峰. 高熵合金纳米颗粒研究进展中国科学: 技术科学 (2023) 53, doi: 10.1360/SST-2023-0057. Y. J. Liao, Y. Ma, L. Z. Ji, H. W. Rong, Y. X. Li*, X. F. Zhang*, Research advances in high-entropy alloy nanoparticles (in Chinese). Sci. Sin. Tech. (2023) 53, doi: 10.1360/SST-2023-0057.

2022年:

1Y. J. Liao, Y. X. Li*, R. Z. Zhao, J. Zhang, L. Z. Zhao, L. Z. Ji, Z. Y. Zhang, X. L. Liu, G. W. Qin, X. F. Zhang*, High-entropy-alloy nanoparticles with ultra-mixed 21 elements for efficient photothermal conversion. Natl. Sci. Rev. (2022) 9(6), nwac041.

2Y. X. Li, Y. J. Liao, L. Z. Ji, C. L. Hu, Z. H. Zhang, Z. Y. Zhang, R. Z. Zhao, H. W. Rong, G. W. Qin, X. F. Zhang*, Quinary High-entropy-alloy@graphite nanocapsules with tunable interfacial impedance matching for optimizing microwave absorption. Small (2022) 18(4), 2107265. (Front Cover)

3T. Gao, R. Z. Zhao, Y. X. Li*, Z. Y. Zhu, C. L. Hu, L. Z. Ji, J. Zhang, X. F. Zhang*, Sub-Nanometer Fe clusters confined in Carbon Nanocages for Boosting Dielectric Polarization and Broadband Electromagnetic Wave Absorption. Adv. Funct. Mater. (2022) 32(31), 2204370. (Inside Back Cover)

4Y. J. Liao, Y. X. Li*, L. Z. Ji, X. L. Liu, X. Y. Zhao, H. W. Rong, D. K. Xu, G. W. Qin, X. F. Zhang, Confined high-entropy-alloy nanoparticles within graphitic shells for synergistically improved photothermal conversion. Acta Mater. (2022) 240, 118338.

5Y. X. Li, Y. Ma, Y. J. Liao, L. Z. Ji, R. Z. Zhao, D. P. Zhu, X. Hu, G. W. Qin, H. W. Rong*, X. F. Zhang, High-Entropy-Alloy-Nanoparticles Enabled Wood Evaporator for Efficient Photothermal Conversion and Sustainable Solar Desalination. Adv. Energy Mater. (2022) 12(47), 2203057.

6M. L. Cheng, M. F. Ying, R. Z. Zhao*, L. J. Ji, H. X. Li, X. G. Liu, J. Zhang, Y. X. Li*, X. L. Dong, X. F. Zhang, Transparent and Flexible Electromagnetic Interference Shielding Materials by Constructing Sandwich AgNW@MXene/Wood Composites. ACS Nano (2022) 16(10), 16996-17007.

7T. Gao, Z. Y. Zhang, Y. X. Li*, Y. J. Song, H. W. Rong, X. F. Zhang*, Solid-state reaction induced defects in multi-walled carbon nanotubes for improving microwave absorption properties. J. Mater. Sci. Technol. (2022) 108, 37-45.

8T. Gao, Y. Ma, L. Z. Ji*, Y, Zheng, Y. X. Li*, X. F. Zhang, Nickelcoated woodderived porous carbon (Ni/WPC) for efficient electromagnetic interference shielding. Adv. Compos. Hybrid Mater. (2022) 5(3), 2328-2338.

9Y. X. Li*, S. Y. Yan, Z. Y. Zhang, Y. J. Liao, H. W. Rong*, R. Z. Zhao, G. W. Qin, Wood-Derived Porous Carbon/Iron Oxide Nanoparticle Composites for Enhanced Electromagnetic Interference Shielding. ACS Appl. Nano Mater. (2022) 5(6), 8537-8545.

2021年:

1Y. X. Li, Y. J. Liao, J. Zhang, E. H. Huang, L. Z. Ji, Z. Y. Zhang, R. Z. Zhao, Z. M. Zhang, B. Yang, Y. H. Zhang, B. Xu*, G. W. Qin, X. F. Zhang*, High-entropy-alloy nanoparticles with enhanced interband transitions for efficient photothermal conversion. Angew. Chem. Int. Ed. (2021) 60, 27113-27118.

2H. H. Hu, Y. X. Li*, T. Gao, S. Y. Yan, S. T. Wu, S. Bandaru, Y. Zheng, G. W. Qin, X. F. Zhang*. Sulfur-doped wood-derived porous carbon for optimizing electromagnetic response performance. Nanoscale (2021) 13, 16084-16093.

3Z. Y. Zhang, Y. X. Li*, Y. J. Liao, H. W. Rong, W. T. Zhang, M. Zhang, G.W. Qin, X. F. Zhang, Synthesizing CNx heterostructures on ferromagnetic nanoparticles for improving microwave absorption property. Appl. Surf. Sci. (2021) 564, 150480.

2020年:

1Y. X. Li, X. Y. Chen, Q. Wei, W. W. Liu, Y. H. Zhang, G. W. Qin, Z. Shi, X. F. Zhang*, Oxygen-sulfur Co-substitutional Fe@C nanocapsules for improving microwave absorption properties. Sci. Bull. (2020) 65, 623-630.

2Y. X. Li, Y. Zheng, R. G. Liu, Y. Rao, R. Su, J. Y. Yu, X. G. Liu, P. F. Guan, J. J. Guo, X. F. Zhang*, G. W. Qin, Enhanced high-frequency microwave absorption in core-shell nanocapsules with atomic-scale oxygen substitutions. J. Appl. Phys. (2020) 127, 195107.


6. 授权发明专利

1)张雪峰,李逸兴,赵晓宁,李剑飞,周丽平,齐琦琦一种可外力调控的复合型微波吸收体及制备方法中国专利,2020-5-12, 授权号:ZL201710381944.1.

2)张雪峰,郭家奇,李逸兴,廖怡君,张艳辉一种高熔点高熵软磁合金的制备方法中国专利,2022-1-28, 授权号:ZL202110308221.5.

3)张雪峰,郑芸,李逸兴在木质基材料表面构建疏水涂层的电磁屏蔽材料制备工艺中国专利,2022-3-29, 授权号:ZL202011306735.9.

4)张雪峰,李逸兴,冀连泽一种薄膜材料的多场耦合型微波性能测试平台中国专利,2022-5-20, 授权号:ZL202011311193.4.

5)张雪峰,赵思洋,李逸兴,阮佳昌一种导电硅胶用镍包石墨复合粉体材料的制备方法中国专利,2022-5-13, 授权号:ZL202110301151.0.

6)张雪峰,陈新宇,李逸兴,张政宇,孙卓一种仿珍珠贝电磁波吸收薄膜的制备方法中国专利,2022-6-17, 授权号:ZL202110290247.1.

7)张雪峰,李逸兴,廖怡君,张政宇一种极度混溶的21元高熵合金纳米颗粒及其制备方法中国专利,2022-8-30, 授权号:ZL202111360437.2.