张子龙,男,博士、集成电路技术专业主任,副教授,Journal of Alloys and Compounds, CrystEngComm, J.Magn. Magn. Mater. ACS旗下等多本SCI期刊审稿人。主要致力于以下研究领域:5G通信系统、射频和微波电路、电磁场与微波技术、集成电路设计等领域。目前已在国际期刊发表 SCI论文20余篇,引用400 余次(Google scholar)。
进3年项目经历:
1、基于电磁编码和3D打印的吸收—散射型复合隐身器件的超宽带RCS缩减特性和机理研究,广东省自然科学基金,10万元,2023/04-2025/12,主持;
2、低频波段的柔性宽带介质编码超材料吸波器研究,广东技术师范大学人才引进项目,35万元,2021/01-2024/12,主持;
3、基于生物质衍生炭和3D打印的柔性超宽带微波吸收器研究,广东省教育厅创新强校项目(青年创新项目),5万元,2021/09-2022/08,主持;
4、柔性宽带介质编码超表面吸波器研究,广东省科技创新战略专项资金(“攀登计划”)重点项目,4.5万元, 2022/01-2023/12,主持;
6、基于磁性介质和电磁编码的吸收—散射型隐身器件的低频宽带RCS缩减机理研究,5万元,2023/04-2024/12,主持;
7、高频宽带移动通信用滤波器关键技术研究及产业化应用,国家重点研发计划项目(2022YFB3604500),2022.12 -2025.12,在研;
8、5G 声表面波多工器关键技术研究及射频组开发子课题(模组芯片集成设计),广州市科技重点研发计划 (202206070001) 2022.05- 2025.5,在研
近年以第一作者或通信作者发表论文:
[1] Z. L. Zhang (张子龙), Y. Y. He, and Y. H. Zou, “Effect of surface structure and composition on the electromagnetic properties of Ti3C2Tx MXenes for highly effcient electromagnetic wave absorption,” Journal of Physical Chemistry C, 12(36) (2020) 19666-19674.(SCI 二区)
[2] Z. L. Zhang(张子龙), S. Wang, Y. Y. Lv, et al. MnO2 nanostructures deposited on graphene foams for broadband and lightweight electromagnetic absorption. Journal of Alloys and Compounds. 2019, 810: 151744. (SCI冶金一区, Top 期刊),
[3] J. Li#, Z. L. Zhang#(张子龙), L. Du, L. L. Miao, et al. Highly stable femtosecond pulse generation from a MXene Ti3C2Tx (T = F, O, or OH) mode-locked fiber laser, Photonics Research. 2019, 7 (3): 260-264. (SCI 一区, Top 期刊)
[4] Q. H. Zhu, Z. L. Zhang* (张子龙), Y. Y. Lv, et al. Synthesis and electromagnetic wave absorption performance of NiCo2O4nanomaterials with different nanostructures. CrystEngComm. 2019, 21: 4568-4577.(SCI二区,通信作者)
[5] Z. L. Zhang(张子龙), X. Q. Chen, Z. L. Wang, et al. Carbonyl iron@graphite microspheres with good impedance matching for ultra-broadband and highly efficient electromagnetic absorption. Optical Materials Express, 2018,8 (11): 3319-3331.(SCI 二区)
[6] Z. L. Zhang (张子龙), Y. Y. Lv, X. Q. Chen, Z. Wu, Y. Y. He, L. Zhang, Y. H. Zou, “Broadband metamaterial absorber for lowfrequency microwave absorption in the S-band and C-band,” J. Magn. Magn. Mater. 2020, 497: 166075. (SCI)
[7] Z. L. Zhang (张子龙), Y. Y. Lv, X. Q. Chen, et al. Porous flower-like Ni/C composites derived from MOFs toward high performance electromagnetic wave absorption. J. Magn. Magn. Mater. 2019, 487: 165334. (SCI)
[8] Z. L. Zhang (张子龙), Q. H. Zhu, X. Q. Chen, Z. Wu, Y. Y. He, Y. Y. Lv, L. Zhang, and Y. H. Zou. Ni@C composites derived from Ni-based metal–organic frameworks with lightweight, ultrathin, broad-band, and highly efficient microwave absorbing properties. Applied Physics Express 2019,12 (1): 011001. (SCI)
[9] Z. L. Zhang (张子龙), Z. L. Wang, L. Y. Heng, et al. Improving the Electromagnetic Wave Absorption Properties of the Layered MoS2 by Cladding with Ni Nanoparticles. Journal of the Physical Society of Japan 2018,87(5): 054402.(SCI)
授权专利:
申请8项发明专利,目前已授权4项。