研究员

杨帆

  • 职称:研究员
  • 学科:
  • 电子邮件:fanyang2013@fjirsm.ac.cn
  • 研究方向:

    核安新材料、稀土功能材料、二次资源循环等

简介

    杨帆,研究员,博士生导师,中国科学院福建物质结构研究所厦门稀土材料研究中心课题组长,2019年起担任福建省清洁核能燃料系统与材料联合创新重点实验室主任。先后获得2021年福建省最美科技工作者、江西省双千人才和厦门双百A类人才等称号。以萃取化学、稀土功能材料开发与应用为导向,前瞻性布局稀土科技研发,打造稀土萃取分离、稀土功能材料的研发及产业化基地。致力于新型离子液体萃取体系在稀土绿色分离过程中的拓展、新型离子液体支撑膜分离体系的构建及膜分离反应动力学的研究、中性萃取剂在离子液体体系中对于稀土及其他稀贵金属离子萃取反应动力学及反萃机理的研究、ADANES系统堆芯构件及乏燃料处理关键技术研发以及稀土基气凝胶制备技术的研发等。截止至今,主持或参与国家省市级项目40余项,其中主持或参与国家级项目2项、中国科学院战略先导A类子课题1项、中国科学院建党100周年献礼工程子课题1项等。以第一作者/通讯作者发表SCI论文53篇,授权专利37件,制定标准4项。

代表性论著

1. F. Yang, Y. Baba, F. Kubota, N. Kamiya, M. Goto*, Extraction and Separation of Rare Earth Metal Ions with DODGAA in Ionic liquids[J]. Solvent Extraction Research and Development-Japan, 19 (2012) 69-76.

2. F. Yang, N. Kamiya, M. Goto*, Transdermal delivery of the anti-rheumatic agent methotrexate using a solid-in-oil nanocarrier[J]. European Journal of Pharmaceutics and Biopharmaceutics, 82 (2012) 158-163.

3. F. Yang, F. Kubota, Y. Baba, N. Kamiya, M. Goto*, Selective extraction and recovery of rare earth metals from phosphor powders in waste fluorescent lamps using an ionic liquid system[J]. Journal of Hazardous Materials, 254 (2013) 79-88.

4. F. Yang, F. Kubota, N. Kamiya, M. Goto*, A Comparative Study of Ionic Liquids and a Conventional Organic Solvent on the Extraction of Rare-earth Ions with TOPO[J]. Solvent Extraction Research and Development-Japan, 20 (2013) 225-232.

5. F. Yang, F. Kubota, N. Kamiya, M. Goto, Extraction of Rare-Earth Ions with an 8-Hydroxyquinoline Derivative in an Ionic Liquid[J]. Solvent Extraction Research and Development-Japan, 20 (2013) 123-129.

6. P. Chen, F. Yang*, Q. Liao, Z. G. Zhao, Y. Zhang, P. P. Zhao, W. H. Guo, R. X. Bai, Recycling and separation of rare earth resources lutetium from LYSO scraps using the diglycol amic acid functional XAD-type resin[J]. Waste Management, 62 (2017) 222-228.

7. R.X. Bai, F. Yang*, Y. Zhang, Z. G. Zhao, Q. X. Liao, P. Chen, P. P. Zhao, W. H. Guo, C. Q. Cai, Preparation of elastic diglycolamic-acid modified chitosan sponges and their application to recycling of rare-earth from waste phosphor powder[J]. Carbohydrate Polymers, 190 (2018) 255-261.

8. C.Q. Cai, F. Yang*, Z. G. Zhao, Q. X. Liao, R. X. Bai, W. H. Guo, P. Chen, Y. Zhang, H. Zhang, Promising transport and high-selective separation of Li(I) from Na(I) and K(I) by a functional polymer inclusion membrane (PIM) system[J]. Journal of Membrane Science, 579 (2019) 1-10.

9. W. H. Guo, J. B. Zhang, F. Yang*, F. Z. Tan, Z. G. Zhao, Highly efficient and selective recovery of gallium achieved on an amide-functionalized cellulose[J]. Separation and Purification Technology, 237 (2020).

10. X. S. Zhang, Y. G. Li, C. X. Li, F. Yang*, Z. M. Jiang, L. Y. Xue, Z. H. Shao, Z. G. Zhao, M. Y. Xie, S. W. Yu, A novel (La0.2Ce0.2Gd0.2Er0.2Tm0.2)2(WO4)3 high-entropy ceramic material for thermal neutron and gamma-ray shielding[J]. Materials & Design, 205 (2021) 109722.

11. W. J. Zhao, F. Yang*, Z. L. Liu, H. Chen, Z. H. Shao, X. S. Zhang, K. X. Wang, L. Y. Xue. A novel (La0.2Sm0.2Eu0.2Gd0.2Tm0.2)2Zr2O7 high-entropy ceramic nanofiber with excellent thermal stability[J]. Ceramics International, 47 (2021) 29379-29385.

12. S. Ma, F. Yang*, F. Z. Tan, M. Y. Xie, S. W. Yu, L. Y. Xue, Z. W. Li, T. X. Hu. Highly efficient and selective solvent extraction of zirconium and hafnium from chloride acid solution including amic acid extractant[J]. Separation and Purification Technology, 279 (2021) 119779.