浙江大学博士后
研究方向:多功能复合材料表征技术研究
教育经历
帝国理工学院(英国伦敦)
材料学博士
2019 年 10 月 – 2024 年 3 月
帝国理工学院-国家留学基金委合作奖学金全奖博士
研究方向:石墨烯纳米(复合)材料多维及多尺度显微结构表征及图像分析
浙江大学(杭州)
材料科学与工程硕士
2016 年 9 月 – 2019 年 6 月
浙江大学功能复合材料与结构研究所,专攻功能复合材料的构性研究
中国海洋大学(青岛)
材料化学本科
2012 年 9 月 – 2016 年 6 月
以专业第一的成绩(GPA:3.8/4.0)推免保送硕士研究生
论文发表
1. Li, Y. H., Ford, A., Shaffer, M. S. (2024) Multiscale and Multidimensional Characterization and Patterning of Graphene-related
Nanomaterials and Nanocomposites. In 21st European Conference on Composite Materials. The European Society for
Composite Materials (ESCM) and the Ecole Centrale de Nantes., 698-705. (DOI : 10.60691/yj56-np80)
2. Li, Y. H.,, & Shaffer, M. S. (2023) Confocal Microscopy for In Situ Multi-Modal Characterization and Patterning of Laser
Reduced Graphene Oxide. Advanced Functional Materials, 2300479. (IF: 19.9,封面文章)
3. Quan, L., Qin, F. X., Lu, H. T., Estevez, D., Wang, Y., Li, Y. H., ... & Peng, H. X. (2021). Sequencing dual dopants for an
electromagnetic tunable graphene. Chemical Engineering Journal, 413, 127421. (IF: 16.7)
4. Zhou, L. P., Tian, Y., Xu, P., Wei, H. J., Li, Y. H., Peng, H. X., & Qin, F. X. (2021). Effect of the selective localization of carbon
nanotubes and phase domain in immiscible blends on tunable microwave dielectric properties. Composites Science and
Technology, 213, 108919. (IF: 9.8)
5. 李钰涵, 秦发祥. 素化复合材料概念及设计 (2020). 复合材料学报, 37(2), 237.
6. Li, Y. H., Qin, F. X., Quan, L., Wei, H. J., Luo, Y., Wang, H., & Peng, H. X. (2019). Vertical interphase enabled tunable microwave
dielectric response in carbon nanocomposites. Carbon, 153, 447-457.(IF: 11.3)
7. Li, Y. H., Qin, F. X., Estevez, D., Wang, H., & Peng, H. X. (2018). Interface probing by dielectric frequency dispersion in carbon
nanocomposites. Scientific reports, 8(1), 1-10.
8. Pan, F., Chen, S. M., Li, Y. H., Tao, Z., Ye, J., Ni, K., ... & Zhu, Y. (2018). 3D graphene films enable simultaneously high sensitivity
and large stretchability for strain sensors. Advanced Functional Materials, 28(40), 1803221.
9. Quan, L., Qin, F. X., Li, Y. H., Estevez, D., Fu, G. J., Wang, H., & Peng, H. X. (2018). Magnetic graphene enabled tunable microwave absorber via thermal control. Nanotechnology, 29(24), 245706.