GRADUATE EDUCATION
范胜颖

范胜颖

招生方向:激光生物工程,微纳3D建模打印,光学系统搭建

电子邮件:fsy819@qlu.edu.cn

通讯地址:山东省科学院激光研究所济南研究中心       

  • 个人简历
  • 研究方向
  • 学术兼职
  • 科研项目
  • 代表性论文
  • 教学工作
  • 荣誉奖励
  • 工作经历

    2022.12-至今:助理研究员,齐鲁工业大学,光电学部

     

    教育背景

    2017.09-2022.11:中国科学技术大学,生物医学工程,博士

    2013.09-2017.06:宁夏大学,机械工程(卓越工程师),学士

  • 1.激光生物工程

    2.微纳3D建模与打印技术

    3.超快激光光学系统搭建

    4、激光在生物医疗领域应用

  • 纵向课题

    1. 超快激光动态光场高效制备磁驱微机器人及生物神经网络构建,国家自然科学基金青年项目,30万,主持,在研
    2. 基于相分离的多孔血管网络支架的高效制备及其在组织血管化中的应用,山东省自然科学基金,12万,主持,在研
    3. 可降解聚合物血管支架飞秒激光精密加工工艺与应用研究,济南市引进创新团队项目,120万,负责人,在研
    4. 三维激光打印系统应用实践的师资人才培养,教育部产学合作协同育人项目,2万,主持,在研
    5. 超快激光直写加工及生物应用研究,山东省高等学校青年创新团队,主持

     

    技术研发

    1. 可吸收支架制造关键步骤优化,济南市科技计划揭榜挂帅项目,30万,主持,在研

  • 期刊论文

    1. Wei J, Fan S*, Wang J, et al. Femtosecond Laser Direct Writing of Microcage Structures for Microsphere and Cell Capture Research[J]. ACS Applied Optical Materials, 2025, 3(11): 2716-2724.
    2. Wang J, Yang W,…,Fan S*, et al. Efficient Construction of 3D Capillary Networks Based on Femtosecond Laser Polymerization System[J]. Advanced Engineering Materials, 2025, 27(22): e202501021.
    3. Fan S, Yang W, Wei J, et al. Flexible Grippers with Programmable Three‐Dimensional Magnetization and Motions[J]. Advanced Engineering Materials, 2024, 26(7): 2301771.
    4. Ma X, Fan S*, Yang W, et al. Preparation and Properties Study of CsPbX3@ PMMA Luminescent Resin[J]. Micromachines, 2024, 15(9): 1150.
    5. Wang X, Zhang C,…,Fan S*, et al. Sub-nanosecond, high peak power Yb: YAG/Cr4+: YAG/YVO4 passively q-switched raman microchip laser with the emission of multiple pulses[C]. Photonics, 2024, 11(1): 61.
    6. 杨雯雯, 祝国旗, 范胜颖*, 等. 飞秒激光微纳加工在微机器人领域的相关研究 (特邀)[J]. 红外与激光工程, 2024, 53(11): 20240435-1-20240435-14.
    7. Song B, Wang C, Fan S, et al. Rapid construction of 3D biomimetic capillary networks with complex morphology using dynamic holographic processing[J]. Advanced Functional Materials, 2024, 34(1): 2305245.
    8. Fan S, Qi L, Li J, et al. Accelerating neurite growth and directing neuronal connections constrained by 3D porous microtubes[J]. Nano Letters, 2022, 22(22): 8991-8999.
    9. Fan S, Qi L, Li J, et al. Guiding the patterned growth of neuronal axons and dendrites using anisotropic micropillar scaffolds[J]. Advanced Healthcare Materials, 2021, 10(12): 2100094.
    10. Xu L, Gui X,…, Fan S, et al. Fiber-integrated hybrid achromatic microlenses by combined femtosecond laser 3D printing[J]. Optics Letters, 2024, 49(23): 6849-6852.
    11. Zhou S, Yang J,…, Fan S, et al. Live imaging of 3D hanging drop arrays through manipulation of light-responsive pyroelectric slippery surface and chip adhesion[J]. Nano Letters, 2023, 23(23): 10710-10718.
    12. Zhang L, Liu B,…, Fan S, et al. Functional shape-morphing microarchitectures fabricated by dynamic holographically shifted femtosecond multifoci[J]. Nano Letters, 2022, 22(13): 5277-5286.
    13. Zhang Y, Li J,…, Fan S, et al. A biocompatible vibration‐actuated omni‐droplets rectifier with large volume range fabricated by femtosecond laser[J]. Advanced Materials, 2022, 34(12): 2108567.
    14. Li C, Jiao Y,…, Fan S, et al. Laser-induced morphology-switchable slanted shape memory microcones for maneuvering liquid droplets and dry adhesion[J]. Applied Physics Letters, 2022, 120(6).
    15. Pan D, Wu D,…, Fan S, et al. Transparent light‐driven hydrogel actuator based on photothermal marangoni effect and buoyancy flow for three‐dimensional motion[J]. Advanced Functional Materials, 2021, 31(14): 2009386.
    16. Li R, Jin D,…, Fan S, et al. Stimuli-responsive actuator fabricated by dynamic asymmetric femtosecond bessel beam for in situ particle and cell manipulation[J]. ACS nano, 2020, 14(5): 5233-5242.
    17. Pan D, Liu S,…, Fan S, et al. Efficient fabrication of a high-aspect-ratio AFM tip by one-step exposure of a long focal depth holographic femtosecond axilens beam[J]. Optics Letters, 2020, 45(4): 897-900.
    18. Xin C, Yang L,…, Fan S, et al. Conical hollow microhelices with superior swimming capabilities for targeted cargo delivery[J]. Advanced Materials, 2019, 31(25): 1808226.
    19. Pan D, Cai Z,…, Fan S, et al. Microtubes with complex cross section fabricated by C-shaped bessel laser beam for mimicking stomata that opens and closes rapidly[J]. ACS Applied Materials & Interfaces, 2018, 10(42): 36369-36376.

     

    会议报告

    1.范胜颖, 飞秒激光微纳加工复杂三维生物支架及其组织工程应用. 微纳传感技术与检测创新论坛,2024年11月16日-18日,上海(邀请报告)

  • 本科生课程

    专业英语

    研究生课程

    激光原理及应用

  • 2024年,指导学生参加第十二届光电设计大赛,获省赛一等奖,国赛二等奖(指导教师位次1)

全部
  • 全部
  • 产品管理
  • 新闻资讯
  • 常见问题