EN
您所在位置: 首页 >> 师资队伍 >> 副教授 >> 正文
胡学佳

系别:电子工程系

职称:副教授

邮箱:xjhu@xmu.edu.cn

联系方式:

办公地点:厦门大学翔安校区文宣楼B307-3

个人简历:


学历:

2012-2016 郑州大学学士,材料科学与工程学院,材料科学与工程专业

2016-2021 武汉大学工学博士,物理科学与技术学院,材料物理与化学专业


研究方向:

声流控及在生物医工领域应用

声学微器件

微流控技术


主讲课程:

程序设计与实践(本科生课)


奖项与荣誉:

[1] 武汉大学优秀研究生 (2017 )

[2]博士研究生国家奖学金(2019

[3]厦门大学林祖赓青年科技奖(2025

[4]十九届中国研究生电子设计竞赛,全国一等奖。题目:基于声流控的智能微针给药系统 (指导教师,2024)

[5]二十届中国研究生电子设计竞赛,全国二等奖。题目:基于智能声流控平台的自动化核酸分析设备 (优秀指导教师,2025)


课题项目:

基于声流控的液晶透镜阵列调控机理与应用研究,国家自然科学基金(青年)项目,2023.01-2025.12,主持

介晶纳米构建、编辑及多自由度光场动态调控及应用,国家重点研发计划,2023.01-2027.12,参与

面向大视场成像与检测的声流控复眼透 镜阵列, 福建省自然科学基金资助项目. 2022.08-2025.08, 主持


近五年发表论文:

[1] D. Y. Li, …… H. Zhang* L.-J. Chen,* X. J. Hu*, Scalable acoustic virtual stirrer for enhanced interfacial enzymatic nucleic acid reactions. Science Advances. 2025, 11, adt6955.

[2] K.-H. Wu, ……S.-S. Li,* X. J. Hu, * Q. H. Liu, L.-J. Chen,* Harnessing acoustic topology for dynamic control of liquid crystal defects. Nature communications, 2026, 17, 1242.

[3] X. J. Hu, et al., Acoustic Assembly and Scanning of Superlens Arrays for High-Resolution and Large Field-of-View Bioimaging, ACS Nano, 2024, 18, 15218.

[4] X. Q. Gao, …… L. J. Chen*, Y. Yang*, X. J. Hu*, Acoustic Controllable Spatiotemporal Cell Micro-oscillation for Noninvasive Intracellular Drug Delivery, Anal. Chem., 2024, 96, 14998.

[5] X. J. Hu, et al., Smart acoustic 3D cell construct assembly with high-resolution, Biofabrication, 2022, 14, 045003.

[6] Q. Wu, ……, Y. Yang*, L. J. Chen*, X. J. Hu*, On-demand transdermal drug delivery platform based on wearable acoustic microneedle array, Chem. Eng. J., 2023, 477, 147124.

[7] Y. H. Wang, …… Q. Chen*, X. J. Hu*, Y.Q. Lu, L.-J. Chen*, Acoustically tunable intra-droplet assembly of organoids towards high-throughput tumor model construction, Chem. Eng. J., 2024, 500, 157425.

[8] Q. Q. Zhu, …… X. J. Hu*, L. J. Chen*, Acoustic-Magnetic Tunable Liquid Crystal Microlens Arrays for Polarization-Selective Imaging, ACS Photonics, 2025, 12, 2583.

[9] X. J. Hu, et al., Living cell-laden hydrogels: Unleashing the future of responsive biohybrid systems, Responsive Materials. 2023, e20230009.

[10] X. J. Hu, et al., Versatile biomimetic array assembly by phase modulation of coherent acoustic waves, Lab. Chip., 2020, 20, 3515.

[11] X. J. Hu, et al., Digital optofluidic compound eyes with natural structures and zooming capability for large-area fluorescence sensing, Biosens. Bioelectron., 2022, 195, 113670.

[12] J. J. Zheng#, X. J. Hu#, et al., Convenient tumor 3D spheroid arrays manufacturing acoustic excited bubbles for drug screening, Lab. Chip., 2023, 23, 1593.

[13] S. K. Zhao#, X. J. Hu#, et al., On-chip rapid drug screening of leukemia cells by acoustic streaming, Lab. Chip., 2021, 21, 4005.

[14] X. J. Hu#, S. K. Zhao#, et al., On-chip hydrogel arrays individually encapsulating acoustic formed multicellular aggregates for high throughput drug testing, Lab. Chip., 2020, 20, 2228.

[15] X. Q. Gao#, X. J. Hu#, et al., On-demand liquid microlens arrays by non-contact relocation of inhomogeneous fluids in acoustic fields, Lab. Chip., 2022, 22, 3942.


Top