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:
声流控在生物医工领域应用
光学/声学微器件设计及集成
微流控技术
主讲课程:
程序设计与实践(本科生课)
学术兼职:
Biofabrication,Lab on a Chip等期刊审稿人
成果奖励:
武汉大学优秀研究生 (2017 )
博士研究生国家奖学金(2019)
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
代表作:
[1] Hu, X. et al, Acoustic Assembly and Scanning of Superlens Arrays for High-Resolution and Large Field-of-View Bioimaging. ACS Nano. 2024, 18 (23), 15218-15228.
[2] Wu, Q.; Pan, C.; Shi, P.; Zou, L.; Huang, S.; Zhang, N.; Li, S.-S.; Chen, Q.; Yang, Y.; Chen, L.-J.*; Hu, X.*, On-demand transdermal drug delivery platform based on wearable acoustic microneedle array. Chemical Engineering Journal. 2023, 477, 147124.
[3] Hu, X. et al, Living cell-laden hydrogels: Unleashing the future of responsive biohybrid systems. Responsive Materials 2023, 1 (1), e20230009.
[4] Hu, X. et al, Smart acoustic 3d cell construct assembly with high-resolution. Biofabrication. 2022, 14 (4), 045003.
[5] Hu, X. J. et al. Digital optofluidic compound eyes with natural structures and zooming capability for large-area fluorescence sensing. Biosensors and Bioelectronics. 2021. DOI: 10.1016/j.bios.2021.113670.
[6] Hu, X. J. et al. Versatile biomimetic array assembly by phase modulation of coherent acoustic waves. Lab on a Chip. 2020, 20 (19), 3515-3523.
[7] Hu, X. J. #, Zhao, S. K. # et al. On-chip hydrogel arrays individually encapsulating acoustic formed multicellular aggregates for high throughput drug testing. Lab on a Chip. 2020,20,12.
[8] Hu, X. J. #, Zhu, D. M. #, Chen, M. # et al. Precise and non-invasive circulating tumor cell isolation based on optical force using homologous erythrocyte binding. Lab on a Chip. 2019, 19 (15), 2549-2556.
[9] Hu, X. J. et al. Precise label-free leukocyte subpopulation separation using hybrid acoustic-optical chip. Lab on a Chip. 2018, 18 (22), 3405-3412.
[10] Zhao, S. K.#, Hu, X. J.# et al. On-chip rapid drug screening of leukemia cells by acoustic streaming. Lab on a Chip. 2021, 21, 4005-4015.
[11] Gao, X. Q. #, Hu, X. J. # et al. On-demand liquid microlens arrays by noncontact relocation of inhomogeneous fluids in acoustic fields. Lab on a Chip. 2022, 22, 3942.
[12] Zheng J. J. #, Hu, X. J. # et al. Convenient tumor 3D spheroid arrays manufacturing via acoustic excited bubbles for in situ drug screening. Lab on a Chip. 2023, 23, 1593.