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基本信息Personal Information
讲师
性别 : 男
毕业院校 : 大阪大学
学历 : 博士研究生毕业
学位 : 博士学位
在职信息 : 在岗
所在单位 : 工学院
办公地点 : 3幢教学楼403室
Email :
个人简介Personal Profile
沈毅刚,浙江师范大学工学院,校聘副教授。主要研究方向为微流控芯片、微纳精密驱动、微纳米加工制造、智能传感器、仿生材料与器件、生物传感器等。在Biosensors & Bioelectronics, Sensors and Actuators B-Chemical, Lab on a Chip, Analytical Chemistry, Applied Physics Letters, Matter等期刊上发表论文23篇,申请专利5项。主持国家自然科学青年基金,日本科学学会研究基金,并作为骨干成员参与国家自然科学基金面上项目、福建省自然科学基金项目重点项目。曾获厦门大学与英国卡迪夫大学联合基金交流项目,日本文部省国家奖学金,Biosensors 和Analytical Science 年度有影响力文章称号等。担任Chinese Chemical Letters, IEEE Sensors Journal, Smart Material and Structure, Journal of Micromechanics and Microengineering, Journal of applied physics等期刊审稿人。
与英国卡迪夫大学、日本大阪大学、日本奈良先端科学技术大学院、厦门大学等多家国内外研究机构保持深入合作交流。欢迎对精密驱动、微流控技术、微纳加工制造、生物工程等领域研究感兴趣的同学联系沟通。
最近发表论文:
2026
Wen, J., Ren, T., Wang, Z., Li, Y., Ma, J., Hu, Y., Li, J., Shen, Y*. & Li, J. Quartz crystal microbalance-based point-of-care testing systems: principles, device design, and applications. Anal. Chem. 98, 20688–20708 (2026). 【1区,TOP】
Wang, Z., Li, Y., Chen, L., Xu, W., Li, H., Tang, T., Li, J., Wen, J., Shen, Y*. & Li, J. Integrated liquid metal microfluidic (ILMM) platform for intelligent control and detection of biological samples. Sens. Actuators B Chem. 466, 140359 (2026). 【1区,TOP】
Li, W., Wang, S., Shen, Y*., Liu, J. & Zhang, J. Hydrogel-based iontronic sensing. Sustainable Engineering Novit 2, 1 (2026).
Wang, W., Jiang, S., Wu, Z., Yu, K., Liu, Q., Tao, X., Ma, J., Hu, Y., Wang, Y., Shen, Y., Li, J., Jin, Z., Zhu, D., Li, N. & Wen, J. Synchronous detection of multiple biomarkers using a microfluidic biosensing platform. Biosens. Bioelectron. 307, 118742 (2026). 【1区,TOP】
Jiang, H., Xu, C., Zeng, C., Liu, X., Deng, L., Jian, Y., Shao, C., Zhang, G., Shen, Y., Yalikun, Y., Li, M., Tang, T. & Wu, N. Open micro-valley structures for enhanced microscale manipulation. Microsyst. Nanoeng. 12, 130 (2026). 【1区,TOP】
Shen, Y*., Li, H., Li, Y., Wang, Y., Chen, K., Li, J., Ma, J., Chen, S., Hu, Y., Wen, J., Hou, X. & Li, J. Designing and integrating liquid-based devices for advanced sensing applications. Device 4, 100964 (2026).
He, L., Li, J., Wan, N., Hu, Y., Ma, J., Chen, K., Wang, Y., Shen, Y., Ming, Y., Ge, C. & Wen, J. A disc-shaped sensing system for high-precision measurement. Measurement 257, 118737 (2026). 【2区】
2025
Xu, C., Shao, C., Jiang, H., Zeng, C., Zhang, G., Li, X., Shen, Y., Yalikun, Y., Li, M., Liu, X., Wu, N. & Tang, T. Ring-shaped microfluidic sensor for rapid biochemical detection. ACS Sens. 10, 9457–9466 (2025). 【1区,TOP】
Li, J., Wu, Z., Liu, Q., Wang, W., Tao, X., Ma, J., Hu, Y., Wan, N., Tian, H., Wang, Y., Chen, K., Shen, Y. & Wen, J. Design principles of flexible and bioinspired sensing structures. Smart Mater. Struct. 34, 113003 (2025). 【3区】
Wang, S. & Shen, Y*. Editorial: recent advances in microfluidic and microscale systems. Micromachines 16, 1022 (2025). 【3区】
Cui, Q., Tian, G., Zhou, T., Shen, Y., Feng, S., Li, M., Li, W., Hosokawa, Y., Yalikun, Y. & Zhang, T. Design advances in integrated microfluidic platforms for biological applications. Lab Chip 25, 4290–4308 (2025). 【2区,TOP】
Shen, Y*., Wang, Z., Ren, T., Wen, J., Li, J. & Tang, T. Recent advances in liquid-based microfluidic sensing systems. Micromachines 16, 683 (2025). 【3区】
Fan, Y., Shen, Y., Zhang, W., Zeng, G., Liu, T., Wang, Y., Wang, S., Zheng, J. & Hou, X. Electrochemical redox regulation at confined liquid interfaces. Angew. Chem. Int. Ed. 64, e202424637 (2025). 【1区,TOP】
Wan, N., Cai, J., He, L., Li, J., Hu, Y., Ma, J., Chen, K., Wang, Y., Shen, Y. & Wen, J. An improved bionic sensing structure inspired by biological systems. J. Bionic Eng. 22, 703–712 (2025). 【3区】
Xu, L., Wu, F., Shen, Y., Fan, Y., Wang, S. & Hou, X. Bioinspired liquid pockets for programmable interfacial transport. Adv. Mater. 37, 2415661 (2025). 【1区,TOP】
2024
Li, W., Zhou, R., Ouyang, Y., Guan, Q., Shen, Y*., Saiz, E., Li, M. & Hou, X. Harnessing biomimicry for functional liquid-interface materials. Small 20, 2401859 (2024). 【2区】
2023
Shen, Y., Chen, Z., Zhang, Y. & Hou, X. Liquid interfacial tension as an engineering tool. Matter 6, 2506–2508 (2023). 【1区】
Shen, Y*., Yuan, Y., Liu, X., Tang, T., Yalikun, Y. & Tanaka, Y. Multiscale integrated sensing using microfluidic technologies. IEEE Sens. J. 23, 1795–1802 (2023). 【3区】
2022
Ota, N., Tanaka, N., Sato, A., Shen, Y., Yalikun, Y. & Tanaka, Y. Microenvironmental analysis using an integrated microfluidic system. Anal. Chem. 94, 16299–16307 (2022). 【1区】
Zhang, J., Zhan, K., Zhang, S., Shen, Y., Hou, Y., Liu, J., Fan, Y., Zhang, Y., Wang, S., Xie, Y., Chen, X. & Hou, X. Discontinuous streaming at confined liquid interfaces. eScience 2, 615–622 (2022). 【1区】
Tanaka, Y., Ma, D., Amaya, S., Aishan, Y., Shen, Y., Funano, S., Tang, T., Hosokawa, Y., Gusev, O., Okuda, T., Kikawada, T. & Yalikun, Y. Anhydrobiotic organism analysis using microfluidic technology. iScience 25, 104639 (2022). 【2区】
Shen, Y., Yuan, Y., Tang, T., Ota, N., Tanaka, N., Hosokawa, Y., Yalikun, Y. & Tanaka, Y. Continuous three-dimensional microfluidic manipulation based on liquid interfaces. Sens. Actuators B Chem. 358, 131511 (2022). 【1区】
Anggraini, D., Ota, N., Shen, Y., Tang, T., Tanaka, Y., Hosokawa, Y., Li, M. & Yalikun, Y. Recent advances in microfluidic technologies for biological analysis. Lab Chip 22, 1438–1468 (2022). 【2区,TOP】
Shen, Y., Wang, X., Lei, J., Wang, S., Hou, Y. & Hou, X. Catalytic confinement at liquid interfaces. Nanoscale Adv. 4, 1517–1526 (2022). 【3区】
Tang, T., Liu, X., Yuan, Y., Kiya, R., Shen, Y., Zhang, T., Suzuki, K., Tanaka, Y., Li, M., Hosokawa, Y. & Yalikun, Y. Dual-frequency acoustofluidic manipulation in microfluidic systems. Lab Chip 22, 550–559 (2022). 【2区,TOP】
团队介绍Research Group
压电微纳器件与系统

