个人信息
主要主持在研项目:
1 国家自然科学基金委 面上项目 基于能陷型简并声学谐振模式的新型微质量传感器的研究 2020-01-01至2023-12-31 在研
2 国家自然科学基金委 青年项目 基于声表面波微流驱动与传感一体化PSA生物芯片机制的研究 2018-01-01至2020-12-31 在研
3 深圳市自由探索项目 基于双正交声表面波模式的高特异性、高灵敏度和快速响应生物微传感 芯片的研究 2019-03-26至2021-03-31 在研
4 深港联合资助项目 协同创新专项 面向自动驾驶的智能轮胎多参量感知 2020/10/01-2022/9/30 200万 在研
主要代表性论文
[1] Fu C, Ke Y, Quan A, et al. Investigation of Rayleigh wave and Love wave modes in 11 2 ¯ 0 ZnO film based multilayer structure. Surf Coatings Technol. 2019;363(August 2018):330-337. doi:10.1016/j.surfcoat.2019.01.090
[2] Fu C, Quan A J, Luo J T, et al. "Vertical jetting induced by shear horizontal leaky surface acoustic wave on 36° Y-X LiTaO3." Applied Physics Letters 110.17(2017):3626-585. SCI
[3] Fu, C.; Ke, Y.; Li, M.; Luo, J.; Li, H.; Liang, G.; Fan, P. Design and Implementation of 2.45 GHz Passive SAW Temperature Sensors with BPSK Coded RFID Configuration. Sensors 2017, 17, 1849.
[4] J T. Luo, A J. Quan, G X Liang, Z H Zheng, S Ramadan, C Fu*, H L. Li and Y Q. Fu, ‘Love-mode surface acoustic wave devices based on multilayers of TeO2/ZnO(1120) /Si(100) with high sensitivity and temperature stability’ Ultrasonics, 75 63–70, 2017 (通讯作者) SCI
[5] J T Luo, Q A Jie, C. Fu,* et.al. ‘Shear-horizontal surface acoustic wave characteristics of a (110) ZnO/SiO2/Si multilayer structure’ Journal of Alloys and Compounds, 693 558–64. 2017 (通讯作者) SCI
[6] C. Fu, Lee K J, Eun K, et.al. ‘Performance comparison of Rayleigh and STW modes on quartz crystal for strain sensor application’ J. Appl. Phys. 120 024501, 2016. SCI
[7] C. Fu, K. J. Lee, K. Lee, et.al. “Low-intensity ultraviolet detection using a surface acoustic-wave sensor with a Ag-doped ZnO nanoparticle film,” Smart Mater. Struct., vol. 24, no. 1, p. 015010, Jan. 2015. SCI
[8] C. Fu, O. Elmazria, F. Sarry, et.al., “Development of wireless, batteryfree gyroscope based on one-port SAW delay line and double resonant antenna,” Sensors Actuators A Phys., vol. 220, no. 0, pp. 270–280, Dec. 2014. SCI
[9] C. Fu, K. Lee, K. Lee, et.al. “A stable and highly sensitive strain sensor based on a surface acoustic wave oscillator,” Sensors Actuators A Phys., vol. 218, pp. 80–87, Oct. 2014. SCI
[10] C. Fu, InKi Jung, SangSik Yang et.al., ‘Towards optimized wireless and Love wave biosensor with high sensitivity’, Micro & Nano Letters, pp1-4, 2012. SCI