Biography

Dr. Bo Dong

Shenzhen Technology University, China

Scientist


Email: [email protected]


Qualifications

2005–2008 Ph.D., Institute of Modern Optics, Nankai University, China

2002–2005 M.Sc., Beijing University of Technology, China


Publications (selected)

  1. Jia, H., Dong, B., Zhang, S., Wang, Z., Wang, Y. and Li, Y. A High-Sensitivity CO₂ Sensor Based on a ZIF-8/GO Hybrid Membrane-Modified Cascaded Dual-Sphere Fiber Interferometer. Sensors and Actuators B: Chemical, 139912, 2026.

  2. Xu, W., Sun, Z., Wang, W., Gao, F., Zhang, M., Zhang, B., Song, Q. and Dong, B. Laser-enhanced 3D microstructured Weyl semimetal MoWTe2 terahertz detector with room-temperature operation and 6G-compatible response. Frontiers of Physics, 21(4), 044202, 2026.
  3. Wang, Y., Dong, B., Chen, Z., Wang, Z., Wei, T. and Zhang, S. All-Polymer Arc-shaped 3D FBG Array Bionic Tactile Sensor and Its Application in Multidirectional Robotic Finger Force Identification. IEEE Sensors Journal, 2026.
  4. Sun, Z., Xu, W., Wang, W., Song, Q. and Dong, B. A novel MnBi2Te4 based terahertz detector with high-responsivity at room-temperature. IEEE Electron Device Letters, 2026.
  5. Xu, W., Sun, Z., Wang, W., Hou, S., Song, Q. and Dong, B. Optical and Magnetic Field Modulated CrGeTe3/Co3Sn2S2 Nanofilm Covered Metamaterial by SubPixel MicroScanning 3DPrinted at RoomTemperature Platform. Advanced Optical Materials, e02086, 2026.
  6. Wang, Z., Yang, T. and Dong, B. A high sensitivity on-chip SiO2/polymer hybrid waveguide microring temperature sensor. Sensors and Actuators A: Physical, 117280, 2025.
  7. Sun, Z., Wang, W., Xu, W., Gao, F., Hou, S., Zhang, M., Song, Q. and Dong, B. Laser and magnetic field co-modulated 3D plasmonic microstructures for room-temperature terahertz detection in 6G technology. Chinese Optics Letters, 23(12), 123603, 2025.
  8. Wang, W., Xu, W., Sun, Z., Wei, T., Zhang, M., Hou, S., Song, Q. and Dong, B. DualField Enhanced RoomTemperature Terahertz Detector via Magnetic Weyl Semimetal Metasurfaces. Advanced Quantum Technologies, 8(11), e00428, 2025.
  9. Zhang, S., Dong, B., Wang, Z., Yu, Z. and Wang, Y. Acrylate/GO composite film enabled optical microcavity relative humidity sensor with enhanced sensitivity by pump-detection technique. Biosensors and Bioelectronics: X, 100665, 2025.
  10. Dong, B., Wang, Y., Wang, Z., Zhang, S. and Huang, W. Flexible polymer fiber-optic sensors for robotic hand three-dimensional tactile perception. 2025 23rd International Conference on Optical Communications and Networks, 2025.
  11. Zhang, S., Dong, B., Chen, Z., Fang, G. and Lin, P. High Sensitivity Fiber-Optic Microcavity Relative Humidity Sensor with a Silicon-Based Sulfide Thin Film. IEEE Sensors Journal, 2025.
  12. Chen, Z., Dong, B., Lin, P., Zhang, S. and Huang, W. High-Sensitivity and Wideband All-Polymer Microcavity Fiber Acoustic Sensor and Its Applications in Partial Discharge Detection. ACS Applied Electronic Materials, 7(2):706-713, 2025.
  13. Dong, B., Zhang, S., Chen, Z., Lin, P. and Huang, W. An all-polymer spring optomechanical-microresonator-based ultrasonic sensor. Optoelectronic Devices and Integration XIII, 13236, 1323603, 2024.
  14. Wei, T., Dong, B., Hu, Y., He, S., Wang, Y., Lin, P. and Huang, W. A Flexible Film Bulk Acoustic Resonator Radio-Frequency Sensor Based on β-Type PVDF Films for Tactile Perception. ACS Applied Electronic Materials, 6(12):8870-8878, 2024.
  15. Wei, T., Dong, B., Hu, Y., Lin, P. and Huang, W. A Flexible Film Bulk Acoustic Resonator Radio Frequency Sensor Based on Pb1.2(Zr0.52Ti0.48)O3/Polymer Thin Films. IEEE Sensors Journal, 24(23):38748-38757, 2024.
  16. Wei, T., Dong, B., Wang, Y., Hu, Y. and Huang, W. Flexible Bulk Acoustic Resonator Radio Frequency Sensor Based on PETA/Pb1.2(Zr0.52Ti0.48)O3/Polymer Films Detecting Human Respiratory Humidity. ACS Applied Electronic Materials, 6(10):7484-7494, 2024.
  17. Zhang, S., Dong, B., Wang, Z., Chen, Z., Wei, T., Zheng, J. and Lin, P. PETA polymer/graphene composite film-enabled optical microcavity relative humidity sensor for respiratory monitoring. ACS Applied Electronic Materials, 6(10):7439-7447, 2024.
  18. Zhang, X., Yuan, T., Wang, H. and Dong, B. Ambient temperature monitoring induced by radiation field of four-core fiber optical tweezers. Optics & Laser Technology, 175, 110852, 2024.
  19. Chen, Z., Dong, B., Shao, Q., Wang, C., Tang, Y., Li, X., Lin, P. and Wang, Y. Flexible arc-shaped micro-fiber Bragg grating array three-dimensional tactile sensor for fingertip signals detection and human pulse monitoring. ACS Applied Materials & Interfaces, 16(32):42986-42994, 2024.
  20. Dong, B., Chen, Z., Wang, Y. and Huang, W. Flexible Fiber Bragg Grating Array for Robotic Finger Tactile Sensing. 2024 22nd International Conference on Optical Communications and Networks, 2024.


Personal Details

https://scholar.google.com/citations?user=aNUH0gwAAAAJ&hl=en

WoS Researcher ID: MOX-5849-2025

SCIRP Newsletter
Copyright © 2006-2026 Scientific Research Publishing Inc. All Rights Reserved.
Top