Changyong Gao, PhD, Associate Professor
Date: 2022-03-21, Hits:43

Education Background

2005.09 - 2009.07: Heilongjiang University of Chinese Medicine, Major in Food Science and Engineering, Bachelor's Degree

2009.09 - 2011.07: Harbin Institute of Technology, Major in Food Science, Master's Degree

2013.03 - 2017.06: Harbin Institute of Technology, Major in Chemical Engineering and Technology, Doctor's Degree

Work Experience

2011.07 - 2012.06: National Key Laboratory of Dairy Biotechnology, Bright Dairy, Project Supervisor

2017.07 - 2021.06: Harbin Institute of Technology, Lecturer (Faculty Postdoctoral Fellow)

2021.06 - Present: Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences (CAS), Associate Researcher

Hosted Research Projects

Youth Project of the National Natural Science Foundation of China

"Postdoctoral Innovative Talent Support Program"

Ningbo "Yongjiang Talent Introduction Project"

First-Class Postdoctoral Fund of Heilongjiang Province

Open Fund of the Key Laboratory of the Ministry of Education

Academic Achievements

In the past five years, has published more than 20 academic papers in journals such as Science Robotics, Angewandte Chemie International Edition, Advanced Materials, ACS Nano, and Small.

Has applied for 2 Chinese invention patents.

Awards and Honors

National Scholarship for Doctoral Students (2016)

Excellent Innovation Achievement Award of the Postdoctoral Innovative Talent Support Program (2020)

"My Favorite Excellent Head Teacher" of Harbin Institute of Technology

"Excellent Ideological and Political Worker"

Research Directions

Preparation of swimming micro-nano robots and their biomedical applications

Integrated diagnosis and treatment drug delivery systems

Biomedical applications of liquid metals

Contact Information: gaochangyong@nimte.ac.cn

Published Articles

  1. H.Y. Zhang#, Z.S. Li#C.Y. Gao#, X.J. Fan, Y.X. Pang, T.L. Li, Z.G. Wu*, H. Xie, Q. He*, Dual-responded biohybrid neutrobots for active target delivery, Science Robotics, 2021, 6, eaaz9519.
  2. C.Y. Gao, Y. Wang, Z.H. Ye, Z.H. Lin, X. Ma*, Q. He*, Biomedical Micro-/Nanomotors: From Overcoming Biological Barriers to In Vivo Imaging, Adv. Mater., 2020, 33, 2000512.
  3. C.Y. Gao#, C. Zhou#, Z.H. Lin, M.C. Yang*, Q. He*, Surface Wettability-Directed Propulsion of Glucose-Powered Nanoflask Motors, ACS Nano, 2019, 13, 11, 12758-12766.
  4. D.L. Wang#C.Y. Gao#, W. Wang, M.M. Sun, B. Guo*, H. Xie, Q. He*, Shape-transformable, fusible rod-like swimming liquid metal nanomachine, ACS Nano, 2018, 12, 10212-10220.
  5. Z.H. Lin, C.Y. Gao*,D.L. Wang, Q. He*, Bubble-propelled Janus Gallium/Zinc Micromotors for Active Treatment of Bacterial Infection, Angew. Chem. Int. Ed., 2021, 60, 8750-8754.
  6. C. Zhou#, C.Y Gao#, Y.J Wu*, T.Y Si, M.C. Yang*, Q. He*, Torque-Driven Orientation Motion of Chemotactic Colloidal Motors, Angew. Chem. Int. Ed., 2022,61,e2021160.
  7. M.J. Xuan#, R. Mestre#C.Y. Gao#, C. Zhou, Q. He*, S. Sánchez*, Non-continuous super-diffusive dynamics of light-activated nanobottle motor, Angew. Chem. Int. Ed., 2018, 57, 6838-6842.
  8. C.Y. Gao, Z.H. Lin, B. Jurado-Sánchez, X.K. Lin, Z.G. Wu*, Q. He*, Stem cell membrane-coated nanogels for highly efficient in vivo tumor targeted drug delivery. Small,2016, 12, 4056-4062. 
  9. C. Y. Gao, Z. H. Lin, D. L. Wang, Z. G. Wu*, Q. He*, Acoustically propelled red blood cell-like hemoglobin micromotors for enhanced photodynamic cancer therapy. ACS Appl. Mater. Interfaces, 2019, 11, 23392-23400.
  10. C. Y. Gao, Z. H. Lin, Z. G. Wu*, X. K. Lin, Q. He*, Stem-cell-membrane camouflaging on near-infrared photoactivated upconversion nanoarchitectures for in vivo remote-controlled photodynamic therapy, ACS Appl. Mater. Interfaces, 2016, 8, 34252-34260.
  11. C.Y. Gao, Z.G. Wu, Z.H. Lin, X.K. Lin, Q. He*, Polymeric capsule cushioned leukocyte cell membrane vesicles as a biomimetic delivery platform, Nanoscale, 2016, 8, 3548-3554.
  12. Z. H. Lin#C. Y. Gao#, M. L. Chen, X. K. Lin, Q. He*, Collective motion and dynamic self-assembly of colloid motors. Curr. Opin. Colloid Interface Sci., 2018, 35, 51-58.
  13. C. Zhou, C.Y. Gao*, Z.H. Lin, D.L. Wang, Y. Li, Y. Yuan, B.H. Zhu, Q. He*, Autonomous Motion of Bubble-Powered Carbonaceous Nanoflask Motors, Langmuir, 2020, 36, 25, 7039-7045.
  14. C.Y. Gao, Z.H. Lin, D.L. Wang, C. Zhou, Q. He, Acoustophoretic Motion of Erythrocyte-mimicking Hemoglobin Micromotors, Chinese J. Chem., 2020, 202000347.
  15. D.L. Wang, C.Y. Gao*, Q. He*, Near-Infrared Light Propelled Motion of Needlelike Liquid Metal Nanoswimmers, Colloid. Surface. A, 2020, 611, 125865.
  16. Y. Yuan, C. Y. Gao*, D. L. Wang, C. Zhou, B. H. Zhu*, Q. He, Janus micromotor based on-off luminescence sensor for active TNT detection. Beilstein J. Nanotechnol., 2019, 10, 1324-1331.  
  17. C. Y. Gao, Z. Lin, X. K Lin, Q. He*, Cell Membrane-Camouflaged Colloid Motors for Biomedical Applications, Adv. Therap., 2018, 1800056.
  18. D.L. Wang, C.Y. Gao*, C. Zhou, Z.H. Lin, Q. He*, Leukocyte Membrane-Coated Liquid Metal Nanoswimmers for Actively Targeted Delivery and Synergistic Chemophotothermal Therapy, Research, 2020, 3676954.
  19. D.L. Wang, Z.H. Lin, C. Zhou, C.Y. Gao*, Q. He*, Liquid Metal Gallium Micromachines Speed Up in Confining Channels, Adv. Intell. Sys., 2019, 1, 1900064.
  20. Y. Yuan, C.Y. Gao*, Z.X. Wang, J.M. Fan, H.F. Zhou, D.L. Wang, C. Zhou, B.H. Zhu*, Q. He*, Upconversion-nanoparticle-functionalized Janus micromotors for efficient detection of uric acid, J. Mater. Chem. B, 2022,10, 358-363.