Skip to main content

MSc. Nguyen Thi Huyen

Email: nguyenthihuyen1@tdtu.edu.vn

Google Scholar       ORCID       Web of Science 

Research Highlights
16Citations
 
 
3h-index
 
Biography & Research Vision

I am a PhD researcher in Electronic Materials at the Graduate University of Science and Technology, Vietnam Academy of Science and Technology, and a research assistant at the Institute for Advanced Study in Technology, Ton Duc Thang University.

My research focuses on nanomaterials, plasma technology, and plasma–liquid interactions, particularly the synthesis of noble-metal and metal-oxide nanomaterials for catalysis, environmental remediation, and energy applications. My long-term vision is to integrate plasma technology, automation, and artificial intelligence to develop efficient, controllable, and scalable materials synthesis processes.

Research Projects: 02 as member

ONGOING PROJECTS

1. Role: Member

  • Project title: Development of a Category II Excellent Research Group on the Synthesis and Modification of Materials Using Plasma Technology for Energy and Environmental Applications
  • Funding: VAST Budget: 2 billion VND
  • Duration: 2025-2026

2. Role: Member

  • Project title: Research, development, and application of autonomous laboratory models for advanced materials synthesis and materials data generation.
  • Funding: VAST
  • Budget: 6 billion VND
  • Duration: 2026-2029
Outstanding scientific works

Outstanding publications

  1. Nguyen, T. H., Nguyen, Q. C., Kaushik, N., Nguyen, H. T., Choi, E. H., Nguyen, T. T., Nguyen, N. L., & Kaushik, N. K. (2026). Plasma–Liquid Interactions in the Synthesis of Gold Nanomaterials: Current Advances and Future Perspectives. Applied Sciences. https://doi.org/10.3390/app16157618
  2. Nguyen, H. T., Vu, H. K., Vu, T. T., Pham, K. T., Nguyen, N. L., Nguyen, G. T., Jin, Y., Son, B. K., Nguyen, T. T., Nguyen, H. T., & La, D. D. (2025). Scalable synthesis of SiOx/Spherical graphite composite via thermal plasma and ball milling for high-performance Lithium-ion battery anodes. Physica Scripta, 100(8), 085955. DOI 10.1088/1402-4896/adf404
  3. Pham, K. T., Nguyen, H. T., Le, T. C. U., Vu, T. T., Le, T. H., Nguyen, H. T., La, D. D., Nguyen, D. K., & Nguyen, D. D. (2026). Protective Coating From PVP Resin Precursor: A Low-Cost Approach to Tackling Challenges of Aluminum-Based Anode Material for Lithium-Ion Batteries. ChemistryOpen, 15(7), e202500487. https://doi.org/10.1002/open.202500487
  4. Nguyen, T. L., Nguyen, T. H., Ung, T. D. T., Chae, W.-S., & Nguyen, Q. L. (2025). ZnSe nanocrystals for pure 470-nm blue emission. Optical Materials, 167, 117297. DOI:10.1016/j.optmat.2025.117297
  5. Dao, X. H., Vu, H. K., Nguyen, T. H., Man, M. T., Nguyen, T. G., Nguyen, N. L., Nguyen, T. T., La, D. D., Nguyen, C. T., & Nguyen, H. T. (2026). Enhanced photocatalytic activity of nano WO₃ via thermal plasma treatment and porphyrin hybridization. Nanoscale Advances. DOI:10.1039/D5NA01146A