Xiang FEI | Polymer Chemistry | Best Researcher Award

Assoc. Prof. Dr. Xiang FEI | Polymer Chemistry | Best Researcher Award

Associate Professor at Donghua University, China.

Dr. Xiang Fei is a distinguished researcher specializing in polymer chemistry and nanofiber materials πŸ§ͺ🧡. His pioneering work in biodegradable nanofibers, smart textiles, and biocompatible scaffolds has significantly impacted biomedical applications, wearable technology, and environmental sustainability πŸŒπŸ”¬. With extensive international research experience, he has led high-impact projects in biomedical engineering and advanced materials, securing prestigious awards and research grants πŸ†. His collaborations with top institutions like the University of Zurich and the National University of Singapore have driven innovative solutions in nanotechnology, making him a leading figure in his field 🌟.

Professional Profile:

Scopus profile

Suitability for Best Researcher Award

Dr. Xiang Fei is an outstanding candidate for the Best Researcher Award due to his groundbreaking contributions in polymer chemistry, nanofiber engineering, and sustainable biomaterials. His pioneering work in biodegradable nanofibers, conductive polymers, and smart textiles has revolutionized biomedical applications, wearable technology, and environmental sustainability. His research has not only advanced scientific understanding but also led to practical innovations that benefit industries and healthcare.

Education & Experience

πŸ“š Education:

  • Ph.D. in Polymer Science – Shanghai Jiao Tong University πŸŽ“
  • Master’s in Materials Science – Tsinghua University πŸ›οΈ
  • Bachelor’s in Chemical Engineering – Zhejiang University 🏫

πŸ’Ό Experience:

  • Research Fellow – University of Zurich, Switzerland πŸ‡¨πŸ‡­
  • Research Fellow – National University of Singapore πŸ‡ΈπŸ‡¬
  • Associate Professor – Shanghai Institute of Advanced Materials πŸ”¬
  • Lead Scientist – Nanotech R&D, Shanghai Innovation Center βš™οΈ

Professional Development

Dr. Xiang Fei’s career is marked by multidisciplinary collaborations in biomaterials, nanoengineering, and polymer processing 🀝🧫. He has worked on cutting-edge R&D projects in biodegradable fibers, electromagnetic shielding, and advanced medical implants 🩺πŸ§ͺ. His research has influenced waste recycling technologies and sustainable material development, reinforcing his commitment to green innovation πŸŒ±πŸ”¬. He has mentored young scientists, contributed to international journals, and actively participated in global scientific summits and workshops πŸŒπŸ“–. His leadership in innovation has earned him prestigious awards and industry recognition, solidifying his reputation as a visionary in nanotechnology and polymer science πŸ†.

Research Focus

Dr. Xiang Fei’s research spans polymer chemistry, nanofiber engineering, and sustainable biomaterials πŸ§ͺ🧡. His work in biodegradable nanofibers has advanced wound healing, tissue engineering, and orthopedic applications 🩹🦴. He has pioneered conductive polymers for wearable electronics and electromagnetic shielding in smart textiles πŸ“‘πŸ‘•. His expertise in waste polyester recycling has contributed to environmentally friendly material development, reducing industrial pollution β™»οΈπŸŒ. By merging nanoengineering and biomedical sciences, Dr. Fei continues to drive breakthrough innovations that benefit both healthcare and sustainability, making a lasting global impact πŸŒŽπŸ”¬.

Awards & Honors

πŸ† Shanghai Top-Young Talents Award – Recognizing leadership in scientific innovation
πŸ† Innovation Leader Talent Award – Honoring contributions to advanced materials research
πŸ† National Excellence in Research Award – Acknowledging breakthrough work in polymer science
πŸ† Top Research Grant Recipient – Secured major R&D funding in nanotechnology
πŸ† Best Research Paper Award – Published in high-impact journals
πŸ† Distinguished Scientist Recognition – Awarded by international scientific committees

Publication Top Notes

  • “In-Situ anchoring of nano-CuS onto PET@PE nonwoven fabrics: Developing flexible, robust, and all-in-one integrated thermotherapy films”
    Authors: Jiahui Fan, Yuheng Song, Zhou Sha, Xiang Fei, Meifang Zhu
    Journal: Journal of Materials Science and Technology, 2025

  • “Ultra-Fast Fabrication of Mechanical-Water-Responsive Color-Changing Photonic Crystals Elastomers and 3D Complex Devices”
    Authors: Yixiao Xing, Xiang Fei, Jinghong Ma
    Journal: Small, 2024
    Citations: 1

Mrs. Thi Thu Minh Khuong | Polymer chemistry | Best Researcher Award

Mrs. Thi Thu Minh Khuong | Polymer chemistry | Best Researcher AwardΒ 

Mrs.Thi Thu Minh Khuong, Bauman Moscow State Technical University,Vietnam

Khuong Thi Thu Minh is a researcher based in Moscow, Russian Federation. She holds a Bachelor’s Degree in Physics (2022) and a Master’s Degree in Physics (Nanomaterials) (2024) from Bauman Moscow State Technical University. Her research projects at Bauman Moscow State Technical University include investigating the effects of low-frequency randomly polarized electromagnetic radiation on polymer membrane swelling in water, studying crystal growth from supersaturated aqueous solutions on Nafion polymer substrates, and exploring Nafion as a flexible template for selective structuring. Her work involves experimental techniques such as photoluminescence studies and X-ray diffractometry.

Professional Profiles:

ORCID

πŸ”¬ Research Focus:

Khuong’s research delves into the effects of low-frequency randomly polarized electromagnetic radiation on polymer membrane swelling in water. She explores how different isotopic compositions of water affect the photoluminescence of Nafion polymer membranes, providing valuable insights into polymer behavior under various conditions.

πŸ“š Academic Background:

Khuong holds a Bachelor’s Degree in Physics (2022) and a Master’s Degree in Physics (Nanomaterials) (2024), both from Bauman Moscow State Technical University. Her academic journey has equipped her with the knowledge and skills to tackle complex scientific challenges.

🌟 Key Projects:

In her projects, Khuong has studied crystal growth from supersaturated aqueous solutions on Nafion polymer substrates. She has investigated the specifics of crystal formation and the role of polymer fibers in determining the crystal structure, showcasing her expertise in materials science and crystallography.

πŸ” Current Endeavors:

Currently, Khuong is actively involved in research projects that aim to further understand the structural properties of Nafion polymer substrates and their applications as flexible templates for selective structuring. Her work contributes to the advancement of materials science and nanotechnology.

πŸŽ“ Future Aspirations:

With a passion for scientific exploration, Khuong aspires to continue her research in the field of nanomaterials and contribute to innovative developments in the scientific community.

 

Publication Top Notes:

Nafion: A Flexible Template for Selective Structuring

Effects of Low-Frequency Randomly Polarized Electromagnetic Radiation, as Revealed upon Swelling of Polymer Membrane in Water with Different Isotopic Compositions