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Assoc. Prof. Dr. Ji Wang | laser micro-nano processing| Best Researcher Award

Assoc. Prof. Dr. Ji Wang, Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences, China

Ji Wang is an Associate Researcher at the Ningbo Institute of Materials Technology & Engineering, Chinese Academy of Sciences. With a Ph.D. supervised by Academician Lin Li of the Royal Academy of Engineering, UK, he specializes in laser micro-nano processing and optical field modulation. He leads the Laser Micro-Nano Processing Laboratory and has spearheaded multiple national research projects. His innovations in femtosecond laser processing have advanced functional micro-nano structures for multi-material applications. Ji Wang has authored over 20 scientific papers, 24 patents, and serves as a guest editor and reviewer for esteemed journals. 🚀📚

Professional Profile:

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Suitability of Ji Wang for the Best Researcher Award

Ji Wang is an outstanding candidate for the Best Researcher Award due to his pioneering contributions to laser micro-nano processing and optical field modulation. His work has significantly advanced precision manufacturing, material surface engineering, and optical applications, making a substantial impact on both academia and industry. His leadership in the Laser Micro-Nano Processing Laboratory and successful execution of multiple national research projects highlight his excellence in research and innovation.

Education & Experience 🎓🔬

  • 🎓 Ph.D. – Supervised by Academician Lin Li, Royal Academy of Engineering, UK
  • 🔬 Associate ResearcherNingbo Institute of Materials Technology & Engineering, CAS
  • 🧪 DirectorLaser Micro-Nano Processing Laboratory
  • 📜 Senior Member – Chinese Society for Micro & Nano Technology, Optical Engineering, and Mechanical Engineering
  • 📖 Guest EditorNanomaterials, Reviewer for Journal of Materials Research & Technology
  • 🔍 Research Collaborations – Advanced Functional Materials (IF: 19), Micromachines (IF: 4.4, JCR Q1)

Professional Development 🚀📖

Ji Wang has dedicated his career to advancing laser intelligent manufacturing and nano light field modulation. His pioneering research on femtosecond laser micro-nano processing has led to breakthroughs in material surface and interface engineering. His work has significantly enhanced superhydrophobicity, corrosion resistance, and optical applications of advanced materials like single-crystal diamond and metal alloys. As a senior member of multiple scientific societies, he actively contributes to knowledge dissemination and peer review. His leadership in the Laser Micro-Nano Processing Laboratory drives cutting-edge innovations, shaping the future of precision manufacturing and optical technologies. 🔬⚙️✨

Research Focus 🔍🔬

Ji Wang’s research centers on ultrafast laser micro-nano processing, contributing to precision manufacturing, optical modulation, and material interface engineering. His recent breakthrough in femtosecond laser-induced surface periodic structures enables the creation of multi-level nanostructures on TA1 alloy, enhancing its durability, corrosion resistance, and hydrophobic properties. His expertise spans laser intelligent manufacturing, diamond sensors, and functional nanostructures. His contributions bridge fundamental science and industrial applications, making significant advancements in optical waveguides, sensor technology, and nanophotonic devices. 🚀💡📡

Awards & Honors 🏆🎖️

  • 🏅 Best Researcher Award Nominee
  • 📜 Senior Member – Chinese Society for Micro & Nano Technology
  • 🔬 National Natural Science Foundation of China (NSFC) Research Leader
  • 📖 Guest Editor – Nanomaterials Journal
  • 🏆 Multiple High-Impact Research Publications (Advanced Functional Materials, Micromachines)
  • ⚙️ 24 Patents Published & 4 Under Process
  • 📡 Research Collaborations with PKU-HKUST Shenzhen Hong Kong Institute

Publication Top Notes:

  • Nano hierarchical hill-like structure with TA1 surface manufactured by LIPSS for anti-corrosion and anti-icing
  • Study on the Superhydrophobic Properties of Micro/Nano Hole Structure on the Surface of GFRP Based on Femtosecond Laser Etching
  • Efficient coupling of dual beam combined laser into micro water jet for deep processing
  • Flexible Mini-Inductors with Ultra-High Inductance Density Cut from Soft Magnetic Amorphous Alloys by Femtosecond Laser
  • Controllable Preparation of Fused Silica Micro Lens Array through Femtosecond Laser Modification Assisted Wet EtchingMaterials, 2024

 

Assoc. Prof. Dr. Ji Wang | laser micro-nano processing | Best Researcher Award

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