Prof. Dr Guo Daoyou | Optoelectronic Award | Best Researcher Award

Prof. Dr Guo Daoyou | Optoelectronic Award | Best Researcher Award

Prof. Dr Guo Daoyou, Zhejiang Sci-Tech University, China

Daoyou Guo is a Professor at the School of Science, Zhejiang Sci-Tech University, China. He earned his Ph.D. from the Beijing University of Posts and Telecommunications in 2016, following his M.E. from Xiangtan University and B.S. from Zhejiang Sci-Tech University. His research focuses on the growth of epitaxial thin films, Ga₂O₃-based ultra-UV detectors, ZnO nanorod arrays, and photodetectors. With extensive experience in laser molecular beam epitaxy (LMBE) and semiconductor materials, he has contributed significantly to the fields of optoelectronics, photovoltaic cells, and resistance switching memory devices.

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Summary of Suitability for Best Researcher Award

Professor Daoyou Guo is a highly accomplished researcher in the field of optoelectronics and semiconductor materials, with a strong focus on Ga₂O₃-based thin films and ultraviolet photodetectors. His extensive research experience, spanning epitaxial thin film growth, photodetectors, and photovoltaic applications, has led to numerous high-impact publications, including several with over 400 citations. His contributions to self-powered and solar-blind photodetectors demonstrate innovation and significant advancements in the field. With a strong academic background, progressive career growth, and impactful research, he is a highly suitable candidate for the Best Researcher Award.

 

🎓 Education

📅 Ph.D. (2013 – 2016) – School of Science, Beijing University of Posts and Telecommunications
📅 M.E. (2010 – 2013) – Faculty of Materials, Optoelectronics and Physics, Xiangtan University
📅 B.S. (2006 – 2010) – School of Science, Zhejiang Sci-Tech University

💼 Work Experience

👨‍🏫 Professor (Jan 2023 – Present) – School of Science, Zhejiang Sci-Tech University
👨‍🏫 Associate Professor (Jan 2020 – Dec 2022) – School of Science, Zhejiang Sci-Tech University
👨‍🏫 Lecturer (Jul 2016 – Dec 2019) – School of Science, Zhejiang Sci-Tech University

🔬 Research Expertise

🛠 Growth of epitaxial thin films by Laser Molecular Beam Epitaxy (LMBE)
⚡ Growth of pure & doped Ga₂O₃ thin films
🌞 Ga₂O₃-based ultra-UV detectors
🧪 Synthesis of ZnO nanorod arrays via hydrothermal methods
🔋 Photo-to-electron conversion & photovoltaic cells
💾 Resistance switching memory devices
🧲 Magnetic properties of diluted magnetic semiconductors (DMSs)

🏆 Achievements, Awards & Honors

🎖 Recognized for contributions to advanced materials & optoelectronics research
🏅 Published numerous high-impact research papers in thin-film technology & semiconductors
📜 Recipient of grants & funding for research in optoelectronic materials
🔬 Significant advancements in Ga₂O₃-based ultra-UV detectors & nanomaterial synthesis

Publication Top Notes:

Self-Powered Ultraviolet Photodetector with Superhigh Photoresponsivity (3.05 A/W) Based on the GaN/Sn:Ga2O3 pn Junction

CITED:520

Oxygen vacancy tuned Ohmic-Schottky conversion for enhanced performance in β-Ga2O3 solar-blind ultraviolet photodetectors

CITED:505

Fabrication of β-Ga2O3 thin films and solar-blind photodetectors by laser MBE technology

CITED:496

Review of Ga2O3-based optoelectronic devices

CITED:428

Zero-Power-Consumption Solar-Blind Photodetector Based on β-Ga2O3/NSTO Heterojunction

CITED:362

Dr. Xiaoxian Song | Photodetector Device Awards | Best Researcher Award

Dr. Xiaoxian Song | Photodetector Device Awards | Best Researcher Award

Dr. Xiaoxian Song, Jiangsu University, China

Xiaoxian Song was born in Bozhou, Anhui Province, China. He received his B.S. degree in Optoelectronic Science and Technology from Changchun University of Science and Technology, China, in 2010, and his Ph.D. degree in Physical Electronics from Tianjin University, China, in 2017. In 2017, he joined the School of Mechanical Engineering at Jiangsu University, China, as a lecturer. His current research interests include micro-nano optoelectronic devices and the field of terahertz science and applications.

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Summary of Dr. Xiaoxian Song

Dr. Xiaoxian Song is a distinguished researcher specializing in Micro-nano Optoelectronic Devices and Terahertz Science & Applications. He earned his Ph.D. in Physical Electronics from Tianjin University in 2017 and currently serves as a Lecturer at Jiangsu University’s School of Mechanical Engineering. His research has made a significant impact, with 106 published documents, 1,358 citations, and an h-index of 21, reflecting his substantial contributions to the scientific community. His recent works, published in leading journals such as Optics and Laser Technology, Acta Optica Sinica, Photonics, Materials Letters, and Applied Optics, focus on terahertz sensors, photodetectors, metamaterials, and photothermal detection.

🎓 Education:

  • 📚 B.S. in Optoelectronic Science and Technology – Changchun University of Science and Technology, China (2010)
  • 🎓 Ph.D. in Physical Electronics – Tianjin University, China (2017)

💼 Work Experience:

  • 👨‍🏫 Lecturer – School of Mechanical Engineering, Jiangsu University, China (2017–Present)

🔬 Research Interests:

  • 🏆 Micro-Nano Optoelectronic Devices
  • 📡 Terahertz Science and Applications

🏅 Achievements & Awards:

  • 🥇 Outstanding Researcher Award in the field of optoelectronic science
  • 🏆 Best Paper Award in international conferences on terahertz applications
  • 🏅 Research Grants & Funding for projects in micro-nano photonics
  • 📖 Published in High-Impact Journals related to optoelectronics and terahertz technology

Publication Top Notes:

Dual F-type reflective metal microstructure sensor for BSA detection in terahertz band

Tunable Four-Band Terahertz Metamaterial Absorber Based on Dirac Semimetal

Research on Pt-Based Film Negative Photoconductivity Photothermal Detector Under Different Wavelength Laser Irradiation

High-Responsivity Vis–NIR photodetectors based on Bi2Te3 thin films and Ag2S QDs heterojunction

Simulation study on supercontinuum broadening based on the BIC model

A terahertz chiral metamaterial with tunable dual-band to broadband circular dichroism based on Dirac semimetals

High-Performance Vis–NIR Photodetectors Based on Two-Dimensional Bi2Te3 Thin Film and Applications