Mr. Wang Yingli | Sensors | Best Researcher Award

Mr. Wang Yingli | Sensors | Best Researcher Award

Mr. Wang Yingli, Huazhong Agricultural University, China

Yingli Wang  is a dedicated researcher and lecturer specializing in flexible sensors 📡 at Huazhong Agricultural University 🎓. With a Ph.D. in Biosystems Engineering and Food Science from Zhejiang University 🏛️, he has contributed significantly to wearable and electrochemical sensors for biomedical and food safety applications. His groundbreaking work has been published in top-tier journals 📑 such as Science Advances and Advanced Science. As a principal investigator in multiple research projects, he continues to push the boundaries of nanomaterials, plasmonic metasurfaces, and biosensing 🌱🔬, enhancing real-world applications in healthcare and agriculture.

Professional Profile:

Scopus

Suitability for Best Researcher Award

Dr. Yingli Wang is a highly accomplished researcher specializing in flexible and wearable sensors, with a strong background in biosensing, electrochemical detection, and nanomaterials. His innovative work in plasmonic metasurfaces and molecular detection has led to high-impact publications and prestigious research grants. As a Principal Investigator in multiple projects, he has significantly contributed to biomedical diagnostics, food safety, and precision agriculture, making him a strong candidate for a Best Researcher Award.

Education & Experience 🎓💼

📌 Education

  • 🎓 B.Sc. in Horticulture & Forestry Sciences (2013-2017) – Huazhong Agricultural University 🌿
  • 🎓 Ph.D. in Biosystems Engineering & Food Science (2017-2022) – Zhejiang University 🏛️

📌 Work Experience

  • 🏫 Lecturer (2022-Present)Huazhong Agricultural University 🎓
  • 🔬 Principal Investigator – Various flexible sensor research projects

Professional Development 🚀

Dr. Yingli Wang is actively involved in cutting-edge research 🔬 on flexible sensors, focusing on plasmonic metasurfaces, molecular detection, and electrochemical sensing ⚡. As a principal investigator in several government-funded projects 🏅, he has pioneered wearable biosensors for non-invasive health monitoring and food safety analysis 🍎. His strong collaboration with interdisciplinary teams has led to groundbreaking advancements in nanotechnology and biosensing 🌍. Yingli is committed to mentoring students 👨‍🏫 and contributing to the development of next-generation sensor technologies 🔧, bridging the gap between academic research and real-world applications 🌱.

Research Focus  🔬

Dr. Yingli Wang’s research revolves around flexible and wearable sensors 🤖, with a strong emphasis on plasmonic metasurfaces, electrochemical detection, and molecular fingerprinting 🧬. His work aims to develop highly sensitive, non-invasive biosensors for real-time health monitoring 🏥 and food safety applications 🍏. Through advanced nanomaterial engineering, he explores cross-wavelength hierarchical metamaterials, pushing the limits of multi-scale molecular detection 🧐. His expertise extends to biosensing interfaces, signal transduction mechanisms, and point-of-care diagnostic tools ⚕️. By integrating AI and sensor technologies, his work advances precision agriculture, biomedical diagnostics, and environmental monitoring 🌿🌎.

Awards & Honors 🏆

  • 🥇 Principal Investigator, Central Universities Fundamental Research Fund (2023)
  • 🏅 Principal Investigator, Morning Glow Program, Wuhan Natural Science Foundation (2024)
  • 🎖️ Key Research Project Contributor, Hubei Province (2024)
  • 📜 Published in High-Impact Journals, Science Advances, Advanced Science, Advanced Sensor and Energy Materials
  • 🌍 Recognized for Contributions in Flexible Sensor Technologies in Wearable and Electrochemical Sensing

Publication Top Notes:

  • Needle-tip effect promoted flexible electrochemical sensor for detecting chloride ions in food by in-situ deposited silver dendrimers

 

 

Dr. Qijie Qiu | Nanosensors Awards | Best Researcher Award

Dr. Qijie Qiu | Nanosensors Awards | Best Researcher Award

Dr. Qijie Qiu , University of Xinjiang , China

Qiu Qijie, born in Dongying City, Shandong Province, is a dedicated member of the Communist Party with a passion for mechanical engineering. After completing a Bachelor’s degree in Mechanical Engineering at Xinjiang University, where Qiu demonstrated exceptional academic performance, they seamlessly transitioned into a Ph.D. program in the same field. Qiu’s research focuses on innovative applications of microfluidic biochip technology, specifically in enhancing detection sensitivity and controlled drug release through the manipulation of AC electric fields. With expertise in numerical simulations and MEMS processing techniques, Qiu has contributed significantly to the field. Qiu’s achievements extend beyond research, as evidenced by multiple scholarships, awards, and certifications, including National College English Test Band 6 and recognition as an Excellent Communist Youth League Member. Currently, Qiu is finalizing a publication on their groundbreaking work, showcasing a promising future in advancing scientific knowledge and technological innovation.

Professional Profile:

Scopus

Education Background:

Qiu Qijie, born in Dongying City, Shandong Province, is a member of the Communist Party of China. He pursued his Bachelor’s degree in Mechanical Engineering at Xinjiang University from September 2017 to June 2021. Qijie exhibited exceptional academic performance during his undergraduate studies, which led to his direct admission to the Ph.D. program in Mechanical Engineering at Xinjiang University. Currently, he is a Ph.D. candidate, actively engaged in advanced research within his field. This academic journey reflects his dedication to scholarly excellence and commitment to furthering his expertise in mechanical engineering.

Certificates and Awards:

This individual has an impressive academic and extracurricular track record. They have successfully passed the National College English Test Band 4 (CET-4) and Band 6 (CET-6), indicating a strong command of the English language. Additionally, they have achieved a notable level in the National Computer Rank Examination, attaining Level 2. Their commitment to service and leadership is evident through their recognition as an Excellent Communist Youth League Member in 2020. Moreover, their academic excellence has been acknowledged with prestigious scholarships, including the Xinjiang Uygur Autonomous Region Academic Scholarship in 2022 and the Xinjiang Uygur Autonomous Region Scholarship in 2023, highlighting their dedication to their studies. Furthermore, they have showcased their skills and talents in the field of technology by securing a School-level Bronze Award in the “Internet+” Competition in 2022. Overall, this individual’s diverse accomplishments underscore their well-roundedness and commitment to excellence.

Publication Top Notes:
  • Rapid and Sensitive Detection by Combining Electric Field Effects and Surface Plasmon Resonance: A Theoretical Study
    • Authors: Qiu, Q., Xu, Y.
    • Journal: Micromachines
    • Year: 2024
  • A Two-Stage Hybrid Multi-Objective Optimization Evolutionary Algorithm for Computing Offloading in Sustainable Edge Computing
    • Authors: Li, L., Qiu, Q., Xiao, Z., Gu, J., Ming, Z.
    • Journal: IEEE Transactions on Consumer Electronics
    • Year: 2024
  • An Efficient Service-Aware Virtual Machine Scheduling Approach Based on Multi-Objective Evolutionary Algorithm
    • Authors: Xiao, Z., Qiu, Q., Li, L., Lin, Q., Ming, Z.
    • Journal: IEEE Transactions on Services Computing
    • Year: 2023