Prof. Dr. Zhao Wang | catalysts | Best Researcher Award

Prof. Dr. Zhao Wang | catalysts | Best Researcher Award

Prof. Dr. Zhao Wang, Wuhan University of Technology – Mafangshan Campus: Wuhan University of Technology, China

Prof. Dr. Zhao Wang 🎓, born in July 1987, is a distinguished researcher at the State Key Laboratory of Advanced Technology for Material Synthesis and Processing, Wuhan University of Technology 🏛️. His innovative work focuses on bio-inspired hierarchical catalysts and selective hydrogenation strategies, including electrochemistry-assisted and light-assisted techniques 🌟. A prolific scientist, he has published in renowned journals like Nature Communications and Angewandte Chemie International Edition 📜. With a passion for advancing sustainable catalytic processes 🌱, his breakthroughs promise to revolutionize industrial applications. Dr. Wang is also a guest editor for Catalysts, reflecting his leadership in the field 🌐.

Professional Profile:

Orcid

Suitability for the Best Researcher Award: Prof. Dr. Zhao Wang

Prof. Dr. Zhao Wang is an exemplary candidate for the Best Researcher Award, owing to his groundbreaking contributions to catalytic sciences. His work on bio-inspired hierarchical catalysts and sustainable hydrogenation strategies stands out in the field. By achieving remarkable milestones such as 100% butadiene conversion at room temperature using water as a hydrogen source, Dr. Wang has demonstrated both innovation and practical application.

Education and Experience 

Education 📚

  • 🎓 Ph.D. in Chemistry, Université Pierre et Marie Curie (Sorbonne Université), 2013–2017
  • 🎓 Master’s Degree, Wuhan University of Technology, 2010–2013
  • 🎓 Bachelor’s Degree, Anhui University of Technology, 2006–2010

Work Experience 💼

  • 🧑‍🔬 Postdoctoral Researcher, Wuhan University of Technology, 2018–2022

Professional Development 

Prof. Dr. Zhao Wang has made significant strides in catalytic sciences 🧪. His innovative research includes pioneering electrochemistry- and light-assisted hydrogenation methods ⚡💡. These techniques demonstrate superior efficiency, such as 100% butadiene conversion at room temperature with water as the hydrogen source 💧🌡️. Beyond research, Dr. Wang actively contributes to the scientific community as a guest editor for Catalysts 🌍 and collaborates with prominent researchers globally 🌟. His work aims to make catalytic processes greener and more efficient, aligning with sustainable industrial practices 🌱. His achievements are well-recognized through impactful publications and influential collaborations 📖🤝.

Research Focus 

Dr. Wang’s research revolves around developing cost-effective supported metal catalysts for selective hydrogenation 🔬. His groundbreaking work includes bio-inspired hierarchically porous catalysts 🌿 and innovative multi-field hydrogenation strategies, such as electrochemistry- and light-assisted methods ⚡💡. These approaches aim to replace traditional, energy-intensive methods with sustainable alternatives 🌱, achieving high efficiency and selectivity in industrial hydrocarbon transformations 🏭. His team’s achievements, including water-based hydrogenation with remarkable conversion rates 🌊, have set new benchmarks in catalytic science. These advancements promise a greener future for industrial applications and underscore Dr. Wang’s commitment to impactful research 🌟.

Awards and Honors 

  • 🏆 Guest Editor, Catalysts
  • 📜 Published in top journals like Nature Communications, Angewandte Chemie, and Chemical Reviews.
  • 🌟 Recognized for breakthroughs in eco-friendly catalytic processes.
  • 🌍 Renowned for innovative multi-field hydrogenation strategies.

Publication Top Notes:

Alloying effect enhanced bimetallic Ni-Fe/TiO2 catalysts for selective hydrogenation of 1,3-butadiene in the presence of an excess of propylene

H2‐free Semi‐hydrogenation of Butadiene by the Atomic Sieving Effect of Pd Membrane with Tree‐like Pd Dendrites Array

Electrochemistry-assisted selective butadiene hydrogenation with water

Light‐Assisted Semi‐Hydrogenation of 1,3‐Butadiene with Water

A selective and stable Fe/TiO2 catalyst for selective hydrogenation of butadiene in alkene-rich stream