Girma Sisay Wolde | Materials Science | Best Research Article Award

Dr. Girma Sisay Wolde | Materials Science | Best Research Article Award

National Chung Hsing University | Taiwan

Dr. Girma Sisay Wolde is a distinguished researcher in Materials Science and Engineering with a strong record of scientific contributions, evidenced by 156 citations across 145 documents, 9 key publications, and an h-index of 7. His academic journey includes a Ph.D. in Materials Science and Engineering from National Taiwan University of Science and Technology, an M.Sc. in Inorganic Chemistry from Addis Ababa University, and a B.Sc. in Applied Chemistry from Arba Minch University. Professionally, he has held roles as a postdoctoral researcher at National Chung Hsing University, assistant professor at Bule Hora University, and graduate research assistant at NTUST. His research focuses on photocatalysis, electrocatalysis, and the development of advanced materials for environmental and energy applications, including solar-light-driven ternary MgO/TiO₂/g-C₃N₄ heterojunctions, Zn-Ce-Ga trimetal oxysulfides, and defect-engineered Bi2Mn4O10/BiOI₁₋ₓBrₓ nanosheets. He has contributed to high-impact journals such as Chemosphere, Chemical Engineering Journal, Applied Surface Science, and ACS Applied Energy Materials, with work covering pollutant reduction, nitrogen fixation, and hydrogen evolution. In addition to his research, he has mentored M.Sc. students and guided experiments for high school students, fostering the next generation of scientists. Dr. Wolde’s innovative contributions to materials chemistry, coupled with his extensive publication and citation record, demonstrate both academic excellence and a strong potential for advancing sustainable materials and catalytic technologies.

Profiles : Scopus | Orcid

Featured Publications

Gemeda, T. N., Kuo, D.-H., Ha, Q. N., Gultom, N. S., & Wolde, G. S. (2024). 84.0% energy-efficient nitrate conversion by a defective (Fe, Cu, Ni)₂O₃ electrocatalyst. Journal of Materials Chemistry A.

Huang, T.-C., Chen, X., Wolde, G. S., & Kuo, D.-H. (2024). Photocatalytic hydrogen production over highly oxygen deficient Cu-doped TiO₂ and its composites: Insights of kinetic reaction micromechanisms. Separation and Purification Technology.

Gemeda, T. N., Kuo, D.-H., Wolde, G. S., & Gultom, N. S. (2023). In situ grown (Fe, Mn, Ga)₃O₄₋ₓ spinel/(Mn, Fe)₂O₃₋ᵧ bixbyite dual-phase electrocatalyst for preeminent nitrogen reduction to ammonia: A step toward the NH₃ economy. ACS Applied Energy Materials.

Urgesa, M. H., Wolde, G. S., & Kuo, D.-H. (2023). One-step hydrothermal synthesis of novel flower-like Bi₂Mn₄O₁₀ anchored on BiOI₁₋ₓBrₓ nanosheets for efficient photocatalytic nitrogen fixation. Journal of Alloys and Compounds.

Wolde, G. S., Kuo, D.-H., Urgesa, M. H., & Gemeda, T. N. (2023). Photocatalytic oxidation of benzyl alcohol coupled with p-dinitrobenzene reduction over poly(o-phenylenediamine) nanowires-decorated Gd-TiO₂ nanorods. Chemical Engineering Journal.

Urgesa, M. H., Wolde, G. S., & Kuo, D.-H. (2023). Plasmonic silver nanoparticle-deposited n-Bi₂S₃/p-MnOS diode-type catalyst for enhanced photocatalytic nitrogen fixation: Introducing the defective p-MnOS. Chemical Engineering Journal.

Wolde, G. S., Kuo, D.-H., & Abdullah, H. (2022). Solar-light-driven ternary MgO/TiO₂/g-C₃N₄ heterojunction photocatalyst with surface defects for dinitrobenzene pollutant reduction. Chemosphere.

Sisay, G., Abdullah, H., Kuo, D.-H., Lakew, W., Shuwanto, H., & Fentie, S. (2021). Zn-Ce-Ga trimetal oxysulfide as a dual-functional catalyst: Hydrogen evolution and hydrogenation reactions in a mild condition. Applied Surface Science.

Tadesse, S. F., Kuo, D.-H., Kebede, W. L., & Wolde, G. S. (2021). Visible light driven Nd₂O₃/Mo(S,O)₃₋ₓ·0.34H₂O heterojunction for enhanced photocatalytic degradation of organic pollutants. Applied Surface Science.

Hualiang Zhang | Agricultural and Biological Sciences | Best Researcher Award

Dr. Hualiang Zhang | Agricultural and Biological Sciences | Best Researcher Award

Zhejiang University | China

Author Profile

Orcid

Early Academic Pursuits ✨

Dr. Hualiang Zhang embarked on his academic journey with a Bachelor’s degree in Geographical Sciences from Shenyang University (2008-2012). Following this, he pursued a Master’s degree in Soil Science at Jilin Agricultural University (2012-2015), where he developed a profound interest in soil ecology and microbial interactions. He culminated his formal education with a PhD in Ecology from Northeast Normal University (2015-2018), focusing on the mechanisms of nutrient absorption and utilization in crops, particularly nitrogen and phosphorus dynamics.

Professional Endeavors 💼

Dr. Zhang’s professional career includes a postdoctoral fellowship at Zhejiang University, where he has been actively involved in research since 2021. His work spans ecology, soil ecology, and microbial ecology, with notable expertise in field research and climate change studies. Dr. Zhang has contributed significantly as an assistant researcher and co-supervisor, honing his skills in laboratory experiments and microbial bioinformatics analysis.

Contributions and Research Focus 🔬

Dr. Zhang's research focuses on the regulatory effects of rhizosphere microorganisms on nutrient cycling and soil-borne nematode diseases. His studies aim to enhance green agricultural practices by optimizing nitrogen fertilizer use and understanding the interactions between root architecture and microbial communities. His recent work includes exploring root system plasticity, microbial interactions, and phosphorus mobilization in intercropping systems.

Accolades and Recognition 🏆

Dr. Zhang has received multiple awards, including the Excellence Award at the International Symposium on Crop Root and Rhizosphere Interactions. He has contributed to influential publications and participated in significant projects funded by the National Natural Science Foundation of China. His editorial roles in prestigious journals like Plant and Soil and Frontiers in Microbiology underline his academic influence.

Impact and Influence 🌐

Dr. Zhang’s contributions extend beyond academia to practical applications in sustainable agriculture. His research provides a theoretical foundation for reducing nitrogen fertilizer inputs and controlling soil-borne diseases, thereby promoting environmentally friendly farming practices. His involvement in teaching and textbook writing further disseminates his expertise to future generations of scientists.

Legacy and Future Contributions 🕊️

Dr. Zhang’s innovative work in soil and microbial ecology lays the groundwork for sustainable agricultural advancements. As he continues to publish high-impact research and mentor young scientists, his legacy is poised to influence both scientific thought and practical agricultural strategies, contributing to global food security and environmental sustainability.

 

Publications


📄 Synthetic microbial community isolated from intercropping system enhances P uptake in rice

 Author(s): Ma HM, Zhang HC, Zheng CC, Liu ZH, Wang J, Tian P, Wu ZH*, Zhang HL*
 Journal: International Journal of Molecular Sciences (IF: 4.9, 二区)
 Year: 2024


📄 Cover crop rotation suppresses root-knot nematode infection via structuring soil microbiota
 Author(s): Zhang HL, Guo DS, Lei YT, Lozano-Torres JL, Deng Y, Xu JM, Hu LF
 Journal: New Phytologist (IF: 8.3, 一区)
 Year: 2024


📄 Root system architecture plasticity with beneficial rhizosphere microbes: The known and unknown
 Author(s): Zhang HL, Liu ZL, Zheng CC et al.
 Journal: Microbiological Research (IF: 6.1, 一区) (Major Revision)
 Year: 2024


📄 The relative contributions of pH, organic anions, and phosphatase to rhizosphere soil phosphorus mobilization and crop phosphorus uptake in maize/alfalfa polyculture
 Author(s): Sun BR, Gao YZ, Wu X, Ma HM, Zheng CC, Wang XY, Zhang HL, Li ZJ, Yang HJ
 Journal: Plant and Soil (IF: 4.2, 二区)
 Year: 2020


📄 Maize/alfalfa intercropping enhances yield and phosphorus acquisition
 Author(s): Ma HM, Yu XQ, Yu Q, Wu HH, Zhang HL, Pang JY, Gao YZ
 Journal: Field Crops Research (IF: 5.6, 一区)
 Year: 2023