Dr. yanzhao zhang – direct seawater electrolysis- Best Researcher Award

Dr. yanzhao zhang – direct seawater electrolysis- Best Researcher Award

The University of Queensland – Australia

Author Profile

Google Scholar

Scopus

Orcid

🎓 Education & Academic Background

Yanzhao Zhang has built a strong academic foundation in Chemical Engineering and Material Science, earning degrees from some of the most prestigious institutions. He completed his Ph.D. in Chemical Engineering from The University of Adelaide (2019-2023) under the supervision of Prof. Shi-Zhang Qiao. Prior to this, he pursued his Master of Engineering in Material Science and Engineering at Zhejiang University (2015-2018), where he was mentored by Prof. Xiwen Zhang. His academic journey began with a Bachelor of Engineering in Material Processing and Control Engineering from Wuhan University (2010-2014), where he worked closely with Dr. Yuanxiang Zhu.

🔬 Professional Experience & Research Interests

Currently, Yanzhao Zhang serves as a Postdoctoral Fellow at the School of Chemical Engineering, The University of Queensland (2023-present), where he collaborates with Dr. Zhiliang Wang and Prof. Lianzhou Wang. His research focuses on the modulation and modification of material surfaces to gain a deeper understanding of catalyst design and enhance their catalytic performances. One of his primary research areas involves the fabrication of active sites and single atoms through surface modification. He has employed various strategies, including high-active surface exposure, metal cluster/single-atom loading, surface defect construction, and functional group grafting, to enhance the photocatalytic performance of 2D materials, such as g-C₃N₄, Bi-based materials (BixMOy, BiOX), MoS₂, TiO₂, and carbon-based nanosheets. His research has been published in high-impact journals, including Advanced Materials, Angewandte Chemie International Edition, Advanced Energy Materials, Small Science, and Green Chemistry.

Another key focus of his research is the modulation of surface electron redistribution to improve photocatalytic efficiency. By introducing an asymmetric dual-atom system, he has discovered a new charge transfer mechanism. Through a combination of rigorous experiments and simulations, he has been able to analyze the detailed changes in surface electron distribution, with two new manuscripts currently in preparation. Additionally, his work involves the precise investigation of the structure-to-performance correlation in photocatalysis. In particular, he has studied the impact of carbon impurities in CO₂ photoreduction, which arise from the synthesis and use of photocatalysts. Utilizing in situ characterizations, he has proposed elimination approaches and rigorous experimental methodologies to mitigate these impurities, leading to improved photocatalytic performance. His findings have been published in ACS Energy Letters.

🏆 Awards & Recognitions

Yanzhao Zhang has received numerous prestigious awards in recognition of his outstanding research contributions. He was honored with the Dean’s Commendation for Doctoral Thesis Excellence (2023), acknowledging the high quality of his doctoral research. In the same year, he received the National Scholarship for Outstanding Self-funded International Students, a prestigious award recognizing top international scholars. In addition, he was awarded the ARC Grant Funded Short-Term Scholarship (2022) and the Australian Government Research Training Program Scholarship (2019), both of which supported his research endeavors. Earlier in his academic career, he won the Material Microstructure Competition of Zhejiang Province (2018) and multiple Academic Scholarships from Zhejiang University (2016, 2017, 2018) for his academic excellence.

🛠️ Technical Skills & Expertise

With extensive research experience, Yanzhao Zhang has developed a strong technical skill set in advanced characterization techniques, materials synthesis, and computational modeling. He is proficient in vibrational and absorption spectroscopy, including Raman spectroscopy, in situ FTIR, UV-vis, and fluorescence spectroscopy, which are essential for analyzing material properties. He is also skilled in electron microscopy techniques, such as Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM), for studying the morphology and structure of nanomaterials. His expertise extends to 2D material synthesis and surface modification, particularly in the engineering of photocatalytic materials. He has hands-on experience with Density Functional Theory (DFT) simulations using VASP, which allows him to explore electronic structures and charge transfer mechanisms. His knowledge of photo/electrochemical and synchrotron characterizations further enhances his ability to investigate catalytic processes in energy conversion applications.

Moreover, he has experience in photocatalytic reactor design, which plays a crucial role in developing high-performance catalytic systems. He is also proficient in the separation and quantification of species in complex chemical systems using Gas Chromatography (GC) and Liquid Chromatography (LC), which are essential for analyzing reaction products and intermediates. Through his groundbreaking research and technical expertise, Yanzhao Zhang continues to advance the field of material science and photocatalysis, making significant contributions to energy conversion and environmental sustainability.

Notable Publications📝


Hybrid water electrolysis with integrated and cascading reactions using two-dimensional electrocatalysts

Authors: Yao, D.; Zhang, Y.; Zhang, S.; Wan, J.; Yu, H.; Jin, H.

Journal: Journal of Materials Chemistry A

Year: 2023


Reversed Electron Transfer in Dual Single Atom Catalyst for Boosted Photoreduction of CO₂

Authors: Zhang, Y.; Johannessen, B.; Zhang, P.; Gong, J.; Ran, J.; Qiao, S.-Z.

Journal: Advanced Materials

Year: 2023


Two-dimensional building blocks for photocatalytic ammonia production

Authors: Ran, J.; Xia, B.; Zhang, Y.; Qiao, S.-Z.

Journal: Journal of Materials Chemistry A

Year: 2021


Atomic-Level Reactive Sites for Semiconductor-Based Photocatalytic CO₂ Reduction

Authors: Zhang, Y.; Xia, B.; Ran, J.; Davey, K.; Qiao, S.Z.

Journal: Advanced Energy Materials

Year: 2020


In Situ Fragmented Bismuth Nanoparticles for Electrocatalytic Nitrogen Reduction

Authors: Yao, D.; Tang, C.; Li, L.; Xia, B.; Vasileff, A.; Jin, H.; Zhang, Y.; Qiao, S.-Z.

Journal: Advanced Energy Materials

Year: 2020

 

Mr. Stephen Kamande, Renewable Energy and Fuel Cells, Best Researcher Award

Mr. Stephen Kamande, Renewable Energy and Fuel Cells, Best Researcher Award

Mr. Stephen Kamande, Technical University of Kenya, Kenya

Professional Profile

Scopus

🌟Professional Summary

Mr. Stephen Mwaniki Kamande is a dedicated biotechnologist specializing in the identification and characterization of microorganisms for secondary metabolite production. His expertise spans biotechnology applications such as biofuel production, plant tissue culture, and molecular biology. Stephen aims to contribute innovations that promote research in biotechnology and influence policy for sustainable solutions. Currently, he serves as a Lab Manager at the Technical University of Kenya.

🎓Educational Background

M.Sc. Biotechnology (2024) – Kenyatta University

B.Phil. Biotechnology, First Class Honors (2016) – Technical University of Kenya

Higher Diploma in Biotechnology (2008) – Kenya Polytechnic University College

Diploma in Medical Laboratory Sciences (2001) – Kenya National Polytechnic

💼Professional Experience

Lab Manager (2013–Present)
Department of Biochemistry and Biotechnology, Technical University of Kenya

Supervise technical staff and manage lab operations

Schedule and allocate practical units

Participate in research and develop lab procedures

Administer and train in practical sessions

🔬Research Interests

Microbial Biotechnology: Enzymatic production for industrial applications, including biofuels

Plant Biotechnology: In vitro plant cell culture and transformation for crop and animal improvement

🛠Skills

Biotechnology Lab Management

Research and Data Analysis

Team Leadership and Collaboration

Communication and Technical Reporting

Publication Top Noted📝 

Production of cellulases by Xylaria sp. and Nemania sp. using lignocellulose substrates for bioethanol production from maize cobs

Authors: Kamande, S.M., Omwenga, G.I., Ngugi, M.P.
Journal: Heliyon
Year: 2024

 

Assoc Prof Dr. Zhihong Liu, Renewable Energy and Fuel Cells, Best Researcher Award

Assoc Prof Dr. Zhihong Liu, Renewable Energy and Fuel Cells, Best Researcher Award

Assoc Prof Dr. Zhihong Liu, Taiyuan University of Technology, China

Profile

Scopus

⭐Summary

Assoc Prof Dr. Zhihong Liu is an Associate Professor at Taiyuan University of Technology and a postdoctoral researcher at the Shanxi Academy of Advanced Research and Innovation. His expertise lies in resource and energy recovery from waste biomass, hydrogen recovery in electro-fermentation, and nitrogen and phosphorus recovery from waste activated sludge. His innovative research and contributions have been recognized with several awards.

🎓Education

Bachelor’s Degree - Taiyuan University of Technology (2011-2015)
Doctoral Degree - Taiyuan University of Technology (2015-2020)

👨‍🏫Professional Experience

Associate Professor - Taiyuan University of Technology (Dec 2022 - Present)
Lecturer - College of Environmental Science and Engineering, Taiyuan University of Technology (Jan 2021 - Dec 2022)
Postdoctor - Shanxi Academy of Advanced Research and Innovation (Present)

🔬Research Interests

🌱 Resource and Energy Recovery - Waste biomass
Hydrogen Recovery - Electro-fermentation
💧 Nitrogen and Phosphorus Recovery - Waste activated sludge

🏆Awards and Achievements

 Outstanding Doctoral Thesis of Shanxi Province (2020)
 Best Paper Award, ABBS (2022)
 Science and Technology Cooperation Award of Shanxi

🌍Professional Memberships

Ecological Environment Protection Industry Association of Changzhi City

Publications📚

"Weakened Mn–O bond in Mn–Ce catalysts through K doping induced oxygen activation for boosting benzene oxidation at low temperatures"

Authors: Chen, X., Wang, X., Jia, Z., Wang, M., Liang, M.

Journal: Journal of Colloid and Interface Science

Year: 2024

"Insights into the effect of nitrate photolysis on short-chain fatty acids production from waste activated sludge in anaerobic fermentation system: Performance and mechanisms"

Authors: Liu, Z., Cui, Z., Guo, Z., Yue, X., Zhou, A.

Journal: Water Research

Year: 2024

"Sulfate-reducing bacteria decreases fractional pressure of H2 to accelerate short-chain fatty acids production from waste activated sludge fermentation assisted with zero-valent iron activated sulfite pretreatment"

Authors: Hu, H., Liu, S., Li, D., Yue, X., Liu, W.

Journal: Science of the Total Environment

Year: 2024

"Efficient phosphate and hydrogen recovery from sludge fermentation liquid by sacrificial iron anode in electro-fermentation system"

Authors: Qiang, H., Liu, Z., Yin, X., Yue, X., Zhou, A.

Journal: Journal of Environmental Management

Year: 2024

"Selective colonization of multifunctional microbes that facilitates caproate production in microbial electrosynthesis system"

Authors: Wang, Y., Cheng, S., Varrone, C., Wang, A., Liu, W.

Journal: Chemical Engineering Journal

Year: 2024

"Syntrophic Joint of Sulfate-Reducing Bacteria and Hydrogen-Producing Acetogen Stimulated Methane Production from Waste Activated Sludge Digestion"

Authors: Wu, H., Zhou, A., Duan, Y., Liu, W., Yue, X.

Journal: Fermentation

Year: 2024

 

 

Ms. Faiza Zulfiqar, Renewable Energy and Fuel Cells, Best Researcher Award

Ms. Faiza Zulfiqar, Renewable Energy and Fuel Cells, Best Researcher Award

Ms. Faiza Zulfiqar, Lahore university of management sciences,LUMS, Pakistan

Profiles

Scopus

Google Scholar

🎓Education

Doctor of Philosophy (Ph.D.)
LUMS University, Lahore (2021 – Current)
Field: Chemistry 📚

Master of Philosophy (M.Phil.)
Quaid-I-Azam University, Islamabad (2019 – 2021)
Field: Inorganic / Analytical Chemistry

Bachelor of Science (B.Sc.)
Quaid-I-Azam University, Islamabad (2015 – 2019)
Field: Chemistry 🧪

👨‍🏫Professional Experience

Training Course on HPLC
MEDWATCH Global, Lahore (08/2024 — 09/2024) 🧬

Hands-on Training in Materials Characterization
Lahore University of Management Sciences (11/2021 – 12/2021) 🧑‍🔬

🔬Research Interests

Electrocatalytic Seawater Oxidation: Synthesis of self-standing electrodes and their characterization for methanol-assisted seawater splitting. 🌊🔬

CO2 Reduction and Alcohol Oxidation: Development of porous materials on Cu foam for selective CO2 reduction coupled with alcohol oxidation. 🔋

Phosphidization of Nanomaterials: Studied the effects of phosphidization on ZIF-12 derived CoOx embedded N-doped carbon nanotubes for electrocatalytic water oxidation. 🧪✨

Water Oxidation Catalysis: Synthesized CuO-Cu20 modulated CoMn layered double hydroxides for efficient electrocatalytic water oxidation. 🔍

💻Skills

Technical Skills
Solvothermal, co-precipitation, electrodeposition methods, electrospinning, SEM, XRD, HPLC, IR, UV-visible spectrophotometry.

Digital Skills
Proficient in Microsoft Office, Origin Pro, ChemDraw, and image analysis.

Publications📚

Electro-synthesis of valuable products by coupling energy-saving anodic alcohol oxidation reaction with cathodic CO2 reduction reaction

Authors: Zulfiqar, F., Arshad, F., Haq, T.U., Sher, F.

Journal: International Journal of Hydrogen Energy

Year: 2024

Cobalt containing bimetallic ZIFs and their derivatives as OER electrocatalysts: A critical review

Authors: Shahzad, A., Zulfiqar, F., Arif Nadeem, M.

Journal: Coordination Chemistry Reviews

Year: 2023

Electrocatalytic water oxidation on CuO-Cu2O modulated cobalt-manganese layered double hydroxide

Authors: Hameed, A., Zulfiqar, F., Iqbal, W., Ahmad Shah, S.S., Nadeem, M.A.

Journal: RSC Advances

Year: 2022

Pronounced effect of phosphidization on the performance of CoOx encapsulated N-doped carbon nanotubes towards oxygen evolution reaction

Authors: Zulfiqar, F., Hameed, A., Shahzad, A., Ahmad Shah, S.S., Nadeem, M.A.

Journal: International Journal of Hydrogen Energy

Year: 2022