Nyambane Ontita | Microbiology | Best Research Article Award

Dr. Nyambane Ontita | Microbiology | Best Research Article Award

Central South University, China

Profile

ORCID

🎓 Early Academic Pursuits

Nyambane Clive Ontita's academic journey reflects a deep-rooted passion for environmental microbiology and sustainable technologies. He began his undergraduate studies with a Bachelor of Science in Education (Biology/Agriculture) from Bugema University, Uganda, in 2010, which laid a strong foundation in biological sciences and teaching. Driven by a growing curiosity about microbial life, he pursued a Master of Science in Microbiology at Kenyatta University, Kenya, graduating in 2015. His passion for advanced research and problem-solving led him to China, where he is currently completing a Ph.D. in Environmental Microbiology at Central South University (2021–2025), under the mentorship of Prof. Weimin Zeng.

💼 Professional Endeavors

Clive’s professional path is as dynamic as it is impactful. He served as a Part-time Lecturer at Kisii University (2015–2021), where he taught medical microbiology and mentored students in both theory and practical laboratory skills. Simultaneously, he lectured at Jomo Kenyatta University of Agriculture and Technology (JKUAT) (2016–2021), handling modules in general microbiology and environmental physiology. These roles not only honed his communication and instructional abilities but also solidified his role as a dedicated educator and mentor. Earlier in 2015, he gained hands-on clinical experience as a Graduate Researcher at Kisii Teaching and Referral Hospital, working on microbial ecology and antibiotic resistance in clinical settings.

🔬 Research Focus and Scientific Contributions

Clive's doctoral research centers on microbial electrochemical strategies for rare earth element (REE) recovery and wastewater treatment, merging microbiology with environmental engineering. He has engineered bioelectrochemical systems (BES) capable of recovering Ce(III), Y(III), Gd(III), and La(III) from contaminated industrial and mining waste streams. His work delves into biofilm dynamics, metal resistance, and biogeochemical transformations, utilizing sophisticated techniques such as XPS, SEM, XRD, and FTIR. Clive also employs 16S rRNA sequencing, qPCR, and PICRUSt for microbial community analysis and functional predictions. His research significantly contributes to the fields of metal recovery, biostabilization, and sustainable waste management, aligning with global environmental sustainability goals.

🌍 Impact and Influence

Clive’s work holds both academic and environmental significance. Through his research, he addresses urgent global challenges such as waste valorization, emerging contaminant degradation, and mine waste reuse. His efforts are shaping innovative solutions that integrate microbial systems into sustainable industrial practices. Recognized for his leadership and innovation, Clive has been honored as the Best Research Student at Central South University (2024) and Best Research Group Presenter (2022)—a testament to his scientific rigor and ability to inspire peers.

📚 Academic Citations and Scholarly Presence

Clive’s scholarly output and impact can be tracked through his profiles on ORCID and Google Scholar, where his contributions to environmental microbiology and bioremediation are gaining citations. His academic footprint continues to grow, reinforcing his influence in both African and international scientific communities.

🧪 Technical Skills and Competence

Clive is proficient in a wide array of advanced laboratory and analytical techniques. His core competencies include DNA extraction, 16S rRNA sequencing, qPCR, and bioinformatics analysis. He is also skilled in instrumental techniques such as ICP-OES, XRD, SEM, XPS, and FTIR, essential for surface and mineral analysis. His expertise in designing and operating BES reactors, coupled with data processing using OriginLab, SPSS, and GraphPad Prism, highlights his interdisciplinary strengths across biology, chemistry, and engineering domains.

👨‍🏫 Teaching and Mentorship

An enthusiastic educator, Clive has spent over six years teaching undergraduate and graduate courses in microbiology. At Kisii University and JKUAT, he supervised student research and practical laboratory sessions, nurturing future scientists in microbial culturing, molecular diagnostics, and environmental analysis. His teaching philosophy is centered on hands-on learning, critical thinking, and real-world applications, which have had a lasting impact on many aspiring microbiologists in Kenya.

🏅 Conferences, Networking & International Exposure

Clive has actively participated in international academic forums, gaining exposure to global innovations and collaborative opportunities. Notably, he attended the Annual International Training Courses (AITC) in Bangkok, Thailand (August 2024), focusing on Carbon Neutrality and Net Zero Emissions. He also presented at the 9th Graduate Innovation Forum on the Low-Carbon Development of Metal Resources at Central South University in 2023. These engagements highlight his commitment to environmental solutions at a global scale.

🌱 Legacy and Future Contributions

Clive envisions a future where microbial technologies transform waste into resources, and he aims to lead research and training initiatives that support sustainable development in Africa and beyond. His interdisciplinary approach uniquely positions him to contribute to policies and technologies for cleaner industries, resource recovery, and bio-inspired material science. As a rising scholar, Clive is set to leave a lasting legacy through innovation, mentorship, and international collaboration.

Selected Publications

Title: Electrochemically active biofilms responses to gadolinium stress during wastewater treatment in bioelectrochemical systems
Authors: Nyambane Clive Ontita, Anaman R., Sarkodie E. K., Wang Y., Bichi A. H., Shanshan X., ... & Zeng W.
Journal: Journal of Hazardous Materials
Year: 2025
Title: Insights into anode substrate optimization in bioelectrochemical systems for efficient cathodic lanthanum recovery during wastewater treatment
Authors: Nyambane Clive Ontita, Emmanuel Konadu Sarkodie, Richmond Anaman, Tang Yun Hui, Weimin Zeng
Journal: Journal of Water Process Engineering
Year: 2024
Title: Substrate-Mediated Enhancement of Bioelectrochemical Systems for Sustainable Rare Earth Element Recovery from Mining Wastewater
Authors: Nyambane Clive Ontita, Richmond Anaman, Charles Amanze, Hyline Nyangweso, Weimin Zeng
Journal: Journal of Water Process Engineering
Year: 2025
Title: Mechanistic Insights into Biphasic Effects of Ce(III) on Anode Biofilms in Bioelectrochemical Systems during Industrial Wastewater Treatment
Authors: Nyambane Clive Ontita, Charles Amanze, Richmond Anaman, Xiao Shanshan, Tang Yun Hui, Felix Kwofie, Pius Abraham Tetteh, Weimin Zeng
Journal: Water, Air, and Soil Pollution
Year: 2025
Title: Isolation and Whole-genome analysis of Desmodesmus sp. SZ-1, a novel acid-tolerant carbon-fixing microalga
Authors: Wang Y., Liu A., Amanze C., Ontita N. C., Zeng W.
Journal: Bioresource Technology
Year: 2024

 

Dr. Ali Altuntepe | Hydrogen Energy | Best Researcher Award

Dr. Ali Altuntepe | Hydrogen Energy | Best Researcher Award

Sivas of Science and Technology university, Turkey.

Dr. Ali Altuntepe is a Turkish researcher and materials scientist specializing in experimental condensed matter physics, thin film technology, and two-dimensional materials. With a Ph.D. in Mechanical Engineering, his work focuses on hydrogen storage, graphene synthesis, and solar cell enhancement. He is passionate about integrating nanomaterials in renewable energy applications and continues to contribute significantly to the scientific community through numerous high-impact publications and collaborative projects.

Profile

Scopus
Orcid

🎓 Education

Dr. Ali Altuntepe has pursued his entire academic journey in Mechanical Engineering at Niğde Ömer Halisdemir University, where he demonstrated a consistent dedication to advanced research in materials science and energy systems. He recently completed his Ph.D. in Mechanical Engineering (2019–2024) with an outstanding GPA of 9.74/10.00. His doctoral thesis focused on the "Investigation of Hydrogen Storage Potential of Two-Dimensional Materials, Metal Hydrides, and Their Compositions," reflecting his deep engagement with sustainable and cutting-edge energy technologies. Prior to this, he earned his Master’s degree in Mechanical Engineering (2017–2019), achieving a GPA of 90.09/100, with a thesis centered on the "Synthesis of Doped and Pristine Graphene." His academic foundation was laid with a Bachelor's degree in the same field (2012–2017), where he graduated with a GPA of 3.35/4.00. Throughout his academic career, Dr. Altuntepe has cultivated expertise in nanomaterials, hydrogen storage systems, and graphene synthesis, positioning him as a strong contributor to both academic and applied research in clean energy and material innovation.

🧑‍🏫 Experience

Dr. Altuntepe has extensive experience in thin film synthesis and characterization. His work includes growing doped and pristine graphene, investigating 2D materials like MoS₂, WS₂, LiH, and NaH, and applying these materials in PEM fuel cells and solar cells. He has presented at international conferences and co-authored a book chapter on sustainable materials in solar technology.

🔬 Research Interests

Graphene and TMDs (MoS₂, WS₂) synthesis

Hydrogen storage materials

Solar cell enhancement using 2D materials

Thin film deposition techniques (CVD, PVD, E-beam)

Materials characterization (XRD, SEM, Raman, XPS, etc.)

Transparent conductive oxides (TCOs)

Integration of nanomaterials into composite and optoelectronic systems

🏆 Awards & Achievements

Co-authorship in a prestigious Elsevier publication:
Sustainable Materials Solutions for Solar Energy Technologies (2021)

Oral presentations at international conferences including ICSM and MSNG

High citation record with over 20 peer-reviewed journal articles

📚 Selected Publications

☀️ Advanced Solar Cell Materials

1. Boron Doped Graphene and MoS₂-Based Ultra-Thin Schottky Junction Solar Cell

Journal: Optical Materials (May 2025)
DOI: 10.1016/j.optmat.2025.116828
Highlights:

Integrates boron-doped graphene with MoS₂ to form an ultra-thin Schottky junction.

Aims to enhance charge transport and light absorption.

Promising for lightweight and high-efficiency PV applications.

2. Nitrogen Doped Single Layer Graphene for CZTS-Based Thin Film Solar Cells

Journal: Optical Materials (2024)
DOI: 10.1016/j.optmat.2024.115167
Highlights:

Uses nitrogen doping to tune electronic properties of graphene.

Applied in CZTS (Copper Zinc Tin Sulfide) solar cells — known for being earth-abundant and non-toxic.


💨 Hydrogen Storage and Fuel Cells

3. Optimizing Hydrogen Storage and Fuel Cell Performance Using Carbon-Based Materials

Journal: Hydrogen (March 2025)
DOI: 10.3390/hydrogen6020022
Highlights:

Studies effects of surface area and pressure on carbon-based hydrogen storage.

Bridges material design with real-world performance in fuel cells.

4. Hydrogen Storage Capacity of Two-Dimensional MoS₂

Journal: International Journal of Hydrogen Energy (2024)
DOI: 10.1016/j.ijhydene.2023.12.120
Highlights:

Focus on MoS₂ for reversible hydrogen storage.

Explores adsorption behavior on 2D surfaces.

5. Investigating Surface Area and Hydrogen Pressure Effects on LiH and NaH

Journal: Journal of Solid State Chemistry (2024)
DOI: 10.1016/j.jssc.2023.124483
Highlights:

Dives into metal hydrides (LiH and NaH).

Correlates structural properties with storage performance under different pressures.