Walid Oueslati | Solids state chemistry | Excellence in Research Award

Assoc. Prof. Dr. Walid Oueslati | Solids state chemistry | Excellence in Research Award

Associate. Professor at ,University of Carthage, Faculty of Science of Bizerte, LR19ES20: Resources, Materials, and Ecosystems (RME), Tunisia.

Dr. Walid Oueslati 🎓 is a distinguished researcher and professor at the University of Carthage, Faculty of Sciences of Bizerte, Tunisia 🇹🇳. With an H-index of 16 📊 and over 80 publications 📚, his expertise spans environmental science, nanomaterials, and analytical chemistry 🧪. A recognized top reviewer 🏅 in multidisciplinary fields, he has significantly contributed to marine pollution studies 🌊, materials science 🏗️, and sustainability 🌍. His work has been cited over 700 times, reflecting his impact in scientific research 🔬. Dr. Oueslati remains committed to advancing knowledge through peer reviews and editorial contributions ✍️.

Professional Profile
Suitability for the Excellence in Research Award

Dr. Walid Oueslati is highly suitable for an Excellence in Research Award due to his significant contributions to environmental science 🌍, nanomaterials 🏗️, and analytical chemistry 🧪. With 81 publications, an H-index of 16, and 733 citations 📊, his research has had a notable impact in scientific communities. Recognized as a top peer reviewer with 208 manuscript reviews, his dedication to advancing research through publication, peer evaluation, and editorial roles makes him a strong candidate for such recognition.

Education 🎓

    • Ph.D. in Chemistry 🧪 – Specialization in Environmental Science and Nanomaterials
    • Master’s in Analytical Chemistry 📊 – Focus on Material Characterization and Spectroscopy
    • Bachelor’s in Chemistry 🏛️ – Strong foundation in Chemical Sciences

 

Experience 💼

  • Professor at the University of Carthage, Faculty of Sciences of Bizerte, Tunisia 🇹🇳
    • Teaching and mentoring students in Analytical Chemistry and Environmental Science
    • Supervising research in nanomaterials and pollution assessment
  • Renowned Researcher 🔬
    • Published 81 research papers in prestigious journals 📚
    • H-index 16 with 733 citations 📈
  • Peer Reviewer & Editor 🏅
    • Recognized as a top reviewer in multidisciplinary fields
    • Reviewed 208 manuscripts and contributed to editorial boards
  • Expert in Environmental & Material Science 🌍
    • Specialized in marine pollution studies, nanotechnology, and material characterization
    • Investigated heavy metal contamination, soil chemistry, and advanced photocatalytic materials

 

Professional Development 🚀📖

Dr. Walid Oueslati 📚 has continuously expanded his expertise through extensive professional development. As a top peer reviewer 🏅, he has evaluated 208 manuscripts, staying updated with the latest research trends 🔬. His editorial contributions ✍️ have strengthened his expertise in environmental science 🌍, nanomaterials 🏗️, and analytical chemistry 🧪. Actively engaging in international conferences 🎤, he collaborates with global researchers 🤝 to advance scientific knowledge. With 81 publications 📄 and 733 citations 📊, he remains dedicated to innovation and academic excellence. His commitment to mentorship and interdisciplinary research fosters future scientific breakthroughs 🚀

Research Focus 🔍🤖

Dr. Walid Oueslati’s research focuses on Environmental Science 🌍, Nanomaterials 🏗️, and Analytical Chemistry 🧪. His work explores marine pollution 🌊, heavy metal contamination ⚠️, and sustainable materials ♻️. He specializes in nanocomposites for water purification 💧, photocatalytic materials for environmental cleanup 🌱, and crystal structure analysis 🔬. His studies on soil and sediment contamination 🏞️ help assess ecological risks. With expertise in spectroscopy and material characterization 📊, he develops innovative solutions for pollution control. His research contributes to sustainability, green chemistry, and environmental protection, making a significant impact in multidisciplinary scientific fields 🚀.

Awards & Honors 🏅🎖️

    • Top Reviewer Award 🏅 – Recognized as a top reviewer in multidisciplinary research (2017)
    • Highly Cited Researcher 📊 – Over 733 citations in scientific literature
    • Outstanding Research Contribution Award 🎖️ – For impactful studies in environmental science and nanomaterials
    • Editorial Board Recognition ✍️ – Served as a reviewer for 208 manuscripts across top journals
    • Academic Excellence Award 🎓 – Honored for significant contributions to analytical chemistry and material science
    • International Conference Speaker 🎤 – Invited to present research findings in global scientific forums

     

     

Publication Top Notes:
  • Multifunctional Chitosan/Montmorillonite/TiO₂ Nanocomposites 🏗️ – Journal of the Indian Chemical Society (2025) | DOI: 10.1016/j.jics.2025.101606 |
  • Groundwater Frontiers – Techniques and Challenges 🌍 – Earth Sciences (2025) | DOI: 10.5772/intechopen.1003541 |
  • A Critical Review of Clay Minerals for Groundwater Protection and Treatment 💧 – Book Chapter (2024) | DOI: 10.5772/intechopen.1008385 |
  • Uncovering the Possibilities of Ceramic Ba(1−x)CoₓTiO₃ Nanocrystals ⚡ – Solids (2024) | DOI: 10.3390/solids5030031 |
  • Simulating the Impact of Electron Beam Energy Deposition on Lead Target Temperature ☢️ – Nuclear Analysis (2024) | DOI: 10.1016/j.nucana.2024.100113 |
  • Synthesis Reaction Kinetics, Structural Changes, and Photocatalytic Efficiency of Chitosan–Clay Nanocomposite 🔬 – Solids (2024) | DOI: 10.3390/solids5020015 |

📌 Conclusion:

Dr. Walid Oueslati’s research excellence, impactful publications, and dedication to scientific advancements make him a strong candidate for an Excellence in Research Award. His contributions to environmental sustainability, nanomaterials, and analytical chemistry have significantly influenced global research. His commitment to innovation, peer review, and interdisciplinary collaboration further solidifies his eligibility for this prestigious recognition. 🚀👏

 

 

 

Karel Saksl | Material Science | Best Researcher Award

Assoc. Prof. Dr. Karel Saksl | Material Science | Best Researcher Award

Dean, researcher in Faculty of Materials Metallurgy and Recycling, Technical university of Kosice at Slovakia.

Assoc. Prof. Dr. Karel Saksl is a prominent researcher and educator in the field of Material Science. He serves as the Dean and a faculty member at the Faculty of Materials, Metallurgy, and Recycling at the Technical University of Košice, Slovakia. With a focus on advancing research in material science, Dr. Saksl has earned the distinction of being named the Best Researcher in his field, reflecting his significant contributions to the discipline. His work emphasizes innovative solutions in materials technology and sustainability, particularly in metallurgy and recycling processes.

Publication Profile:
Education 🎓

Assoc. Prof. Dr. Karel Saksl holds a distinguished academic background, with degrees from the Technical University of Košice, Slovakia. He earned his Ing. (Ingénieur) degree in 1997, followed by a Ph.D. (Philosophiae Doctor) in 2000, and a DrSc. (Doctor Scientiarum) in 2010. In 2021, he was appointed as a Docent (Docens) at the University of Pavol Jozef Šafárik in Košice.

Professional Experience 💼

Dr. Saksl is the Head of the Scientific Team at the Institute of Materials Research at the Slovak Academy of Sciences (SAS) in Košice, Slovakia, where he leads groundbreaking research on biodegradable materials, thermoelectric materials, Li-ion batteries, metallic alloys for hydrogen storage, and their real-world applications. He has held significant roles in international research institutions, including a postdoctoral position at HASYLAB at DESY in Hamburg, Germany (2002-2007), where he studied the structure of disordered materials. Additionally, he was a postdoctoral researcher at the Department of Physics, DTU Copenhagen, Denmark (2001).

Research Focus 🧪🔬

Dr. Saksl’s research spans a wide array of materials science areas. His primary focus includes the development of biodegradable materials, the exploration of novel materials for energy storage such as thermoelectric materials and Li-ion batteries, and the design of metallic alloys for hydrogen storage. His work contributes to advanced materials technologies with practical applications in sustainability, energy efficiency, and healthcare.

 

Awards and Honors 🏆

Dr. Saksl is highly proficient in structural analysis methods and advanced materials characterization techniques. His skills include working with X-ray diffraction, neutron diffraction, and electron microscopy. He has also contributed to the development of university textbooks on practical exercises in X-ray diffraction. Training and Mentorship
As a dedicated educator, Dr. Saksl supervises Ph.D. and MSc students and has been a mentor to numerous researchers in the field. His ongoing contributions as a lecturer at the University of Pavol Jozef Šafárik, Košice, further emphasize his commitment to developing future experts in materials science. Dr. Saksl’s impressive career spans decades of pioneering research, educational leadership, and international collaboration, making him a key contributor to the advancement of material science.

Publications 📚
  • Title: Turning solid aluminium transparent by intense soft X-ray photoionization
    Author(s): (No authors provided)
    Publication: Nature Physics 5 (9), 693-696
    Citations: 341
    Year: 2009
  • Title: La-based bulk metallic glasses with critical diameter up to 30 mm
    Author(s): QK Jiang, GQ Zhang, L Yang, XD Wang, K Saksl, H Franz, R Wunderlich, …
    Publication: Acta Materialia 55 (13), 4409-4418
    Citations: 154
    Year: 2007
  • Title: Evidence of icosahedral short-range order in and metallic glasses
    Author(s): K Saksl, H Franz, P Jovari, K Klementiev, E Welter, A Ehnes, J Saida, …
    Publication: Applied Physics Letters 83 (19), 3924-3926
    Citations: 141
    Year: 2003
  • Title: Atomic-scale mechanisms of the glass-forming ability in metallic glasses
    Author(s): L Yang, GQ Guo, LY Chen, CL Huang, T Ge, D Chen, PK Liaw, K Saksl, …
    Publication: Physical Review Letters 109 (10), 105502
    Citations: 138
    Year: 2012
  • Title: Effect of PMN modification on structure and electrical response of xPMN–(1− x) PZT ceramic systems
    Author(s): V Koval, C Alemany, J Briančin, H Bruncková, K Saksl
    Publication: Journal of the European Ceramic Society 23 (7), 1157-1166
    Citations: 118
    Year: 2003
  • Title: On the formation of intermetallics in Fe–Al system–An in situ XRD study
    Author(s): P Novák, A Michalcová, I Marek, M Mudrová, K Saksl, J Bednarčík, …
    Publication: Intermetallics 32, 127-136
    Citations: 110
    Year: 2013
  • Title: Local atomic arrangements and their topology in Ni–Zr and Cu–Zr glassy and crystalline alloys
    Author(s): I Kaban, P Jóvári, V Kokotin, O Shuleshova, B Beuneu, K Saksl, N Mattern, …
    Publication: Acta Materialia 61 (7), 2509-2520
    Citations: 97
    Year: 2013
  • Title: Magnetic and structural properties of Ni–Mn–Ga Heusler-type microwires
    Author(s): R Varga, T Ryba, Z Vargova, K Saksl, V Zhukova, A Zhukov
    Publication: Scripta Materialia 65 (8), 703-706
    Citations: 86
    Year: 2011
  • Title: Design of Cu8Zr5-based bulk metallic glasses
    Author(s): L Yang, JH Xia, Q Wang, C Dong, LY Chen, X Ou, JF Liu, JZ Jiang, …
    Publication: Applied Physics Letters 88 (24)
    Citations: 79
    Year: 2006
  • Title: Tensile behavior of bulk metallic glasses by in situ x-ray diffraction
    Author(s): XD Wang, J Bednarcik, K Saksl, H Franz, QP Cao, JZ Jiang
    Publication: Applied Physics Letters 91 (8)
    Citations: 65
    Year: 2007
  • Title: Atomic structure of Al88Y7Fe5 metallic glass
    Author(s): K Saksl, P Jóvári, H Franz, JZ Jiang
    Publication: Journal of Applied Physics 97 (11)
    Citations: 64
    Year: 2005
  • Title: Soft x-ray free electron laser microfocus for exploring matter under extreme conditions
    Author(s): AJ Nelson, S Toleikis, H Chapman, S Bajt, J Krzywinski, J Chalupsky, …
    Publication: Optics Express 17 (20), 18271-18278
    Citations: 62
    Year: 2009
  • Title: Atomic structure of Al89La6Ni5 metallic glass
    Author(s): K Saksl, P Jóvári, H Franz, QS Zeng, JF Liu, JZ Jiang
    Publication: Journal of Physics: Condensed Matter 18 (32), 7579
    Citations: 62
    Year: 2006
  • Title: Origin of nondetectable x-ray diffraction peaks in nanocomposite CuTiZr alloys
    Author(s): JZ Jiang, H Kato, T Ohsuna, J Saida, A Inoue, K Saksl, H Franz, K Ståhl
    Publication: Applied Physics Letters 83 (16), 3299-3301
    Citations: 56
    Year: 2003
  • Title: Atomic structure in Zr70Ni30 metallic glass
    Author(s): L Yang, S Yin, XD Wang, QP Cao, JZ Jiang, K Saksl, H Franz
    Publication: Journal of Applied Physics 102 (8)
    Citations: 50
    Year: 2007
  • Title: Photon energy dependence of graphitization threshold for diamond irradiated with an intense XUV FEL pulse
    Author(s): J Gaudin, N Medvedev, J Chalupský, T Burian, S Dastjani-Farahani, …
    Publication: Physical Review B—Condensed Matter and Materials Physics 88 (6), 060101
    Citations: 47
    Year: 2013
  • Title: Influence of hydrolysis conditions of the acetate sol–gel process on the stoichiometry of PZT powders
    Author(s): H Brunckova, J Briančin, K Saksl
    Publication: Ceramics International 30 (3), 453-460
    Citations: 47
    Year: 2004
  • Title: Crystallization in Pd40Ni40P20 glass
    Author(s): JZ Jiang, K Saksl, N Nishiyama, A Inoue
    Publication: Journal of Applied Physics 92 (7), 3651-3656
    Citations: 46
    Year: 2002
  • Title: Terbium-induced phase transitions and weak ferromagnetism in multiferroic bismuth ferrite ceramics
    Author(s): V Koval, I Skorvanek, J Durisin, G Viola, A Kovalcikova, P Svec, K Saksl, …
    Publication: Journal of Materials Chemistry C 5 (10), 2669-2685
    Citations: 42
    Year: 2017
  • Title: High temperature oxidation resistance in titanium–niobium alloys
    Author(s): BE Tegner, L Zhu, C Siemers, K Saksl, GJ Ackland
    Publication: Journal of Alloys and Compounds 643, 100-105
    Citations: 39
    Year: 2015

Conclusion ✨ 

Dr. Karel Saksl’s extensive contributions to the field of material science, his international collaborations, and his leadership in advancing technology for hydrogen storage, biodegradable materials, and medical applications make him a highly deserving candidate for the Best Researcher Award. His achievements in both research and education, along with his continued involvement in high-impact scientific initiatives, demonstrate a profound dedication to pushing the boundaries of materials science and its practical applications in modern technology.

Dr. Saksl’s ongoing work and influence will continue to shape the future of materials science, and his expertise in thermoelectric, biodegradable, and energy-efficient materials is poised to make lasting contributions to society and the scientific community.