María Luján Ferreira | Nanocomposites | Best Researcher Award

Prof. Dr. María Luján Ferreira | Nanocomposites | Best Researcher Award

Senior Researcher | Pilot Plant for Chemical Engineering – National University of the South – National Scientific and Technical Research Council | Argentina

Prof. Dr. María Luján Ferreira is a distinguished Senior Researcher at the Pilot Plant for Chemical Engineering (PLAPIQUI), National University of the South (UNS), and a member of CONICET, Argentina. With over 4,254 citations, 171 scientific documents, and an h-index of 35, she has made enduring contributions to catalysis, polymerization chemistry, enzymatic processes, and nanotechnology. Her prolific research spans olefin polymerization, catalyst design and characterization, enzyme immobilization, nanozymes, biomimetics, and advanced oxidation processes. Prof. Dr. María Luján Ferreira has authored over 165 international journal articles, 9 book chapters, and 2 books, including Enzymatic Synthesis of Structured Triglycerides (Springer, 2017) and Trastornos del Espectro Autista (2021). She is also the Editor of the Elsevier volume Biocatalyst Immobilization: Foundations and Applications, contributing several chapters. Her applied R&D work includes technology transfer projects with industrial partners such as Petroquímica Cuyo and Petrobras, resulting in numerous technical reports, services, and a patent under evaluation (INPI, 2018). She has led or participated in 35 funded research projects, including TWAS, Antorchas Foundation, PICT, PIP, CABBIO, CYTED, and CNPQ collaborations, bridging Argentina, Brazil, and Europe. Prof. Dr. María Luján Ferreira has mentored numerous PhD and postdoctoral researchers, several of whom now hold senior research positions at CONICET. Her international collaborations include work with research groups in Canada and Brazil. A reviewer for more than 30 journals, she also evaluates national and international funding proposals and coordinates CONICET thematic commissions. Her research excellence has been recognized with five major awards, including the Bernardo Houssay and Ranwell Caputto National Prizes (2004) and the L’Oréal-CONICET Mention (2014). Through sustained scientific innovation and mentorship, Prof. Dr. María Luján Ferreira continues to advance interdisciplinary catalysis, nanoscience, and biotechnological applications with significant industrial and biomedical relevance.

Profiles: Scopus | ORCID | ResearchGate | Sci Profiles

Featured Publications

1. Nicolás, P., Lassalle, V. L., & Ferreira, M. L. (2025, October). Low-cost racemic lactic acid oligomerization catalyzed by lipase in biphasic water/heptane system. Systems Microbiology and Biomanufacturing. https://doi.org/10.1007/s43393-024-00313-4

2. Pellizzari Wielewski, L., Ferreira, M. L., Alnoch, R. C., Mitchell, D. A., & Krieger, N. (2025, September 30). Evaluating pre-immobilization and post-immobilization bioimprinting strategies for the activation of lipases: A case study of LipC12. Food Technology and Biotechnology. https://doi.org/10.17113/ftb.63.03.25.8940

3. Troncoso, F. D., Sánchez, D. A., & Ferreira, M. L. (2022, March). Production of plant proteases and new biotechnological applications: An updated review. ChemistryOpen. https://doi.org/10.1002/open.202200017

4. Rial, J. B., & Ferreira, M. L. (2021, June). Challenges of dye removal treatments based on IONzymes: Beyond heterogeneous Fenton. Journal of Water Process Engineering. https://doi.org/10.1016/j.jwpe.2021.102065

5. Sánchez, D. A., Tonetto, G. M., & Ferreira, M. L. (2018). Burkholderia cepacia lipase: A versatile catalyst in synthesis reactions. Biotechnology and Bioengineering. https://doi.org/10.1002/bit.26458

Abdiel De Jesus Espinosa Champo | Computational Nanotechnology | Best Researcher Award

Mr. Abdiel De Jesus Espinosa Champo | Computational Nanotechnology | Best Researcher Award

PhD Candidate | National Autonomous University of Mexico | Mexico

Mr. Abdiel De Jesús Espinosa Champo is a Ph.D. candidate in Physics at the National Autonomous University of Mexico (UNAM), conducting advanced research on the modulation of electronic, optical, and topological properties in low-dimensional systems. His work bridges theoretical condensed matter physics and quantum materials science, with emphasis on flat-band phenomena, graphene systems, topological phases, and quantum geometry. He has authored 10 peer-reviewed journal publications (8 as first author) in internationally reputed journals including Physical Review B, Journal of Physics: Condensed Matter, Physica E, and Journal of Vacuum Science & Technology B. His publications explore frontier topics such as flat-band electronic states, Berry and Aharonov–Anandan phases in 2D materials, magnetic susceptibility in curved graphene, and metal–insulator transitions in borophene. His findings contribute significantly to the theoretical understanding of electronic transport and topological effects in next-generation quantum materials. Mr. Abdiel De Jesús Espinosa Champo’s research achievements include a preprint on topological quantum geometry transitions and ongoing collaborative work at IMDEA Nanoscience in Madrid. He is recognized for theoretical innovation in explaining magnetic, geometric, and optical anomalies in 2D materials. With 58 citations, 6 indexed documents, and an h-index of 3 on Scopus, his scholarly influence continues to grow within the global physics community. His research contributions have been supported by CONAHCyT Fellowship and presented in international workshops at the Max Planck Institute in Germany. His research areas encompass quantum geometry, flat-band systems, topological materials, electronic transport theory, and optical responses in nanostructures. Through his rigorous R&D efforts, Abdiel Espinosa Champo has established himself as an emerging physicist contributing to the theoretical foundations of low-dimensional quantum systems.

Profiles: Scopus | ORCID | Google Scholar | ResearchGate

Featured Publications

  1. Champo, A. E., & Naumis, G. G. (2019). Metal–insulator transition in 8-Pmmn borophene under normal incidence of electromagnetic radiation. Physical Review B, 99(3), 035415. https://doi.org/10.1103/PhysRevB.99.035415

  2. Naumis, G. G., Navarro-Labastida, L. A., Aguilar-Méndez, E., & Espinosa-Champo, A. (2021). Reduction of the twisted bilayer graphene chiral Hamiltonian into a 2×2 matrix operator and physical origin of flat bands at magic angles. Physical Review B, 103(24), 245418. https://doi.org/10.1103/PhysRevB.103.245418

  3. Navarro-Labastida, L. A., Espinosa-Champo, A., Aguilar-Méndez, E., & Naumis, G. G. (2022). Why the first magic angle is different from others in twisted graphene bilayers: Interlayer currents, kinetic and confinement energy, and wave-function localization. Physical Review B, 105(11), 115434. https://doi.org/10.1103/PhysRevB.105.115434

  4. Champo, A. E., Roman-Taboada, P., & Naumis, G. G. (2018). Landauer-Büttiker conductivity for spatially dependent uniaxial strained armchair-terminated graphene nanoribbons. Physica E: Low-Dimensional Systems and Nanostructures, 102, 123–131. https://doi.org/10.1016/j.physe.2018.05.001

  5. Espinosa-Champo, A. de J., & Naumis, G. G. (2024). Flat bands without twists: Periodic holey graphene. Journal of Physics: Condensed Matter, 36(27), 275703. https://doi.org/10.1088/1361-648X/ad39be

 

Sunny Kumar | Nanobiotechnology | Young Scientist Award

Mr. Sunny Kumar | Nanobiotechnology | Young Scientist Award

Researcher, CSIR-Indian Institute Of Chemical Biology, India

Mr. Sunny Kumar is an emerging researcher in cancer biology and nanomedicine, recognized for his interdisciplinary contributions that bridge molecular oncology, tumor microenvironment studies, and nanotechnology-driven therapeutics. With an h-index of 6, 11 publications, and 148 citations (as indexed in Scopus), his research reflects both productivity and impact within translational cancer science. His primary research focuses on elucidating the molecular mechanisms underlying glioma, colorectal, and breast cancer progression, emphasizing protein quality control systems such as the ubiquitin-proteasome system and their regulatory influence on oncogenic signaling. Mr. Sunny Kumar has explored novel therapeutic targets like E3 ligases (CHIP), PD-1/PD-L1 pathways, and HAUSP-MDM2 axes, offering valuable insights for cancer immunotherapy and personalized treatment strategies. In addition to mechanistic studies, Mr. Sunny Kumar integrates nanobiotechnology and drug delivery innovation, developing nanoparticle-based formulations capable of crossing the blood–brain barrier for targeted glioma therapy. His research on dual-drug nanotherapeutics and carbon nanotube-based diagnostic platforms has contributed to the advancement of precision medicine approaches for difficult-to-treat cancers. He has published extensively as first or corresponding author in high-impact journals such as Genes & Diseases (IF 9.4), BBA-Molecular Cell Research (IF 3.7), International Journal of Pharmaceutics (IF 5.2), and Journal of Medicinal Chemistry (IF 6.8). His scholarly output also includes multiple book chapters with Springer and Taylor & Francis, covering cancer proteomics, personalized therapy, and nanotherapeutics. Mr. Sunny Kumar serves as a peer reviewer for reputed journals, including BBA–Reviews on Cancer and Experimental Cell Research, further demonstrating his engagement in the scientific community. His research exhibits a robust methodological framework, integrating cell and molecular biology, bioinformatics, animal models, and nanocarrier engineering. Collectively, Mr. Sunny Kumar’s scientific endeavors underscore a commitment to next-generation cancer therapeutics, aiming to translate molecular discoveries into clinically viable nanomedicine solutions for precision oncology.

Profile: Scopus | ORCID | Google Scholar | RsearchGate

Featured Publications

1. Kumar, S., Chatterjee, M., Ghosh, P., Ganguly, K. K., Basu, M., & Ghosh, M. K. (2023). Targeting PD-1/PD-L1 in cancer immunotherapy: An effective strategy for treatment of triple-negative breast cancer (TNBC) patients. Genes & Diseases, 10(4), 1318–1350.

2. Kumar, S., Basu, M., & Ghosh, M. K. (2022). Chaperone-assisted E3 ligase CHIP: A double agent in cancer. Genes & Diseases, 9(6), 1521–1555.

3. Kumar, S., Basu, M., Ghosh, P., Ansari, A., & Ghosh, M. K. (2023). COVID‐19: Clinical status of vaccine development to date. British Journal of Clinical Pharmacology, 89(1), 114–149.

4. Kumar, S., Basu, M., Ghosh, P., Pal, U., & Ghosh, M. K. (2023). COVID-19 therapeutics: Clinical application of repurposed drugs and futuristic strategies for target-based drug discovery. Genes & Diseases, 10(4), 1402–1428.

5. Ghosh, M. K., Kumar, S., Ganguly, K. K., Ghosh, P., Tabassum, S., Basu, B., & Basu, M. (2023). COVID-19 and cancer: Insights into their association and influence on genetic and epigenetic landscape. Epigenomics, 15(4), 227–248.

 

Amel Boudjemaa | Nanomaterials for Energy | Women Researcher Award

Dr. Amel Boudjemaa | Nanomaterials for Energy | Women Researcher Award

Researcher, Center for Scientific and Technical Research in Physicochemical Analysis (CRAPC), Algeria

Dr. Amel Boudjemaa is a prolific Algerian researcher at the Centre de Recherche Scientifique et Technique en Analyses Physico-Chimiques (CRAPC), Bou Ismail, Algeria. Her scientific contributions lie primarily in photocatalysis, nanomaterials, surface chemistry, and environmental remediation. With a Scopus h-index of 20, 1,467 citations, and 90 peer-reviewed publications, her work has significantly influenced the fields of materials chemistry and sustainable environmental technologies. Her recent research focuses on the design and optimization of advanced nanostructured photocatalysts for water purification, pollutant degradation, and hydrogen generation under visible light. Notably, she has investigated heterojunction and doped oxide-based photocatalysts—such as Co₂SnO₄/Co₃O₄/SnO₂, ZnO–CuO–Al₂O₃, and Bi/Fe-doped aluminophosphates—demonstrating enhanced degradation efficiencies for pharmaceuticals and dyes like diclofenac, ibuprofen, and methyl orange. These studies integrate experimental synthesis, photochemical characterization, and mechanistic modeling to predict by-product toxicity and reaction kinetics, emphasizing both efficiency and environmental safety. Beyond photocatalysis, Dr. Amel Boudjemaa has explored hybrid and functional nanomaterials with applications in sensing, adsorption, and energy storage. Her works on platinum(IV)-carbon sphere hybrids and tin-based non-enzymatic sensors have expanded the potential of nanomaterials for electrochemical detection and clean energy technologies. Methodologically, her research combines advanced materials synthesis, surface modification, spectroscopic and electrochemical analysis, and computational prediction tools. Her interdisciplinary approach bridges materials science, environmental engineering, and green chemistry, contributing to cleaner production and pollution mitigation strategies. Overall, Dr. Amel Boudjemaa’s body of work demonstrates a consistent pursuit of innovative, sustainable solutions for environmental contaminants, positioning her among the leading North African researchers in applied photocatalysis and nanomaterial-based remediation.

Profile: Scopus | ORCID | Google Scholar | ResearcheGate | Loop | Web of Science | Linkedin

Featured Publications

Boumaza, S., Boudjemaa, A., Bouguelia, A., Bouarab, R., & Trari, M. (2010). Visible light induced hydrogen evolution on new hetero-system ZnFe₂O₄/SrTiO₃. Applied Energy, 87(7), 2230–2236.

Boudjemaa, A., Boumaza, S., Trari, M., Bouarab, R., & Bouguelia, A. (2009). Physical and photo-electrochemical characterizations of α-Fe₂O₃: Application for hydrogen production. International Journal of Hydrogen Energy, 34(10), 4268–4274.

Chezeau, B., Boudriche, L., Vial, C., & Boudjemaa, A. (2020). Treatment of dairy wastewater by electrocoagulation process: Advantages of combined iron/aluminum electrodes. Separation Science and Technology, 55(14), 2510–2527.

Boumaza, S., Boudjemaa, A., Omeiri, S., Bouarab, R., Bouguelia, A., & Trari, M. (2010). Physical and photoelectrochemical characterizations of hematite α-Fe₂O₃: Application to photocatalytic oxygen evolution. Solar Energy, 84(4), 715–721.

Boudjemaa, A., Bouarab, R., Saadi, S., Bouguelia, A., & Trari, M. (2009). Photoelectrochemical H₂-generation over spinel FeCr₂O₄ in X²⁻ solutions (X²⁻ = S²⁻ and SO₃²⁻). Applied Energy, 86(7–8), 1080–1086.

 

Dr. Shivangi Srivastava | Nanotechnology | Women Researcher Award

Dr. Shivangi Srivastava | Nanotechnology | Women Researcher Award

Dr. Shivangi Srivastava, IIT Maadras, India

Dr. Shivangi Srivastava is a dedicated Postdoctoral Fellow in the Department of Applied Mechanics and Biomedical Engineering at IIT Madras, India 🇮🇳. She earned her Ph.D. in Materials Science from the University of Lucknow, where she focused on nanotechnology-driven gas sensing applications 🏅. Her research expertise includes metal oxide heterostructures for gas sensors and optical fiber-based heavy metal ion detection ⚛️. Dr. Srivastava has collaborations with leading international and Indian institutions, contributing to impactful research in nanomaterials, biosensors, and computational analysis 🌍📡.

Professional Profile:

Scopus

Suitability for Best Researcher Award 🏆

Dr. Shivangi Srivastava is highly suitable for a Best Researcher Award due to her outstanding contributions to nanotechnology-driven gas sensing and biosensing applications. Her expertise spans advanced nanomaterials synthesis, optical fiber sensing, and computational analysis, making significant strides in environmental and biomedical sensor development.

Education & Experience 🎓📚

B.Sc. in Physics & MathematicsUniversity of Lucknow (2016) 🏛️
M.Sc. in PhysicsDr. Shakuntala Mishra National Rehabilitation University (2019) 🎓
Ph.D. in Materials ScienceUniversity of Lucknow 🧪
Postdoctoral FellowIIT Madras, India (Current) 🏅
Senior Research FellowDepartment of Applied Mechanics and Biomedical Engineering, IIT Madras 🔬
Research CollaborationsFrance 🇫🇷, Canada 🇨🇦, Malaysia 🇲🇾, Taiwan 🇹🇼
Collaborated with Indian institutesIIT BHU, Delhi University, IIT Madras, and BHU 🏛️

Professional Development 🚀🔬

Dr. Shivangi Srivastava has expertise in advanced nanomaterial synthesis techniques such as Hydrothermal, Chemical Vapor Deposition, and Atomic Layer Deposition 🧪. She has hands-on experience with XRD, UV-Visible Spectroscopy, FTIR, Gas Chromatography, and Optical Fiber Sensing 🏗️📡. Her computational analysis includes DFT calculations and Rietveld Refinement 🖥️. Passionate about interdisciplinary research, she has published in top-tier journals like Sensors and Actuators B: Chemical, Materials Chemistry and Physics, and ECS Sensors Plus 📑. Her work extends to developing biosensors for disease diagnosis and environmental monitoring, making significant contributions to the field of nanotechnology 🌱🌍.

Research Focus 🧑‍🔬⚛️

Dr. Shivangi Srivastava specializes in nanotechnology-based gas sensing and biosensing applications 🏗️🔬. Her Ph.D. research focused on the synthesis of metal oxide heterostructures for gas detection 🏭. Currently, she is developing nanomaterial-coated optical fibers for detecting heavy metal ions in environmental and biomedical applications 💧🩸. She also explores chemiresistor-based sensors for disease detection via human breath analysis 😷. Her work integrates computational simulations, material characterization, and real-world sensor applications 🌐. With collaborations across leading research institutes worldwide, her contributions are advancing next-generation nanomaterials and sensing technologies 🌍📡.

Awards & Honors 🏆🎖️

🏅 Recipient of multiple research fellowships 🔬
Published in top-tier scientific journals 📑
🏅 Presented at over 10 international and national conferences 🌍
🏅 Active collaboration with prestigious global research institutions 🏛️
🏅 Significant contributions to gas sensing and biosensing research 🧑‍🔬

Publication Top Notes:

Bio-based fabrication of palladium nanoparticles by using Aegle marmelos leaf extract for biomedical applications: Cytotoxicity, cell imaging studies in HeLa cells and antioxidant activity

Assist. Prof. Dr. Haoqiang Zhao | chiral assembly | Best Researcher Award

Assist. Prof. Dr. Haoqiang Zhao | chiral assembly | Best Researcher Award

Assist. Prof. Dr. Haoqiang Zhao, Beijing University of Chinese Medicine, China

Haoqiang Zhao is an Assistant Professor at the School of Chinese Materia Medica, Beijing University of Chinese Medicine, China. His research focuses on the chiral assembly study based on active ingredients from traditional Chinese medicine. He has published 16 SCI papers and has been the principal investigator for several national-level projects. Zhao has participated in international conferences and is recognized for his contributions to organic chemistry and material science. His work has been cited over 550 times, and his research has been highlighted by prominent journals like Wiley Chem and Synfacts. 🌱🔬📚

Professional Profile:

Scopus

Summary of Suitability

Haoqiang Zhao’s innovative research, leadership in national and international projects, and interdisciplinary approach to traditional and modern medicine make him an ideal candidate for the Best Researcher Award. His work has had a profound impact on both theoretical and practical applications, bridging the gap between traditional Chinese medicine and contemporary scientific advancements. With his extensive research contributions and academic excellence, Zhao is highly deserving of this prestigious recognition. 🌟

Education

  • B.A. in Applied Chemistry (2010-2014)
    Qingdao University of Science & Technology, China 📜🧪
  • Ph.D. in Organic Chemistry (2015-2021)
    Renmin University of China, Beijing, China 🎓🔬
  • Joint Ph.D. in Organic Chemistry (2019-2021)
    University of Pennsylvania, USA 🇺🇸🔬

Professional Development

Haoqiang Zhao has gained diverse research experience, including his joint Ph.D. program at the University of Pennsylvania under the mentorship of Patrick J. Walsh. His primary focus is on chiral assembly and its applications in traditional Chinese medicine, contributing significantly to organic chemistry and material science.

Zhao has led national research projects and collaborated internationally. He has also presented his research at global conferences and has been an invited speaker at various academic gatherings. His work has contributed to both theoretical and practical applications in chemistry and medicinal science. 🌐👨‍🔬📊

Research Focus

Haoqiang Zhao’s research focuses on chiral assembly, particularly through the study of active ingredients in traditional Chinese medicine. By exploring the unique properties of these chiral assemblies, his work aims to uncover novel biomedical applications.

Zhao also investigates organic chemistry, synthetic methods, and the development of novel materials with therapeutic potential. His interdisciplinary approach integrates chemistry, material science, and medicine to develop innovative solutions for healthcare, including wound healing and antibacterial applications. His research bridges the gap between traditional medicine and modern scientific advancements. 🧬💊🔬

Awards and Honors

  • Presided over two National Natural Science Foundation of China Youth Fund projects 🏆🇨🇳
  • Contributed to projects funded by the National Science Foundation (US) 💡🌍
  • Published 16 SCI papers with over 550 citations 📄👨‍🔬
  • Highlighted in reports by Wiley Chem and Synfacts 📰⭐
  • Invited to present at international conferences (e.g., Philadelphia Organic Chemistry Club) 🎤🌏

Publication Top Notes:

  1. 🔬 Borane-Catalyzed Tandem Cyclization/Hydrosilylation Towards Enantio- and Diastereoselective Construction of trans-2,3-Disubstituted-1,2,3,4-Tetrahydroquinoxalines (Cited by: 14, Year: 2023)
  2. 💡 Palladium-Catalyzed Benzylic C(sp3)−H Carbonylative Arylation with Aryl Bromides (Cited by: 2, Year: 2023)
  3. 🔥 Rhodium(III-Catalyzed C8-Selective C−H Alkenylation and Alkylation of 1, 2, 3, 4-Tetrahydroquinolines with Styrenes and Allylic Alcohols (Cited by: 4, Year: 2023)
  4. 🌿 Thermodynamics driving phytochemical self-assembly morphological change and efficacy enhancement originated from single and co-decoction of traditional Chinese medicine (Cited by: 25, Year: 2022)
  5. 🧪 Rhodium(i)-catalyzed directed trideuteromethylation of (hetero)arene C-H bonds with CD3CO2D (Cited by: 4, Year: 2022

Assoc. Prof. Dr. Mosad Ghareeb | Nanomaterials Awards | Best Researcher Award

Assoc. Prof. Dr. Mosad Ghareeb | Nanomaterials Awards | Best Researcher Award

Assoc. Prof. Dr. Mosad Ghareeb, Theodor Bilharz Research Institute, Egypt

Dr. Mosad Ahmed Ghareeb Ibrahim is an Associate Professor of Medicinal Chemistry at the Theodor Bilharz Research Institute (TBRI), Giza, Egypt. Specializing in the chemistry of plants and natural products and their biological applications, Dr. Ghareeb’s research focuses on the extraction, isolation, and identification of bioactive compounds from medicinal plants, fungi, and marine organisms. He holds a Ph.D. and M.Sc. in Chemistry from Ain Shams University and has published extensively, with a Scopus h-index of 18 and Google Scholar h-index of 26. Dr. Ghareeb is also an active member of various national and international scientific societies.

Professional Profile:

Google Scholar

Evaluation of Dr. Mosad Ahmed Ghareeb Ibrahim for the Best Researcher Award

Summary of Suitability:

Dr. Mosad Ahmed Ghareeb Ibrahim’s extensive research contributions, teaching experience, active participation in scientific societies, and commitment to advancing medicinal chemistry, he is highly suitable for the Best Researcher Award. His work significantly impacts the field and demonstrates a dedication to both scientific excellence and the mentorship of future researchers. Recognizing his contributions through this award would not only honor his achievements but also inspire continued innovation and research in medicinal chemistry and natural products.

🎓Education:

Dr. Mosad Ahmed Ghareeb Ibrahim earned his Ph.D. in Chemistry from Ain Shams University, Faculty of Science, Cairo, Egypt, in June 2014, where his thesis focused on the “Chemical and Biological Investigation of Gmelina arborea and Tectona grandis (Family Verbenaceae).” He also holds an M.Sc. in Chemistry from the same institution, completed in October 2010, with a thesis on the “Isolation of certain chemical constituents from Azadirachta indica and Ficus spp. and their assessment as hepatoprotective agents.” Dr. Ghareeb obtained his B.Sc. in Chemistry from Benha University, Faculty of Science, in May 2002, graduating with a cumulative grade of Very Good (77.5%).

🏢Work Experience:

Dr. Mosad Ahmed Ghareeb Ibrahim is currently serving as an Associate Professor in the Medicinal Chemistry Department at the Theodor Bilharz Research Institute (TBRI) since February 2020. Prior to this, he held the position of Researcher in the same department from December 2014 to March 2020. His earlier roles at TBRI include Assistant Researcher from March 2011 to December 2014, Researcher Assistant from May 2006 to March 2011, and Demonstrator from December 2003 to May 2006. Throughout his career, Dr. Ghareeb has made significant contributions to the field of medicinal chemistry.

🏅Awards and Recognitions:

Dr. Mosad Ahmed Ghareeb Ibrahim has participated in numerous training programs and received recognitions for his expertise in various aspects of medicinal chemistry. His training includes advanced techniques in the extraction of active components from medicinal plants and participation in drug discovery-related projects, highlighting his commitment to the field. Additionally, he has been recognized for his leadership in innovative strategic planning in scientific research by the National Research Centre, in cooperation with the Ministry of Higher Education and Scientific Research, underscoring his significant contributions to advancing scientific endeavors.

Publication Top Notes:

  • Title: Insights about clinically approved and Preclinically investigated marine natural products
    Citations: 98
  • Title: HPLC-DAD-ESI-MS/MS analysis of fruits from Firmiana simplex (L.) and evaluation of their antioxidant and antigenotoxic properties
    Citations: 87
  • Title: Antioxidant and cytotoxic activities of Tectona grandis Linn. leaves
    Citations: 85
  • Title: Chemical Profiling of Polyphenolics in Eucalyptus globulus and Evaluation of Its Hepato–Renal Protective Potential Against Cyclophosphamide Induced Toxicity
    Citations: 74
  • Title: Chemical composition, antioxidant, anti-tyrosinase, anti-cholinesterase and cytotoxic activities of essential oils of six Algerian plants
    Citations: 72

 

 

Mr. Xiyang Li | Nanomaterials Award | Best Researcher Award

Mr. Xiyang Li | Nanomaterials Award | Best Researcher Award

Mr. Xiyang Li , School of Materials Science and Engineering, Dalian University of Technology, China

Xiyang Li is a Ph.D. student at the School of Materials, Dalian University of Technology, specializing in nanocomposites. He completed his undergraduate studies at Shenyang Jianzhu University and earned a master’s degree from Guizhou University before pursuing his doctoral research. Throughout his academic career, Xiyang has focused on materials preparation and has published three SCI-indexed papers. His research interests include fabricating advanced nanocomposite materials with potential applications in various fields. Additionally, his work on the fabrication of Ni@ZrO2 nanocapsules has demonstrated enhanced antioxidation properties and controlled sintering shrinkage, contributing to the reliability of multi-layer ceramic capacitors (MLCCs).

Professional Profile:

Scopus

Suitability for the Best Researcher Award: Xiyang Li

Summary of Suitability:

Xiyang Li, a PhD student specializing in nanocomposites at Dalian University of Technology, presents a promising candidate for the Best Researcher Award. His academic journey spans multiple institutions, with degrees from Shenyang Jianzhu University and Guizhou University, culminating in his PhD studies focused on materials preparation. Li has published several SCI-indexed papers, indicating a strong research foundation and commitment to contributing to scientific knowledge.

🎓Education:

Xiyang Li is currently pursuing his Ph.D. in Materials Science at Dalian University of Technology, China, with a focus on nanocomposites and advanced materials fabrication. He holds a Master’s degree in Materials Science from Guizhou University, where he further honed his skills in materials preparation and characterization. Xiyang also completed his undergraduate studies in Materials Science at Shenyang Jianzhu University, China, laying the foundation for his research in the field.

🏢Work Experience:

Xiyang Li is a Ph.D. researcher at Dalian University of Technology, China, specializing in the preparation and application of nanocomposite materials. His research includes significant contributions to the development of Ni@ZrO2 nanocapsules, which have shown enhanced antioxidation properties and controlled sintering behavior, advancing the reliability of multi-layer ceramic capacitors (MLCCs). Prior to his doctoral studies, he worked as a research assistant at Guizhou University, where he focused on materials preparation and characterization for industrial applications.

🏅Awards:

Xiyang Li has published three SCI-indexed papers in recognized journals, highlighting his notable research contributions to the field of materials science. His work focuses on the development and application of advanced nanocomposite materials, advancing the understanding and potential industrial applications of these innovations.

Publication Top Notes:

  • In-situ Preparation of Ni@ZrO2 Nanocapsules Powder by DC Arc Plasma for Internal Electrode of MLCC
    • Citations: 2
  • Flexible Carbon-coated FeNi Alloy/PDMS Nanocomposites Toward a Multifunctional High-Performance Electromagnetic Absorber
    • Citations: 1
  • Tailoring of Electromagnetic Properties of Arc-produced Carbon-coated FeNi Alloy Nanocapsules for Highly Efficient Microwave Absorption
    • Citations: 6
  • Synthesis and Sintering Behaviors of Core–shell Ni@CrOx Nanocapsules as an Internal Electrode of MLCC
    • Citations: 1
  • Influence of N-doping on Dielectric Properties of Carbon-coated Copper Nanocomposites in the Microwave and Terahertz Ranges
    • Citations: 7

 

 

 

Dr. Amy Lewis | Nanomaterials Awards | Best Researcher Award

Dr. Amy Lewis | Nanomaterials Awards | Best Researcher Award

Dr. Amy Lewis , Oklahoma State University , United States

Dr. Amy King-Lewis is an Assistant Professor of Construction Engineering Technology at Oklahoma State University, with a Ph.D. in Civil Engineering from the same institution. Her research focuses on diversity and inclusion, particularly the participation and persistence of women in the construction industry. Dr. King-Lewis has extensive teaching experience, including courses on construction law, scheduling, and business practices. She has a robust industry background, having served in leadership roles at various construction and engineering firms. Additionally, Dr. King-Lewis is actively involved in outreach, mentoring, and presenting at national and international conferences.

Professional Profile:

Orcid

Scopus

Summary of Suitability for Best Researcher Award

The individual under consideration has demonstrated exceptional qualifications for the Best Researcher Award in the field of construction engineering, with a particular emphasis on diversity, equity, and inclusion (DEI) within the industry.

🎓Education:

Dr. Amy King-Lewis earned her Ph.D. in Civil Engineering from Oklahoma State University in December 2020, where she conducted research under the guidance of Dr. Yongwei Shan, focusing on the diversity and inclusion of women in the construction industry. Prior to this, she completed a Master of Science in Engineering Technology (MST) from Texas State University in May 2006, with a concentration in Engineering Management and Entrepreneurship Studies. Dr. King-Lewis began her academic journey with a Bachelor of Science in Construction Management, Engineering Technology from Oklahoma State University, graduating in May 1991.

🏢Work Experience:

Dr. Amy King-Lewis is currently an Assistant Professor of Construction Engineering Technology at Oklahoma State University, a position she has held since January 2021. In this role, she teaches various courses, including Construction Law, Introduction to Construction, Construction Scheduling, Mechanical and Electrical Systems of Buildings, and Business Practices. Alongside her academic career, Dr. King-Lewis serves as Vice President of R & J Lewis Oil Company, a position she has held since August 2017. Prior to her current roles, she worked as a Project Manager at Oklahoma State University from March 2016 to January 2021, where she managed construction projects for Long Range Facilities Management. Dr. King-Lewis also has entrepreneurial experience as the Co-Founder and CEO of Ontrack Texas Scheduling, a construction scheduling firm she led from June 2011 to June 2016, scaling the company to 12 employees. Earlier in her career, she served as Business Development Director for Sundt and Satterfield & Pontikes Construction in San Antonio from April 2008 to June 2011 and as a Project Manager at Brown & Root – A Halliburton Company in Houston, where she managed new construction, shutdowns, and turnarounds in refinery and chemical plants for major clients like Shell, Exxon, and Phillips 66, from May 1990 to June 2003.

🏆Awards and Grants:

Dr. Amy King-Lewis has received multiple travel grants and awards throughout her academic career, demonstrating her commitment to professional development and student mentorship. In June 2023, she was awarded a $2,500 travel grant by MEAC to attend the Mechanical and Electrical Faculty Boot Camp in Milwaukee, WI. Earlier in March 2023, she secured a $7,500 CMAB matching grant to attend the AGC National Convention. In December 2022, Dr. King-Lewis received a $7,500 travel grant from the TEXO Foundation. She had previously been awarded MEAC travel grants for the same Boot Camp in June 2022 and August 2021, both amounting to $2,500 each. Additionally, in February 2022, she was recognized as the faculty sponsor for the team that won 1st Place in the Commercial Building Division at the TEXO Foundation Region 5 Student Competition, with a prize of $1,000.

Publication Top Notes:

  • “A Systematic Approach to Developing Sustainable Post-Disaster Shelters in the Southern Region of the United States”
  • “Persistence of Women in the Construction Industry”
  • “Student Perceptions of Bias in University Construction Programs”
  • “Gender Bias and Its Impact on Self-Concept in Undergraduate and Graduate Construction Education Programs in the United States”
  • “Influencing Factors on Recruitment and Retention of Women in Construction Education: A Literature Review”

 

 

Prof. Vadim Galakhov | Nanoscale Awards | Best Researcher Award

Prof. Vadim Galakhov | Nanoscale Awards | Best Researcher Award

Prof. Vadim Galakhov , M. N. Mikheev Institute of Metal Physics, Ural Branch of the Russian Academy of Sciences , Russia

Vadim Rostislavovich Galakhov, born on August 23, 1952, is a prominent Russian physicist renowned for his contributions to X-ray emission, absorption, and photoelectron spectroscopy, as well as solid-state physics focusing on electronic structures of oxides, superconductors, and nanomaterials. He completed his education at Ural State University, where he studied physics from 1969 to 1974, followed by postgraduate studies at the Institute of Metal Physics from 1981 to 1985, culminating in a Ph.D. in physical and mathematical sciences in 1986 and later a Doctor of physical and mathematical sciences (Dr. habil.) in 2002. Throughout his career, Vadim has held various positions including Senior Researcher and Professor roles at institutions such as the Institute of Metal Physics of the Ural Branch of the Russian Academy of Sciences and Ural State Mining University. He has authored 160 papers, presented about 60 talks at conferences, and holds an h-index of 22. Vadim has led numerous research projects funded by prestigious organizations like the Russian Foundation for Basic Research and collaborated on international projects with organizations such as DAAD and DFG, receiving scholarships from DFG in 1993 and DAAD in 2004.

Professional Profile:

Scopus

🎓Education:

Vadim Rostislavovich Galakhov pursued an illustrious academic journey in physics, beginning with his Bachelor’s degree at Ural State University from 1969 to 1974. He continued his studies with postgraduate research at the Institute of Metal Physics from 1981 to 1985, where he later earned his Ph.D. in Physical and Mathematical Sciences in 1986. His academic pursuits culminated in a Doctor of Physical and Mathematical Sciences (Dr. habil.) degree from the same institute in 2002. Throughout his educational career, Vadim focused on advancing his expertise in solid-state physics, particularly in areas such as X-ray emission, absorption, and photoelectron spectroscopy, as well as the electronic structures of oxides, superconductors, and nanomaterials.

🏢Work Experience:

Vadim Rostislavovich Galakhov has held a distinguished career in academia and research spanning several decades. Beginning as an Engineer at the X-ray laboratories of Bashkir State University and later at the Institute of Metal Physics – Ural Division of the Academy of Sciences of the USSR, he gradually advanced through roles including Junior Researcher and Researcher from 1979 to 1988. His expertise and dedication led him to positions as a Senior Researcher at the Institute of Metal Physics, Ural Branch of the Russian Academy of Sciences, where he contributed significantly from 1988 to 2002. Vadim then assumed the role of Chief Researcher (Professor) at the M. N. Mikheev Institute of Metal Physics, a position he has held since 2008. Concurrently, he served as a Professor at both Ural State Mining University since 2003 and Ural State University from 2008 to 2011. Throughout his career, Vadim has been instrumental in advancing research in X-ray emission, absorption, and photoelectron spectroscopy, solid-state physics, and the electronic structures of oxides, superconductors, and nanomaterials.

Publication Top Notes:

  • Electronic States of Cobalt Ions in EuBaCo2O5 + δ Layered Cobaltites
    • Authors: Udintseva, M.S., Efremov, A.V., Smirnov, D., Shamin, S.N., Galakhov, V.R.
    • Journal: JETP Letters
    • Citations: 1
  • Magnetic Properties, Electron Paramagnetic Resonance, and Photoelectron Spectroscopy Studies of Nanocrystalline TiO2 Co-Doped with Al and Fe
    • Authors: Yermakov, A.Y., Galakhov, V.R., Minin, A.S., Gaviko, V.S., Zakharova, G.S.
    • Journal: Physica Status Solidi (B) Basic Research
    • Citations: 3
  • Magnetic properties and electronic structure of CeFe2−xMnx and CeFe2Mnx compounds
    • Authors: Naumov, S.P., Mushnikov, N.V., Terentev, P.B., Kuepper, K., Vagizov, F.G.
    • Journal: Journal of Alloys and Compounds
    • Citations: 2
  • X-Ray Spectroscopy of Cobaltites
    • Authors: Galakhov, V.R.
    • Journal: Physics of Metals and Metallography
    • Citations: 3
  • Magnetic and Electronic Properties of Highly Mn-Doped β-NaGdF4and β-NaEuF4Nanoparticles with a Narrow Size Distribution
    • Authors: Schneider, L., Wehmeier, J., Wiedwald, U., Haase, M., Kuepper, K.
    • Journal: Journal of Physical Chemistry C
    • Citations: 9