Vasiliki Keramari | Chemistry | Research Excellence Award

Vasiliki Keramari | Chemistry | Research Excellence Award

Aristotle University of Thessaloniki | Greece

Vasiliki Keramari is an Environmental and Chemical Engineer and a Ph.D. candidate in Analytical Chemistry whose work bridges advanced chemical analysis, environmental engineering, and sustainable materials research. Her expertise spans heavy metal detection, nanomaterials, and environmental monitoring, supported by a growing publication record and extensive teaching experience. As a Chemistry Lecturer at Aegean College, affiliated with the University of Essex, she teaches Environmental Chemistry, Toxicology, and Ecotoxicology, contributing to the development of future scientists through rigorous, research-informed instruction. She also serves as an instructor at IEK Omiros and IEK Akmi in Thessaloniki, delivering courses in Analytical and Organic Chemistry, Thermodynamics, Environmental Protection, Laboratory Safety, and Health and Safety, reflecting her broad scientific background and commitment to academic excellence. Her earlier role as a Quality Control and Data Analyst at Amarla Retail SA further strengthened her skills in chemical data evaluation, quality assurance, and process documentation, enhancing her ability to translate scientific principles into practical industrial applications. Throughout her academic and professional path, she has demonstrated strong competence in interdisciplinary collaboration, working effectively with scientists, engineers, and industry professionals toward environmentally responsible and technologically innovative solutions. Her research interests focus on developing reliable analytical methods, investigating advanced materials for environmental applications, and promoting sustainable approaches to pollution control. She also holds certifications in environmental and occupational safety standards, underscoring her dedication to responsible scientific practice. Overall, her combined experience in teaching, research, and industry positions her as a dynamic and forward-thinking scientist committed to advancing analytical chemistry and environmental sustainability through education, applied research, and technical expertise.

Profile: Scopus | Orcid 

Featured Publications

Keramari, V., Karastogianni, S., & Girousi, S. (2023). New prospects in the electroanalysis of heavy metal ions (Cd, Pb, Zn, Cu): Development and application of novel electrode surfaces. Methods and Protocols, 6(4), 60.

Keramari, V., Papadimou, S. G., Golia, E. E., & Girousi, S. (2024). Bismuth film along with dsDNA-modified electrode surfaces as promising (bio)sensors in the analysis of heavy metals in soils. Biosensors, 14(6), 310.

Girousi, S., Keramari, V., Paraschi, I., Karastogianni, S., & Golia, E. E. (2025). Development of a carbon paste electrode modified with saffron-conjugated silver nanoparticles for the simultaneous determination of Cd, Pb, Zn, Cu and Cl in soils and plants. Chemosensors, 13(3), 91.

Keramari, V., & Girousi, S. (2025). Manganese nanoparticles for heavy metal detection vs. noble and base metal nanoparticles: Prospects, limitations, and applications in electroanalysis.

Ana Moreno-Reyes | Chemistry | Best Article Award

Ana Moreno-Reyes | Chemistry | Best Article Award

Instituto de Ciencias de la Construcción Eduardo Torroja | Spain

Dr. Ana María Moreno is a distinguished researcher in the field of chemical sciences, specializing in the design, development, and characterization of innovative cement-based materials with advanced environmental functionalities. She earned her Ph.D. in Chemical Sciences from the University of Castilla-La Mancha in 2022, following her master’s and undergraduate studies in chemistry from the same institution. Currently serving as a Senior Researcher at the Institute of Construction Sciences Eduardo Torroja (IETcc-CSIC) within the Department of Materials, she is an active member of the “Recycling of Materials” research group. Her work focuses on promoting sustainability within the construction sector by developing materials capable of acting as CO₂ sinks while incorporating recycled and industrial by-products, aligning her research with the principles of the circular economy. Dr. Moreno’s scientific contributions emphasize the valorization of waste materials to reduce environmental impact and enhance the performance of construction materials. She has also been instrumental in developing novel methodologies for measuring gamma radioactivity in cement-based materials, contributing to safer and more sustainable material design. Her multidisciplinary approach bridges chemistry, materials science, and environmental engineering, addressing global challenges related to waste management, decarbonization, and sustainable construction practices. Through her research, Dr. Moreno demonstrates a strong commitment to advancing green technologies and circular solutions, fostering innovation that supports both scientific progress and environmental responsibility.

Profile: Orcid | Scopus

Featured Publications

Frías, M., Alujas, A., Moreno-Reyes, A. M., Ibañez, J. A., Paredes, M. V., & Vegas, I. (2024). Advances in understanding R3 chemical reactivity in various traditional and emerging pozzolans: Chemical, mineralogical and calorimetric dimensions. Construction and Building Materials, 457, 139474. Elsevier.

Frías, M., Moreno-Reyes, A. M., Vigil de la Villa, R., García, R., Villar-Cociña, E., Oleaga, A., & Vegas, I. (2024). Scientific advances regarding the effect of carbonated alkaline waste materials on pozzolanic reactivity. Journal of Building Engineering, 98, 111423.

Frías, M., Moreno de los Reyes, A. M., Villar-Cociña, E., García, R., Vigil de la Villa, R., & Vidak Vasić, M. (2024). New eco-cements made with Marabou weed biomass ash. Materials, 17(20), 5012.

Frías, M., Moreno-Reyes, A. M., Vigil de la Villa, R., García, R., Martínez-Ramírez, S., Moreno, J., & Oleaga, A. (2024). Advances in the understanding of alkaline waste materials as potential eco-pozzolans: Characterisation, reactivity and behaviour. Journal of Building Engineering, 92, 109744. Elsevier.

Moreno-Reyes, A. M., Suárez-Navarro, J. A., Alonso, M. M., Gascó, C., Sobrados, I., & Puertas, F. (2022). Hybrid cements: Mechanical properties, microstructure and radiological behavior. Molecules, 27(2), 498.

Puertas, F., Suárez-Navarro, J. A., Gil-Maroto, A., Moreno-Reyes, A. M., Gascó, C., Pachón, A., & Alonso, M. M. (2021). Microstructural, mechanical and radiological characterization of mortars made with granite sand. Materials, 14(19), 5656.

Vanja Đurđevac | Materials Science | Best Researcher Award

Vanja Đurđevac | Materials Science | Best Researcher Award

Ms. Vanja Đurđevac, Mining and Metallurgy Institute Bor, Serbia

Vanja Đurđevac is a dedicated Serbian researcher specializing in geotechnical engineering and environmental protection. Currently serving as a Research Fellow at the Mining and Metallurgy Institute Bor, she leads software modeling projects focused on soil and rock mechanics. Her career spans various sectors including chemical laboratories, industry management, and soft drink manufacturing, showcasing a blend of technical and managerial expertise. She holds both Bachelor’s and Master’s degrees in Technological Engineering, and is pursuing doctoral studies at the University of UNION Nikola Tesla in Ecology and Environmental Protection. Fluent in English, she demonstrates strong organizational and leadership capabilities. Vanja is an active contributor to international mining conferences and scientific publications, with a focus on sustainable mining practices and geotechnical stability. Her multidisciplinary skills extend beyond research into software modeling, production organization, and laboratory analysis, enriching her profile as a versatile scientist committed to advancing environmental safety in the mining industry.

Publication Profile

orcid

🎓 Education

Vanja Đurđevac earned her Bachelor and Master degrees in Technological Engineering from the Technical Faculty Bor, University of Belgrade, specializing as an Inorganic Chemistry Technologist. This academic foundation provided her with robust expertise in chemical processes, materials analysis, and industrial technology. Continuing her educational advancement, she is presently enrolled in Doctoral Studies at the University of UNION Nikola Tesla, focusing on Ecology and Environmental Protection. Her doctoral studies are shaping her research on sustainable development practices and ecological considerations in mining industries. This educational journey reflects a seamless blend of fundamental sciences with applied engineering principles, enabling her to contribute effectively to geotechnics, environmental impact assessments, and innovative modeling techniques. Her studies emphasize sustainable technological solutions, environmental risk reduction, and waste management strategies, underlining her role in promoting responsible industrial development.

💼 Experience

Vanja Đurđevac’s professional journey began in production management at Krajna Vino, overseeing soft drink and wine manufacturing. Later, she served as Plant Manager in the chemical industry at ALBUS, Novi Sad, where she was responsible for operational oversight. She expanded her technical expertise as a researcher at SGS Laboratory, Novi Sad, conducting chemical analyses. Since 2019, Vanja has been a Research Fellow at the Mining and Metallurgy Institute Bor, specializing in geotechnical modeling of soil and rock structures using advanced software tools. This role places her at the forefront of innovative research supporting mining safety, environmental preservation, and sustainable development goals. Across these roles, she developed strong leadership in production coordination, laboratory testing, and process optimization, complemented by technical proficiency in environmental and geotechnical studies. Her cross-sectoral experience enhances her ability to address complex industrial challenges with scientific precision and organizational acumen.

🏆 Honors and Awards

Vanja Đurđevac has gained recognition through her active participation in prestigious conferences such as the International October Conference on Mining and Metallurgy, where her co-authored papers on soil stabilization, geotechnical assessments, and environmental risk have contributed to the mining sector’s best practices. Although explicit individual awards are not listed in the provided CV, her repeated scholarly presence at such reputable platforms highlights her academic standing and the value of her research within the geotechnical and environmental engineering community. Furthermore, her involvement in publications addressing sustainable development and ISO standard documentation suggests institutional trust and recognition in quality and environmental management systems. Her ongoing doctoral studies further underscore her commitment to scholarly excellence and professional advancement in the field of ecological and mining engineering, potentially positioning her for future academic or industry-based honors.

🔬 Research Focus

Vanja Đurđevac’s research focuses on geotechnical engineering, environmental protection in mining, soil and rock stability analysis, and the development of sustainable practices in mining operations. She is particularly involved in software modeling of geotechnical systems to enhance the understanding of subsoil mechanics, landslide risks, and waste disposal site stability. Her studies on cement paste applications in mining, subsoil bearing capacity, and stabilization with lime directly support ecological preservation and the achievement of sustainable development goals. Vanja also explores the environmental risk assessment of unregulated waste sites, contributing to environmental safety and urban planning. Her work on applying numerical methods for substrate definition demonstrates her interest in precision modeling for engineering purposes. Overall, her research blends practical engineering with ecological consciousness, ensuring that mining practices align with global sustainability standards and minimizing environmental hazards associated with industrial processes.

📚 Publications

1️⃣ APPLICATION OF CEMENT PASTE IN MINING WORKS, ENVIRONMENTAL PROTECTION AND SUSTAINABLE DEVELOPMENT GOALS IN THE MINING INDUSTRY 🌱⛏️

2️⃣ STABILITY ANALYSIS ON OPEN PIT MINE „GACKO“ 🏞️🔍

3️⃣ WICKHAM AND BIENAWSKI ROCK CLASSIFICATION IN MINING 🪨📊

4️⃣ THE USE OF CEMENT PASTE IN THE MINING INDUSTRY AND ECOLOGY 🏭🌿

5️⃣ INFLUENCE OF THE SUBSOIL BEARING CAPACITY DURING FORMATION OF HIGH LANDSFILLS 🏗️🛠️

6️⃣ APPLICATION OF THE NUMERICAL METHOD IN THE DEFINITION OF A SUSTRATE OF CIRCULAR CROSS SECTION 🔄📐

7️⃣ SUBSOIL STABILIZATION WITH LIME 🧱🌍

8️⃣ TERM AND TYPES OF SOIL STABILIZATION 🌾📑

9️⃣ GEOPHYSICAL TESTS OF THE SMELTER SLAG DEPOSITS AT THE CONSTRUCTION SITE OF FACILITIES IN BOR 🏗️🌋

🔟 ECONOMIC AND ENVIRONMENTAL BUSINESS EFFECTS OF MULTINATIONAL COMPANIES IN THE FIELD OF NATURAL RESOURCES 🌍💼

1️⃣1️⃣ Documentation sustainability according to ISO 9001 and ISO/IEC 17025 standards: experience in the laboratory – MMI Bor 📝🔍

1️⃣2️⃣ GEOMECHANICAL TESTING ON THE LANDSLIDE AT THE ČUKARU PEKI FLOTATION TAILING DUMP 🌄🛠️

1️⃣3️⃣ GEOTECHNICAL INVESTIGATIONS FOR DEFINING THE BUILDING CONDITIONS OF THE NEW QUARRY CRUSHER PLANT IN BOR 🏗️🏞️

1️⃣4️⃣ DETERMINATION OF SOIL DEFORMATION MODULUS USING THE STATIC AND DYNAMIC CIRCULAR PLATE LOAD TEST 🧪📏

1️⃣5️⃣ STOPE STABILITY ANALYSIS IN ROOM-AND-PILLAR MINING METHOD USING CEMENTED PASTE BACKFILL ⛏️🏢

1️⃣6️⃣ ENVIRONMENTAL RISK ASSESSMENT FOR UNREGULATED WASTE DISPOSAL SITES OF MUNICIPAL WASTE IN THE CITY AREA OF BOR 🚮♻️

Laxmi Tiwari | Chemistry | Best Research Article Award

Laxmi Tiwari | Chemistry | Best Research Article Award

Dr. Laxmi Tiwari, Icahn School of Medicine at Mount Sinai, United States

Dr. Laxmi Tiwari is a highly accomplished synthetic organic chemist with extensive expertise in organometallic and medicinal chemistry. Currently serving as a Research Assistant Scientist at the Icahn School of Medicine at Mount Sinai, NY, she contributes to innovative drug discovery programs targeting IBD, cancer, and diabetes. Her work bridges synthetic chemistry and nanotechnology for biomedical and environmental applications. She earned her Ph.D. from the University of Idaho, focusing on azothioformamide ligands in coordination, catalysis, and biological activity. She has authored multiple peer-reviewed articles, presented at major ACS conferences, and received several prestigious awards. Dr. Tiwari is known for her proficiency in NMR, XRD, MS, and other advanced instrumentation, as well as computational modeling and SAR studies. She is a proactive member of the American Chemical Society and a mentor to young chemists. Her passion lies in transforming laboratory science into real-world therapeutic and sustainable solutions.

Publication Profile

google scholar

Education

Dr. Tiwari holds a Ph.D. in Chemistry from the University of Idaho (2021–2024), where she conducted advanced research under Dr. Kristopher V. Waynant on the synthesis and application of azothioformamide and azoformamide ligands. Her research emphasized coordination chemistry, catalysis, and biological activity, integrating synthetic strategies with metal complex design. She earned her Master of Science in Chemistry from Tribhuvan University, Kathmandu, Nepal (2017–2019), where she deepened her foundation in organic and inorganic synthesis, analytical techniques, and reaction mechanisms. Her undergraduate studies also took place at Tribhuvan University (2012–2016), where she obtained a Bachelor’s degree in Chemistry, fostering her interest in structure-activity relationships and organic reaction pathways. Throughout her academic career, she has maintained excellent academic standing, with a Ph.D. GPA of 3.98, while also engaging in workshops, computational chemistry courses, and risk management training in research settings.

Experience

Dr. Tiwari currently works as a Research Assistant Scientist at the Icahn School of Medicine at Mount Sinai (2025–present), developing synthetic methodologies for analyzing diseases like IBD, cancer, and diabetes. She plays a pivotal role in designing experiments, clinical research protocols, and novel therapeutic compounds. During her Ph.D. tenure at the University of Idaho (2021–2024), she served as a Graduate Research and Teaching Assistant, synthesizing organometallic complexes and optimizing ligands for catalysis and medicinal chemistry. She led undergraduate labs, supervised synthetic procedures, and contributed to projects involving palladium-catalyzed cross-coupling reactions and nanomaterial applications. Her multidisciplinary collaborations resulted in multiple publications and recognition through departmental and national travel awards. Dr. Tiwari is experienced in hazardous waste management, laboratory training, and scientific communication. She brings over five years of combined research and teaching experience in advanced organic synthesis, spectroscopy, nanotechnology, and green chemistry applications.

Awards and Honors

Dr. Laxmi Tiwari has been recognized for her academic excellence and scientific contributions through multiple awards. She received the Thomas F. Howland Award (2024) for outstanding research achievements and the Cooley-Jube Outstanding TA Award (2024–2025) from the University of Idaho for excellence in teaching. She earned the ACS DIC Travel Award (2023) to present her work at a national ACS meeting and was granted Graduate and Professional Student Association (GPSA) Travel Awards in both 2023 and 2024 to support conference presentations. These accolades underscore her commitment to research, teaching, and scientific outreach. She has also contributed actively as a volunteer for ACS regional meetings and local events like the Chemical Olympics. Her recognized work in cross-disciplinary areas such as coordination chemistry, catalysis, and nanomaterials further illustrates her impact in the scientific community and her drive to merge synthetic chemistry with real-world applications.

Research Focus

Dr. Tiwari’s research lies at the intersection of synthetic organic chemistry, organometallic chemistry, and nanotechnology. Her primary focus is the design and synthesis of azothioformamide and azoformamide ligands, their coordination with metal centers, and their roles in catalysis, biological activity, and therapeutics. She specializes in palladium- and copper-based complexes used in Suzuki-Miyaura, Mizoroki–Heck, and Sonogashira cross-coupling reactions. Her work emphasizes structure-activity relationship (SAR) studies, lead optimization, and green synthesis of metal oxide nanoparticles with antimicrobial and photocatalytic properties. By combining natural product chemistry and metal-ligand design, she targets sustainable applications in biomedicine and environmental remediation. Dr. Tiwari also applies computational modeling (Autodock-vina, Schrodinger-Maestro) and tools like SwissADME for predictive pharmacokinetics. Her interdisciplinary collaborations have enhanced drug discovery processes and led to the development of novel diagnostic tools and materials, advancing the field of sustainable therapeutic chemistry.

Publication Top Notes

• 🧪 Evaluation of azothioformamides and their copper(I) and silver(I) complexes for biological activity
• 🧬 The synthesis and structural properties of a chlorozinc(II) bis(pyrrolidinyl-4-methoxyphenylazoformamido) acetonitriletrichlorozincate coordination complex
• 🧫 Binding mechanisms and therapeutic activity of heterocyclic substituted arylazothioformamide ligands and their Cu(I) coordination complexes
• 🔬 Exploring the electronic influence on coordination complexes formed from appended pyrrolidine azothioformamide ligands and copper(I) salts
• ⚗️ Investigating arylazoformamide ligands in palladium(II) precatalysts through the Suzuki-Miyaura cross-coupling reaction
• 🌿 Synthesis and characterization of copper oxide nanoparticles isolated from Acmella oleracea and study of antimicrobial and phytochemical properties
• 🍃 Green synthesis of copper oxide nanoparticles using mentha (mint) leaves: characterization and its antimicrobial properties with phytochemicals screening
• 🌱 Eco-friendly synthesis of zinc oxide nanoparticle using Centella asiatica: phytochemical analysis, characterization and antimicrobial activity assessment
• 🌞 Exploring photocatalytic, antimicrobial and antioxidant efficacy of green-synthesized zinc oxide nanoparticles
• 🔄 Synthetic and mechanistic evaluation of palladium(II) bis(arylazoformamide) precatalysts in the Sonogashira reaction (in review)

Razia Khan Sharme | Materials Science | Best Researcher Award

Razia Khan Sharme | Materials Science | Best Researcher Award

Razia Khan Sharme, Delaware State University, Bangladesh

Razia Khan Sharme is a dedicated materials scientist with a keen interest in thin films, semiconductors, and computational material science. She is currently pursuing her Master’s degree in Applied Optics at Delaware State University, maintaining a perfect 4.0 GPA. With a robust academic foundation, she completed her Bachelor of Science in Materials Science and Engineering from Khulna University of Engineering and Technology (KUET), Bangladesh. Razia is passionate about research and has already co-authored several journal articles and conference papers focused on advanced materials, particularly transparent conducting films, perovskites, and metal oxides. Her interdisciplinary approach combines experimental insights with first-principles computational modeling. Beyond her academic excellence, she is recognized for her presentations and has received several national and international awards. Razia is actively engaged in professional platforms like ResearchGate, Google Scholar, and LinkedIn. Her research contributions are helping to advance the field of electronic materials and nanostructured coatings.

Publication Profile

google scholar

Education

Razia Khan Sharme is presently enrolled in the Master’s program in Applied Optics at Delaware State University, USA, where she holds a 4.00/4.00 GPA (June 2024 – Present). Her academic journey began at Khulna University of Engineering and Technology (KUET) in Bangladesh, where she earned a Bachelor of Science in Materials Science and Engineering with an impressive 3.76/4.00 GPA over 160 credits (December 2017 – February 2023). During her undergraduate studies, she was consistently ranked among the top students and received multiple merit-based scholarships. Her education has equipped her with both theoretical knowledge and practical experience in material processing, computational simulations, optics, and mechanical characterization of advanced materials. Razia’s strong academic background, paired with her focus on research and innovation, has laid the foundation for her current work in thin films and semiconductor technologies, allowing her to thrive in both academic and industrial environments.

Experience

Razia Khan Sharme has developed extensive research experience through both academic projects and scientific collaborations. At Delaware State University, she is currently engaged in research focusing on thin films and optical coatings, particularly transparent conducting oxides (TCOs) such as Indium Tin Oxide (ITO) and Aluminum Zinc Oxide (AZO). Her work combines first-principles calculations with material synthesis and characterization, under the guidance of Dr. Mukti Rana and Dr. Manuel A. Quijada. She has co-authored publications in top journals such as Nanomaterials, Physica B, and Materials. Razia also contributed to multiple international conferences including SPIE DCS and the ERN Conference. Previously, she participated in collaborative research at KUET, conducting computational modeling and experimental validation in metallic alloys and perovskites. Razia is adept at simulation tools, materials characterization techniques, and scholarly communication, which have prepared her for future roles in both research-intensive academia and the high-tech industry.

Awards and Honors

Razia Khan Sharme has been recognized numerous times for her academic and research excellence. She won First Prize in the Physics (Graduate Category) for her oral presentation at the ERN Conference in STEM (2025). At KUET, she received University Technical Merit Scholarships in all four academic years (2019–2023) and earned the Dean’s Choice Award for outstanding GPAs in her 3rd (3.94) and 4th (3.87) years. Her academic excellence began early, with Board General Scholarships in secondary and junior school. Razia also excelled in national competitions, achieving 1st Runner-Up in the Bangladesh Math Olympiad (2017) and 9th Position in the Bangladesh Science Olympiad (2017). Her consistent achievements reflect her dedication to academic excellence, innovation, and leadership. These honors, combined with her scholarly publications, make her a rising figure in the field of materials science and engineering with a promising career ahead.

Research Focus

Razia Khan Sharme’s research is primarily centered on thin films, semiconductors, and computational materials science. Her core expertise includes the synthesis, characterization, and simulation of transparent conducting oxides (TCOs) such as ITO and AZO, as well as first-principles studies of advanced functional materials. She employs density functional theory (DFT) and other simulation techniques to investigate optical, mechanical, and electronic properties of perovskites, metal oxides, and mono-chalcogenides under varying conditions such as pressure or doping. Her work explores the structural stability and application potential of these materials in next-generation optoelectronic devices, including flexible electronics and photovoltaics. Razia aims to bridge computational predictions with experimental validation to develop more efficient, sustainable, and cost-effective materials. Her interdisciplinary approach has led to collaborations with researchers across institutions in the U.S. and Bangladesh, and her publications reflect growing contributions in both theoretical modeling and practical applications in nanomaterials and device engineering.

Publication Top Notes

  • 📄 A Review of Transparent Conducting Films (TCFs): Prospective ITO and AZO Deposition Methods and ApplicationsNanomaterials, 2024

  • 📄 Recent Progress on Layered Sn and Pb-Based Mono Chalcogenides: Synthesis, Structure, Optical, and Thermoelectric Properties and Related ApplicationsNanomaterials, 2024

  • 📄 Thin Conducting Films: Preparation Methods, Optical and Electrical Properties, and Emerging Trends, Challenges, and OpportunitiesMaterials, 2024

  • 📄 First-Principles Study on Electronic, Mechanical, and Optical Properties of Pressure-Induced Vanadium-Based Perovskite KVO3Physica B, 2024

  • 📄 A Deep Dive into Structural, Electronic, Optical, and Mechanical Properties of ATiO3 (A= Ba, Th): DFT InsightsPhysica Scripta, 2023

  • 📄 Modelling Microstructure and Mechanical Properties of Solidified Al-Sn-Cu AlloyMalaysian Journal on Composites Science & Manufacturing, 2023

  • 📄 Pressure-Induced Investigation of Structural, Electronic, Optical, and Mechanical Properties of BaCeO3Optical Materials, 2024

  • 📢 First-Principles Study on Structural, Electronic, Mechanical, and Optical Properties of Indium (III) OxideSPIE DCS, 2025

  • 📢 Advancing Indium Tin Oxide Thin Films and Protective Coatings for Next-Generation ApplicationsERN Conference, 2025

  • 📢 A Study on the Tensile Properties from the Composition of an Annealed Structural Steel SampleICMERE, 2021

  • 📢 Modelling Microstructure and Mechanical Properties of Solidified Al-Sn-Cu AlloyIUT-ICMMPE, 2023

  • 📢 Evaluation of Mechanical Properties and Moisture Resistance Behavior of Jute-Glass-Viscose Fiber Reinforced Hybrid CompositeICME, BUET, 2023