Mr. Mostafa Fathalian | Atomistic Simulation | Best Researcher Award
Institute of Fundamental Technological Research POLISH ACADEMY OF SCIENCES, Poland
Profile
Early Academic Pursuits 🎓
Mostafa Fathalian’s academic journey began with a Bachelor of Science in Mechanical Engineering from Azad University, Semnan Branch, from 2005 to 2009. His passion for applied mechanics and material science led him to pursue a Master of Science in Mechanical Engineering with a specialization in Applied Design at the same institution from 2013 to 2016. Under the supervision of Prof. H. Fereidoon, he conducted an experimental study on the mechanical and thermal properties of Carbon Fiber/Polycarbonate Laminate filled with Nano Silica. His research explored the reinforcement effects of nano-silica on composite materials, contributing valuable insights into advanced material engineering.
Continuing his pursuit of knowledge, he embarked on a PhD journey at the Polish Academy of Sciences (PAN) in Warsaw, Poland. Under the guidance of Prof. Eligiusz Postek, his research focuses on the simulation modeling of interphase behavior in metal-ceramic composites, particularly Al-SiC structures. Employing Molecular Dynamics (MD) simulations and Density Functional Theory (DFT), he aims to deepen the understanding of the atomic-scale interactions that govern material properties.
Professional Endeavors 💼
Parallel to his academic achievements, Mostafa Fathalian has accumulated substantial industry experience. His career commenced in 2010 as a Mechanical Engineer at Mechanic Sanat Gomes Company (MSGC), where he was responsible for troubleshooting, repairing, and maintaining hydraulic systems. His role demanded critical problem-solving skills to ensure the optimal performance and minimal downtime of mechanical systems.
From 2011 to 2020, he took on a more significant role as Senior Mechanical Engineer at North Drilling Company (NDCO). Over nearly a decade, he played a crucial role in the maintenance and repair operations of vital rig equipment. His responsibilities included developing and executing maintenance schedules, resolving mechanical issues, procuring essential spare parts, and collaborating with rig crews to ensure seamless operations. His leadership in fostering a culture of safety through active participation in safety meetings and drills underscored his commitment to workplace safety and operational efficiency.
Additionally, from 2019 to 2020, he served as a Research Assistant at the Mechanical Engineering Department of Mazandaran University under Prof. M. Ghorbanzadeh. Here, he honed his research skills, gaining hands-on experience in experimental and computational material studies, further cementing his expertise in metal-ceramic composites.
Contributions and Research Focus 🔬
Mostafa Fathalian’s research delves deep into the microstructural and atomic-level interactions within metal-ceramic composites. His PhD work, centered on Al-SiC structures, leverages Molecular Dynamics (MD) and Density Functional Theory (DFT) to explore interphase behaviors, providing new insights into the fundamental mechanisms governing material durability and performance. His contributions aim to enhance the development of high-performance materials used in aerospace, automotive, and other industrial applications.
Additionally, his Master’s research on nano-reinforced polymer composites has implications for lightweight yet durable materials in engineering applications. By investigating carbon fiber/polycarbonate laminates filled with nano-silica, he provided data that could influence future advancements in composite material fabrication.
Accolades and Recognition 🏆
Throughout his career, Mostafa Fathalian has earned recognition for his expertise and contributions to both academia and industry. His work has been cited in numerous research studies, reflecting his impact on material science and mechanical engineering. His engagement in high-level research at PAN, coupled with his industry experience, positions him as a thought leader in metal-ceramic composite modeling and mechanical engineering applications.
His professional journey also includes valuable collaborations with leading researchers, ensuring that his work remains at the forefront of computational material science. His Google Scholar and ORCID profiles showcase a robust body of research that continues to grow with ongoing investigations.
Impact and Influence 🌍
Mostafa Fathalian’s impact extends beyond research papers and industry contributions. His extensive experience in both academia and engineering positions him as a mentor to aspiring mechanical engineers and material scientists. By bridging theoretical research with practical applications, he contributes to the evolving landscape of advanced materials and engineering solutions.
His research in metal-ceramic composites has the potential to revolutionize material development in various sectors, enhancing durability, efficiency, and performance. His insights into atomistic modeling and MD simulations provide a foundation for future breakthroughs in nanotechnology and composite materials.
Legacy and Future Contributions 🌟
As Mostafa Fathalian continues his PhD research and academic collaborations, his future contributions promise to be groundbreaking. His expertise in Molecular Dynamics and Density Functional Theory is expected to lead to advancements in material simulations, contributing to the design of next-generation composite materials. With his combined academic and industrial background, he is well-equipped to take on leadership roles in research institutions and engineering firms, driving innovation in material science.
His legacy will be defined by his commitment to knowledge dissemination, mentorship, and cutting-edge research. Whether through publications, collaborative projects, or industry advancements, his work will leave a lasting imprint on mechanical engineering and materials research.
📝Notable Publications
DFT study of Ni, Cu, Cd, and Ag heavy metal atom adsorption onto the surface of the zinc-oxide nanotube and zinc-oxide graphene-like structure
Authors: AH Mashhadzadeh, M Fathalian, MG Ahangari, MH Shahavi
Journal: Materials Chemistry and Physics
Year: 2018
Effect of various defects on mechanical and electronic properties of zinc-oxide graphene-like structure: A DFT study
Authors: MG Ahangari, AH Mashhadzadeh, M Fathalian, A Dadrasi, Y Rostamiyan
Journal: Vacuum
Year: 2019
Theoretical studies on the mechanical and electronic properties of 2D and 3D structures of beryllium-oxide graphene and graphene nanobud
Authors: AH Mashhadzadeh, MG Ahangari, A Dadrasi, M Fathalian
Journal: Applied Surface Science
Year: 2019
Density functional theory study of adsorption properties of non-carbon, carbon, and functionalized graphene surfaces towards the zinc and lead atoms
Authors: AH Mashhadzadeh, MG Ahangari, A Salmankhani, M Fataliyan
Journal: Physica E: Low-dimensional Systems and Nanostructures
Year: 2018
Effect of nanosilica on the mechanical and thermal properties of carbon fiber/polycarbonate laminates
Authors: M Fathalian, M Ghorbanzadeh Ahangari, A Fereidoon
Journal: Fibers and Polymers
Year: 2019