Maziar Ashuri | Materials Science for Energy Storage | Best Researcher Award

Dr. Maziar Ashuri | Materials Science for Energy Storage | Best Researcher Award

Doctorate at Illinois Tech, United States

Profile:

🚀 Current Position

Maziar Ashuri is currently serving as an EV Battery System R&D Senior Engineer at Hyundai America Technical Center, Inc. (HATCI). Since July 2024, he has been driving advancements in battery technologies for electric vehicles (EVs). His role encompasses compatibility analysis between EV models and charging networks, feasibility studies on next-generation battery systems, and evaluations of innovative materials to enhance energy density, thermal management, and safety. He also explores novel adhesive sealants for battery packs, optimizing durability and insulation. Maziar plays a pivotal role in supporting Hyundai’s North American EV plant by verifying localized production components.

📚 Publication Achievements

Maziar has an impressive publication record that reflects his expertise in advanced materials and energy technologies. He has contributed significantly to developing high-performance silicon anodes and surface-modified NMC cathodes for lithium-ion batteries. His work emphasizes optimizing materials for improved safety and efficiency in energy storage systems.

🔬 Ongoing Research

Advancing lithium-ion and metal-ion battery technologies for EVs and industrial applications. Exploring new materials for energy storage systems with enhanced thermal stability and safety. Developing cutting-edge solutions for sustainable energy storage and material recycling. Through extensive lab tests and real-world evaluations, Maziar continues to push boundaries in battery system performance.

🔎 Research Interests

Advanced materials for energy storage and conversion systems. Failure analysis techniques for improving battery system safety. Sustainable and recyclable materials for green energy solutions. Cross-disciplinary approaches to enhance the performance and safety of energy storage technologies.

🎓 Academic Background

Maziar holds a Ph.D. in Materials Science & Engineering from the Illinois Institute of Technology, where his dissertation focused on silicon anodes and modified cathodes for lithium-ion batteries. 

  • An M.S. in Biomedical Engineering (Biomaterials) from Amirkabir University of Technology, studying bioactive glass composites.
  • A B.S. in Metallurgical Engineering (Extractive Metallurgy) from the University of Tehran, focusing on aluminum-zircon composites via powder metallurgy.

🏆 Scholarships and Awards

Maziar’s academic journey has been marked by numerous recognitions for his innovative contributions in materials science. His expertise in energy storage has earned him accolades in both research and industry sectors.

🧬 Bioinformatics Expertise

While his primary domain lies in materials science, Maziar’s cross-disciplinary approach includes utilizing computational tools to model material behaviors and optimize system performance.

🌍 Professional Associations

Maziar is an active member of professional organizations that advance materials science and energy storage technologies. His memberships enable him to collaborate with global experts and stay updated with industry trends.

🎓 Training & Workshops

Maziar has participated in various workshops focusing on analytical techniques such as SEM, XRD, TGA, DSC, CV, and EIS. These methods have been integral to his work in enhancing energy storage systems and materials.

🗣️ Oral Presentations

Maziar has delivered numerous presentations at international conferences, Innovations in lithium-ion battery systems. Failure analysis methods to improve energy storage safety. Strategies for advancing sustainable energy technologies.

🔧 Tasks Completed as a Researcher

Throughout his career, Maziar has accomplished significant tasks, Synthesizing high-performance materials for energy storage. Conducting failure diagnostics to improve battery safety. Implementing advanced testing protocols for material optimization. Mentoring students and professionals in laboratory techniques.

🏅 Success Factors

  • Deep knowledge of advanced materials and energy systems.
  • Proficiency in analytical techniques and hands-on testing.
  • Collaborative mindset, driving innovation through teamwork.
  • Dedication to sustainability and green technologies.

📑 Publications & Laboratory Experience

Maziar’s laboratory experience includes synthesizing and analyzing materials using cutting-edge methods. His publications focus on enhancing battery performance and exploring sustainable solutions for energy storage. His expertise spans academic research and industrial applications, bridging the gap between innovation and implementation.

🌟 A Visionary for a Sustainable Future

With a career rooted in innovation, Maziar Ashuri exemplifies the transformative power of advanced materials and energy storage systems. His contributions to electric vehicle technologies and sustainable solutions continue to pave the way for a greener, more efficient future.

📖Publications:

Paper Title: Engineering LiBH4-Based Materials for Advanced Hydrogen Storage: A Critical Review of Catalysis, Nanoconfinement, and Composite Design

  • Authors: Y Xu, Y Zhou, Y Li, M Ashuri, Z Ding
  • Journal: Molecules
  • Year: 2024

Paper Title: On the Electrochemical Properties of Carbon-Coated NaCrO2 for Na-Ion Batteries

  • Authors: Z Shi, Z Wang, LL Shaw, M Ashuri
  • Journal: Batteries
  • Year: 2023

Paper Title: Silicon as a potential anode material for Li-ion batteries: where size, geometry and structure matter

  • Authors: M Ashuri, Q He, LL Shaw
  • Journal: Nanoscale
  • Year: 2015

Paper Title: Improvement in physical and mechanical properties of aluminum/zircon composites fabricated by powder metallurgy method

  • Authors: H Abdizadeh, M Ashuri, P Tavakoli Moghadam, A Nouribahadory
  • Journal: Materials & Design
  • Year: 2011

Paper Title: Li2S encapsulated by nitrogen-doped carbon for lithium sulfur batteries

  • Authors: L Chen, Y Liu, M Ashuri, C Liu, LL Shaw
  • Journal: Journal of Materials Chemistry A
  • Year: 2014

 

International Research Awards on Fiberreinforced Polymer | Award Winner 2023

Sandra Cunha | Best Researcher Award Winner 2023

Sandra Cunha: Phase Change Materials

Academician/Research Scholar, Auxiliary Researcher,University of Minho.

congratulations to Sandra Cunha for clinching the Best Researcher Award at the International Research Awards on Fiber-Reinforced Polymer! Your groundbreaking work in Phase Change Materials has truly reshaped the landscape of this field. Your dedication and innovative contributions are inspiring and instrumental in advancing our knowledge of fiber-reinforced polymers. A well-deserved recognition for your exceptional achievements!

Professional Profiles:

Early Academic Pursuits

Sandra initiated her academic journey in Civil Engineering, delving into the nuances of cement products and later focusing on developing eco-friendly partition walls during her Master's program. Her academic foundation laid the groundwork for her dedication to sustainability in construction materials.

Professional Endeavors

With a PhD in Civil Engineering and a thesis concentrating on mortars with phase change materials, Sandra embarked on a prolific research career. Her work spans over a decade, involving extensive research in construction materials, sustainable practices, energy efficiency in buildings, circular economy, and waste reuse, specifically concentrating on integrating polymers into concrete and mortars.

Contributions and Research Focus

Her impressive portfolio comprises over 100 publications, including a patented invention, showcasing her expertise. Sandra's research, referenced in prestigious databases like ISI Webscience and Scopus, emphasizes the incorporation of innovative materials for enhanced construction methodologies.

Accolades and Recognition

Her scholarly contributions have been acknowledged through an h-index of 13 in both Scopus and Web of Science. Additionally, her roles as an editor, research member in significant projects, invited speaker at seminars, and her extensive involvement in conferences and journals attest to her influence in the academic realm.

Impact and Influence

Sandra's impact lies in reshaping sustainable construction practices. Her supervision of theses and contributions to projects like Sustainable Polymer-Cement Composites has significantly advanced the field, demonstrating her influence in eco-efficient construction materials.

Legacy and Future Contributions

Her legacy is marked by a commitment to eco-materials and sustainable practices. Sandra's ongoing dedication to research and collaborations ensures a lasting impact on future developments in eco-friendly construction methodologies, likely continuing to push the boundaries of sustainability in civil engineering.

Notable Publications:

Citations:

                   Citations         946       708
                    h-index           16          13
                   i10-index         21          18