Maziar Ashuri | Materials Science | Best Review Article Award

Dr. Maziar Ashuri | Materials Science | Best Review Article Award

Dr. Maziar Ashuri, Illinois Institute of Technology, United States

Dr. Maziar Ashuri is a distinguished materials scientist specializing in advanced materials and energy storage/conversion systems. He has expertise in developing and optimizing lithium-ion and metal-ion batteries, with applications spanning electric vehicles, renewable energy, and industrial systems.

Education:

Dr. Maziar Ashuri is a distinguished researcher and academic with extensive expertise in materials science and engineering. He earned his Doctor of Philosophy (Ph.D.) in Materials Science and Engineering from the Illinois Institute of Technology, Chicago, Illinois, USA, between August 2013 and May 2019. During his doctoral studies, he focused on synthesizing high-performance silicon anodes and surface-modified NMC cathodes for lithium-ion batteries, contributing significantly to advancements in energy storage technologies. Prior to his Ph.D., Dr. Ashuri completed a Master of Science (M.S.) in Biomedical Engineering with a specialization in Biomaterials at Amirkabir University of Technology in Tehran, Iran, from September 2009 to June 2011. His master’s research involved evaluating the mechanical and biological properties of hydroxyapatite and sol-gel-derived bioactive glass particle composites. Dr. Ashuri began his academic journey with a Bachelor of Science (B.S.) in Metallurgical Engineering, specializing in Extractive Metallurgy, from the University of Tehran, Iran, between September 2003 and September 2008. His undergraduate research focused on preparing aluminum-zircon composites using the powder metallurgy method. Dr. Ashuri’s robust academic foundation and diverse research experiences position him as a leader in his field, particularly in the development of advanced materials for energy and biomedical applications.

Professional Profiles:

Scopus Profile

Orcid Profile

Professional Experience:

Dr. Ashuri has extensive professional experience, currently serving as an EV Battery System R&D Senior Engineer at Hyundai America Technical Center, Inc. He focuses on EV charging interoperability, material evaluations for battery packs, and feasibility analyses of new battery system technologies. His previous roles include contributing to cutting-edge research in materials science, energy technologies, and battery systems, underscored by a strong publication record. Dr. Ashuri is proficient in analytical techniques such as SEM, XRD, TGA, DSC, CV, and EIS, applying these methods to enhance energy storage and material performance. His research interests include next-generation battery materials, energy storage optimization, and sustainable solutions.

Research Interests:

Dr. Maziar Ashuri’s research interests are centered on the development and optimization of advanced materials for energy storage applications, particularly in the realm of lithium-ion and sodium-ion batteries. His work encompasses the design and synthesis of innovative silicon/carbon hybrid structures, including carbon-coated hollow silicon nanospheres and silicon microreactors, engineered to enhance anode performance. He is also deeply involved in advancing cathode materials, with extensive studies on nanoscale lithium cobalt oxide (LCO) and lithium nickel manganese cobalt oxide (NMC), employing surface modification techniques like phosphoric acid treatment, alumina coating, and graphene wrapping to improve their electrochemical properties. Furthermore, Dr. Ashuri has explored novel sulfur/carbon composites with specialized coatings for lithium/sulfur batteries and introduced transition metal-free cathode materials, such as lithium boron nitride and sodium boron nitride. His interests extend to the development of red phosphorus/carbon composites with engineered voids as promising anode materials for sodium-ion batteries. Through a combination of advanced electrochemical methodologies and comprehensive structural analyses, Dr. Ashuri aims to elucidate the kinetic, thermodynamic, and failure mechanisms of battery materials, ultimately contributing to the advancement of energy storage technologies.

Awards and Achievements:

Safety Improvement of the Year – Advanced Materials Technology (AMT) Division, Caterpillar Inc., Dec. 2022

MMAE Outstanding Teaching Assistant Award, Apr. 2019

Publons™ Peer Review Award, Sep. 2018

Carl Samans Scholarship, Apr. 2018

MMAE Student Research Poster Competition – 2nd Place (PhD Category), Mar. 2017

MMAE Student Research Poster Competition – 2nd Place (PhD Category), Apr. 2014

Graduate Dean Scholarship, Illinois Institute of Technology, Aug. 2013

Seward, Ratcliffe, and Galloway Foundation Fellowship, Iowa State University, Aug. 2012

Publications:

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

Shi, Z., Wang, Z., Shaw, L.L., Ashuri, M.
Batteries, 2023, 9(9), 433
Citations: 0

Silicon Oxides for Li-Ion Battery Anode Applications: Toward Long-Term Cycling Stability

Ashuri, M., He, Q., Shaw, L.L.
Journal of Power Sources, 2023, 559, 232660
Citations: 37

Silicon Microreactor as a Fast Charge, Long Cycle Life Anode with High Initial Coulombic Efficiency Synthesized via a Scalable Method

He, Q., Ashuri, M., Liu, Y., Liu, B., Shaw, L.L.
ACS Applied Energy Materials, 2021, 4(5), pp. 4744–4757
Citations: 15

Rational Design of Titanium Oxide-Coated Dual Core–Shell Sulfur Nanocomposite Cathode for Highly Stable Lithium–Sulfur Batteries

Dunya, H., Ashuri, M., Yue, Z., Segre, C.U., Mandal, B.K.
Journal of Physics and Chemistry of Solids, 2021, 149, 109791
Citations: 17

Investigation Towards Scalable Processing of Silicon/Graphite Nanocomposite Anodes with Good Cycle Stability and Specific Capacity

Ashuri, M., He, Q., Liu, Y., Shaw, L.L.
Nano Materials Science, 2020, 2(4), pp. 297–308
Citations: 13

Improving Cycle Stability of Si Anode Through Partially Carbonized Polydopamine Coating

Ashuri, M., He, Q., Shaw, L.L.
Journal of Electroanalytical Chemistry, 2020, 876, 114738
Citations: 22

Synthesis of a Very High Specific Surface Area Active Carbon and Its Electrical Double-Layer Capacitor Properties in Organic Electrolytes

Yue, Z., Dunya, H., Ashuri, M., Segre, C.U., Mandal, B.K.
ChemEngineering, 2020, 4(3), pp. 1–15, 43
Citations: 41

MnO₂-Coated Dual Core–Shell Spindle-Like Nanorods for Improved Capacity Retention of Lithium–Sulfur Batteries

Dunya, H., Ashuri, M., Alramahi, D., Segre, C.U., Mandal, B.K.
ChemEngineering, 2020, 4(2), pp. 1–11, 42
Citations: 11

A New Graphitic Carbon Nitride-Coated Dual Core–Shell Sulfur Cathode for Highly Stable Lithium–Sulfur Cells

Dunya, H., Yue, Z., Ashuri, M., Segre, C.U., Mandal, B.K.
Materials Chemistry and Physics, 2020, 246, 122842
Citations: 15

Enhancement in Electrochemical Performance of Lithium–Sulfur Cells Through Sulfur Encapsulation in Hollow Carbon Nanospheres Coated with Ultra-Thin Aluminum Fluoride Layer

Ashuri, M., Dunya, H., Yue, Z., Segre, C.U., Mandal, B.K.
ChemistrySelect, 2019, 4(43), pp. 12622–12629
Citations: 12

Conclusion:

Dr. Maziar Ashuri possesses the academic credentials, research achievements, and professional recognition that make him a strong contender for the Research for Best Review Article Award. His history of excellence in peer review and interdisciplinary research aligns well with the award’s criteria. To solidify his case, emphasizing his specific contributions to review literature and highlighting the impact of his work could further enhance his suitability.

 

 

 

 

 

Ali Haider | Materials Technology | Best Researcher Award

Dr. Ali Haider | Materials Technology | Best Researcher Award

PhD student at  National University of Sciences & Technology, Pakistan

Dr. Ali Haider is a distinguished metallurgical engineer with an extensive background in research, education, and project management. He earned his PhD in Manufacturing Engineering from the National University of Engineering & Technology, Islamabad, and holds a Master’s degree in Metallurgical Engineering from NED University of Engineering & Technology, Karachi, along with a Bachelor’s degree in Metallurgical Engineering & Materials Sciences from the University of Engineering & Technology, Lahore. Currently, Dr. Haider is associated with NUST University in Islamabad, where he has been contributing to the production and research of functional alloys since 2019. His previous experience includes a significant tenure at the Ibn-e-Sina Institute in Islamabad from 2003 to 2019, where he was involved in project management and the commissioning of manufacturing setups. He also served as a faculty member at Pakistan Steel, Karachi, from 1996 to 2002, where he was engaged in teaching and research at the Institute of Materials Sciences & Research. Dr. Haider’s research interests are diverse and encompass project management, installation and commissioning of metallurgical and mechanical equipment, and the development of dental casting alloys, magnetic alloys, and other specialized materials. His work in powder metallurgy, thermomagnetic treatments, heat treatments, steel rolling, and the characterization of engineering materials has contributed significantly to advancements in these fields. He is actively involved in research and development, focusing on materials development for various industrial applications.

Professional Profiles:

📚 Education:

Dr. Ali Haider earned his PhD in Manufacturing Engineering from the National University of Engineering & Technology in Islamabad, achieving an impressive GPA of 3.92 on a 4.0 scale. Prior to this, he completed his M.Sc. in Metallurgical Engineering from NED University of Engineering & Technology in Karachi, where he earned a GPA of 3.88 on a 4.0 scale. His foundational education in the field was established with a B.Sc. in Metallurgical Engineering & Materials Sciences from the University of Engineering & Technology in Lahore, where he secured 82% marks. Dr. Haider’s earlier education includes a Higher Secondary School Certificate (F.Sc.) from S.E. College in Bahawalpur, with 69.70% marks, and a Secondary School Certificate (Matric) from Govt. High School Khanpur in Rahim Yar Khan, Pakistan, where he obtained 71.2% marks. Additionally, he holds a Diploma in Information Technology from Sindh Trade Testing Board in Karachi, where he scored 74.5% marks. This diverse and robust educational background has equipped Dr. Haider with a comprehensive understanding of both theoretical and practical aspects of his field.

Professional Experience:

Dr. Ali Haider has been contributing to the field of metallurgical engineering for several decades, showcasing his expertise across various prestigious institutions. Since 2019, he has been associated with NUST University in Islamabad, focusing on the production and research of functional alloys. His work here highlights his commitment to advancing the knowledge and application of materials science. Before joining NUST, Dr. Haider spent 16 years at the Ibn-e-Sina Institute in Islamabad, from 2003 to 2019. During this period, he played a pivotal role in project management and the commissioning of manufacturing setups. His responsibilities included overseeing complex projects and ensuring the successful implementation of advanced manufacturing processes. Dr. Haider’s early career was marked by his tenure at Pakistan Steel in Karachi, where he served as a Faculty Member at the Institute of Materials Sciences & Research from 1996 to 2002. In this role, he was involved in teaching and research, contributing to the academic and professional development of students in the field of materials science. Overall, Dr. Ali Haider’s extensive experience encompasses various facets of metallurgical engineering, including academic research, project management, and practical applications in manufacturing and materials development. His career reflects a deep commitment to advancing the field and nurturing the next generation of engineers and researchers.

Research Interests:

Dr. Ali Haider’s research interests are deeply rooted in the field of metallurgical and materials engineering, with a particular focus on project management, installation, and commissioning of metallurgical and mechanical equipment. He has a strong interest in the metallurgy and manufacturing of dental casting alloys and magnetic alloys, highlighting his commitment to advancing these specialized areas. His expertise extends to powder metallurgy, where he explores the production and application of metal powders and their composites. Dr. Haider is also deeply engaged in thermomagnetic treatments, which involve the use of thermal and magnetic fields to alter the properties of materials for enhanced performance. Heat treatment processes, including the study of the effects of heat on the structure and properties of materials, are a significant part of his research. He is involved in steel rolling, a process critical for shaping and improving the mechanical properties of steel products. Additionally, Dr. Haider focuses on the characterization of engineering materials, aiming to understand and improve material properties through various analytical techniques. Dr. Haider is actively involved in research and development (R&D) on materials development, striving to innovate and improve materials for various industrial applications. His comprehensive research portfolio reflects his dedication to advancing the field of metallurgical engineering and contributing to the development of new and improved materials.

 

📚Publications :

Title: Ni-Cr-Mo alloy for dental prostheses with low melting temperature

Authors: A. Haider, O.F. Azam, M. Talha, S. Akhtar

Journal: Key Engineering Materials

Volume: 778

Pages: 301-305

Citations: 5

Year: 2018

Title: Effect of cerium on mechanical, metallurgical and biomedical properties of NiCrMoB dental alloy

Authors: A. Haider, S.H.I. Jaffery, A.N. Khan, N. Qadir, X. Jing

Journal: Journal of Materials Research and Technology

Volume: 24

Pages: 5082-5093

Citations: 3

Year: 2023

Title: Development of NdFeB magnet through hydrogen decrepitation

Authors: S. Akhtar, A. Haider, Z. Ahmad, M. Farooque

Journal: Key Engineering Materials

Volume: 442

Pages: 263-267

Citations: 3

Year: 2010

Title: Processing of silicon added Fe-Cr-Co hard magnetic alloy by two stage thermomagnetic treatment technique

Authors: A. Haider, S.H.I. Jaffery, A.N. Khan, M. Khan

Journal: Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture

Citations: 2

Year: 2023

Title: Mechanical Characteristics of Boron and Cerium Added NiCrMo Non-Precious Dental Casting Alloys

Authors: A. Haider, S.H.I. Jaffery, A.N. Khan, N. Ulqadir, X. Jing

Journal: Materials Transactions

Volume: 64 (4)

Pages: 869-876

Citations: 2

Year: 2023

Title: Effect of Thermal Treatment on Coercivity of SmCo5 Sintered Magnets

Authors: A. Haider, S. Akhtar, Z. Ahmad, M. Farooque

Journal: Key Engineering Materials

Volume: 442

Pages: 250-254

Citations: 2

Year: 2010

Title: Characterization of NiCrMo dental restoration alloy

Authors: A. Haider, O.F. Azam, M. Talha, S. Akhtar

Journal: Key Engineering Materials

Volume: 875

Pages: 373-378

Citations: 1

Year: 2021

Title: Processing and Characterization of Beryllium Free Ni-Cr-Mo Biomaterial Doped with Cerium, Boron and Titanium for Dental Applications

Authors: A. Haider, S.H.I. Jaffery, A.N. Khan, S.I. Butt, X. Jing

Journal: Journal of Materials Research and Technology

Year: 2024

Title: Optimization of manufacturing parameters for Fe–25Cr–13Co magnetic alloy by using Taguchi technique

Authors: A. Haider, S.H.I. Jaffery, A.N. Khan, N. Ulqadir

Journal: The International Journal of Advanced Manufacturing Technology

Volume: 126 (3)

Pages: 1363

Year: 2023

Title: Electromagnetic flat sheet forming by spiral type actuator coil

Authors: S. Akbar, M.A. Aleem, M.N. Sarwar, A.U. Zillohu, M.S. Awan, A. Haider, …

Journal: IOP Conference Series: Materials Science and Engineering

Volume: 146 (1)

Article: 012054

Year: 2016