Zahra-Sadat Seyedraoufi | Materials Science | Best Researcher Award

Assist. Prof. Dr. Zahra-Sadat Seyedraoufi | Materials Science | Best Researcher Award

Assist. Prof. Dr. Zahra-Sadat Seyedraoufi | Karaj Islamic Azad University | Iran

Assist. Prof. Dr. Zahra-Sadat Seyedraoufi is a distinguished researcher in Materials Engineering, specializing in corrosion science, nanostructure synthesis, surface engineering, and biomaterials. With advanced degrees from the Iran University of Science and Technology, she has published over 70 scientific papers, authored books, and holds patents reflecting her innovative contributions. Her work spans industrial applications and academic advancements, including scaffolds and gas turbine materials. A dedicated mentor and educator, Dr. Seyedraoufi continues to advance scientific knowledge while inspiring future researchers in her field.

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Scopus
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Early Academic Pursuits

Dr. Zahra-Sadat Seyedraoufi began her academic journey in Materials Engineering at the Iran University of Science and Technology, completing her Bachelor’s degree in Extractive Metallurgy with a focus on the synthesis of Ni-Al intermetallic compounds. She pursued her Master’s degree in Metallic Materials, where her thesis centered on the fabrication and investigation of Cu-Al₂O₃ nanocomposites via thermochemical methods. Her academic excellence continued during her Ph.D. in Materials Engineering, specializing in the development of biodegradable Mg-Zn scaffolds with nano HAP coatings for biomedical applications. These early research endeavors laid the foundation for her lifelong focus on biomaterials, corrosion engineering, and advanced metallurgy.

Professional Endeavors

Professionally, Dr. Seyedraoufi has served as an Assistant Professor at the Department of Materials Engineering, Islamic Azad University, Karaj Branch since 2016, where she has taught heat treatment, powder metallurgy, corrosion science, surface engineering, and advanced materials. She has also held academic roles at the Abadan University of Petroleum Industry and the Iran University of Science and Technology, guiding students through both theory and laboratory practices. Beyond academia, she has industry experience as Quality Control Manager at Barzegar Industrial Workshop and worked in advanced materials research at the Gas Turbine Research Institute, contributing to national-level engineering projects.

Contributions and Research Focus

Her research contributions span corrosion, powder metallurgy, surface engineering, biomaterials, nanostructures, and heat treatment processes. She has played a central role in national research projects, including the development of gas turbines and the design of key technologies for aircraft engines. Her applied research on the extraction of precious metals from industrial byproducts, coupled with innovations in biodegradable scaffolds, demonstrates her versatility in both applied engineering and biomedical materials. Dr. Seyedraoufi’s publications cover over 70 high-impact journal papers, addressing scaffold biocompatibility, nanostructured coatings, corrosion resistance, and superalloy rejuvenation treatments.

Impact and Influence

Dr. Seyedraoufi’s work has had a significant impact on both academic research and industry practices. Her studies on biodegradable magnesium-based scaffolds have contributed to advancements in orthopedic implants, while her collaborations in gas turbine technology supported national industrial progress. She has guided numerous students and young researchers, fostering the next generation of materials scientists. By bridging theoretical research and industrial application, she has established herself as a key influencer in sustainable material development and engineering innovations.

Research Skills

Her research skills reflect strong expertise in synthesis of nanostructures, powder metallurgy techniques, surface engineering methods, corrosion analysis, biomaterial design, and heat treatment optimization. She is proficient in advanced laboratory techniques such as electrodeposition, micro-arc oxidation, mechanical alloying, electrochemical analysis, and magnetic sputtering. She has also demonstrated excellence in project management, interdisciplinary collaboration, and research supervision, ensuring high-quality outcomes in both individual and team-based studies.

Awards and Honors

Dr. Seyedraoufi has received national recognition for her contributions to engineering research. She played an instrumental role in projects that were honored with a National Award for Gas Turbine Development, reflecting her ability to contribute to strategic national technologies. In addition, her patents on biodegradable scaffolds and gold extraction methods highlight her innovation. Her authored books on titanium alloys, magnesium alloys, and superalloys have further solidified her academic stature.

Academic Citations

Her Google Scholar profile indicates a substantial record of citations, reflecting the influence and recognition of her work within the global academic community. Her papers on biodegradable Mg-Zn scaffolds, nanostructured coatings, and corrosion behavior are highly referenced, signifying her contribution to cutting-edge materials science research. Her SCOPUS and Web of Science indexing ensures her work reaches a wide international audience, strengthening her academic visibility.

Legacy and Future Contributions

Dr. Seyedraoufi’s legacy lies in her pioneering contributions to biodegradable scaffolds, surface engineering, and corrosion-resistant materials. Looking forward, she is expected to further advance sustainable materials development, focusing on eco-friendly coatings, biomedical materials, and advanced alloys for aerospace and energy applications. Her mentorship will continue to shape future researchers, while her publications and patents will serve as a lasting reference for both academia and industry. By integrating fundamental science with applied research, she is building a sustainable and innovative future for materials engineering.

Publications Top Notes

Title: Synthesis, Microstructure and Mechanical Properties of Porous Mg-Zn Scaffold
Authors: Z.S. Seyedraoufi; S. Mirdamadi
Journal: Journal of the Mechanical Behavior of Biomedical Materials, 21, 1–8
Year: 2013

Title: Synthesis of biphasic calcium phosphate containing nanostructured films by micro arc oxidation on magnesium alloy
Authors: A. Seyfoori; S. Mirdamadi; Z.S. Seyedraoufi; A. Khavandi; M. Aliofkhazraei
Journal: Materials Chemistry and Physics, 142(1), 87–94
Year: 2013

Title: Effects of pulse electrodeposition parameters and alkali treatment on the properties of nano hydroxyapatite coating on porous Mg–Zn scaffold for bone tissue engineering application
Authors: Z.S. Seyedraoufi; S. Mirdamadi
Journal: Materials Chemistry and Physics, 148(3), 519–527
Year: 2014

Title: In vitro biodegradability and biocompatibility of porous Mg-Zn scaffolds coated with nano hydroxyapatite via pulse electrodeposition
Authors: Z.S. Seyedraoufi; S. Mirdamadi
Journal: Transactions of Nonferrous Metals Society of China, 25(12), 4018–4027
Year: 2015

Title: Biodegradable magnesium alloy coated with TiO₂/MgO two-layer composite via magnetic sputtering for orthopedic applications: A study on the surface characterization, corrosion …
Authors: M. Samiee; M. Hanachi; Z.S. Seyedraoufi; M.J. Eshraghi; Y. Shajari
Journal: Ceramics International, 47(5), 6179–6186
Year: 2021

Title: Effect of solution temperature of rejuvenation heat treatment on the stability of γ′ precipitates in Ni-base superalloy IN738LC during long-term heating
Authors: Y. Shajari; Z.S. Seyedraoufi; A. Alizadeh; S.H. Razavi; M. Porhonar; …
Journal: Materials Research Express, 6(12), 126571
Year: 2019

Title: Investigation of inhibitive effects of 2-mercaptobenzimidazole (2-MBI) and polyethyleneimine (PEI) on pitting corrosion of austenitic stainless steel
Authors: A. Farjami; H. Yousefnia; Z.S. Seyedraoufi; Y. Shajari
Journal: Journal of Bio- and Tribo-Corrosion, 6(3), 96
Year: 2020

Title: The effect of benzotriazole gradual change on the corrosion performance of nanocomposite multilayer self-healing coating based on Titania-Alumina-Benzotriazole on AA7075
Authors: M. Farahani; H. Yousefnia; Z.S. Seyedraoufi; Y. Shajari
Journal: Ceramics International, 45(13), 16584–16590
Year: 2019

Title: The effect of heat treatment on wear characteristics of nanostructure Ni–B coating on marine bronze
Authors: Y. Shajari; A. Alizadeh; Z.S. Seyedraoufi; S.H. Razavi; H. Shamakhi
Journal: Materials Research Express, 6(10), 105040
Year: 2019

Title: Diamond-like carbon (DLC) coating on graphite: Investigating the achievement of maximum wear properties using the PECVD method
Authors: M. Samiee; Z.S. Seyedraoufi; M. Abbasi; M.J. Eshraghi; V. Abouei
Journal: Ceramics International, 50(12), 21439–21450
Year: 2024

Title: The effect of time and temperature of solutionizing heat treatment on γ′ characterization in a Ni-base superalloy
Authors: Y. Shajari; S.H. Razavi; Z.S. Seyedraoufi; M. Samiee
Journal: Metallography, Microstructure, and Analysis, 10(4), 441–447
Year: 2021

Title: Comparative study of solution heat treatment of IN738LC superalloy in conventional conditions and salt bath
Authors: Y. Shajari; S.H. Razavi; Z.S. Seyedraoufi
Journal: Journal of Materials Engineering and Performance, 31(3), 2525–2541
Year: 2022

Title: Electrochemical investigation of dissimilar joint of pure Cu to AISI 410 martensitic stainless steel fabricated by explosive welding
Authors: S. Najafi; M.R. Khanzadeh; H. Bakhtiari; Z.S. Seyedraoufi; Y. Shajari
Journal: Surface Engineering and Applied Electrochemistry, 56(6), 675–683
Year: 2020

Conclusion

Assist. Prof. Dr. Zahra-Sadat Seyedraoufi has established herself as a highly accomplished researcher in materials engineering, with notable contributions to biomaterials, nanostructured coatings, corrosion science, and advanced alloys. Her impactful publications, patents, and innovations reflect both academic excellence and industrial relevance. Through her dedication to research, teaching, and mentorship, she continues to inspire future scientists while expanding the frontiers of materials science. With her strong record of achievements, Dr. Seyedraoufi stands out as a valuable contributor to global scientific progress.

Paul Follansbee | Materials Science | Best Researcher Award

Dr. Paul Follansbee| Chemistry | Best Researcher Award

Dr Paul Follansbee, Saint Vincent College, United States

Paul S. Follansbee is a renowned materials scientist 🏅 with expertise in deformation kinetics, constitutive behavior, and materials processing. With over 20 years in research, 15 years in technical management, and 12 years in academia, he has significantly contributed to engineering education 📚 at Saint Vincent College. His groundbreaking work in state-variable deformation modeling and numerous publications 📝 continue to influence the field. As a Professor Emeritus, he remains dedicated to mentorship, innovation, and scientific excellence. 🌟

🌟 Professional Profile

Scopus Profile

Early Academic Pursuits 🎓

Paul S. Follansbee’s academic journey began with a strong foundation in materials science and engineering. His passion for understanding the fundamental principles of deformation kinetics and constitutive behavior led him to pursue advanced studies in metallurgy. His early academic engagements included a three-month sabbatical at the University of California, San Diego, where he collaborated with Professor Sia Nemat Nasser and presented a seminar series on deformation modeling. This phase of his career set the stage for his future contributions to both research and education.

Professional Endeavors 🏛️

With over 20 years in technical research and development, 15 years in technical management, and 12 years in academia, Dr. Follansbee has played a pivotal role in engineering education. At Saint Vincent College, he developed and taught multiple engineering and materials science courses, initiated an Introduction to Engineering course, and established a Capstone Research Program. His leadership extended to external advisory committees at Carnegie Mellon University, Washington State University, and Saint Francis University.

Contributions and Research Focus On Materials Science 🔬

Dr. Follansbee’s research has centered on dynamic plastic constitutive behavior of metals, deformation modeling, and materials characterization. His work has been instrumental in developing state-variable models to predict material behavior under various conditions. Notably, his 1988 publication in Acta Metallurgica on deformation modeling in copper remains widely cited. His contributions to technical advancements in LANL, General Electric, and Howmet Research Corporation further solidified his status as a thought leader in the field.

Impact and Influence 🌍

His leadership roles at Los Alamos National Laboratory (LANL), where he managed teams of up to 500 engineers and scientists, influenced key projects in materials science, nuclear weapons components, and government-funded R&D. His tenure at GE Corporate Research and Development Center led to innovations in spray forming, niobium-silicide-based alloys, and thermal barrier coatings. Through strategic planning, he ensured the alignment of research programs with business and national interests.

Academic Citations 📚

Dr. Follansbee’s contributions to materials science and deformation modeling have garnered widespread academic recognition. His highly cited 1988 paper continues to influence researchers worldwide. His research has been published in top journals like Metallurgical and Materials Transactions A, ASME Journal of Materials Engineering Technology, and Materials Science and Applications. His 490-page textbook, “Fundamentals of Strength”, encapsulates decades of research and serves as a critical resource for students and professionals.

Awards and Honors 🏆

His outstanding work has earned him accolades such as the Best Paper Award at the TMS Annual Meeting and leadership positions in numerous academic and industrial committees. His efforts in securing laboratory equipment donations and establishing educational programs at Saint Vincent College have left a lasting impact on engineering education.

Legacy and Future Contributions 🔝

Even in retirement, Dr. Follansbee remains engaged in research and mentorship. His dedication to mentoring students, developing laboratory courses, and advancing engineering education ensures that his influence continues to shape future generations of scientists and engineers. His legacy as an innovator, educator, and researcher remains firmly embedded in the field of materials science.

📚Publications Top Notes

📄 Article: Development and Application of an Internal State Variable Constitutive Model for Deformation of Metals

📖 Book Chapter: High-Strain-Rate Deformation of FCC Metals and Alloys


📄 Article: MTS Model Application to Materials Not Starting in the Annealed Condition 
🔢 Citations: 2

📖 Book Chapter: A Constitutive Law for Metal Deformation


📖 Book Chapter: Application of MTS Model to Nickel-Base Superalloys 
🔢 Citations: 1

📖 Book Chapter: Data Analysis: Deriving MTS Model Parameters

Jing Wang | Materials Science | Best Researcher Award

Dr. Jing Wang | Materials Science | Best Researcher Award

Dr. Jing Wang, Peking University, China

Dr. Jing Wang is an Associate Researcher and Master’s Supervisor at the School of Pharmaceutical Sciences, Peking University, China. A distinguished scientist, she has published 14 impactful research papers as the first author or corresponding author in renowned journals, including Nature Communications, Advanced Materials, and Journal of the American Chemical Society. Her research focuses on innovative methodologies in pharmaceutical sciences, materials chemistry, and theranostics, significantly influencing these fields. With her dedication to advancing science and mentoring future researchers, Dr. Wang continues to contribute groundbreaking work that addresses critical challenges in healthcare and interdisciplinary research.

Author Profile

Orcid Profile

📘EARLY ACADEMIC PURSUITS:

Dr. Jing Wang embarked on her academic journey with a deep-seated passion for pharmaceutical sciences. Her foundational studies laid the groundwork for her expertise, paving the way for her to contribute meaningfully to the field. Her academic excellence and commitment to learning were evident early on, earning her opportunities at prestigious institutions, culminating in her role at Peking University.

🏛️PROFESSIONAL ENDEAVORS:

As an Associate Researcher and Master’s Supervisor at the School of Pharmaceutical Sciences, Peking University, Dr. Wang plays a dual role as a dedicated educator and a prolific researcher. She mentors aspiring researchers, guiding them through complex scientific inquiries, and actively contributes to cutting-edge pharmaceutical research that addresses global challenges.

🔬CONTRIBUTIONS AND RESEARCH FOCUS ON MATERIALS SCIENCE:

In recent years, Dr. Wang has published 14 groundbreaking research papers as the first author or corresponding author. Her work has appeared in world-renowned journals such as Nature Communications, Advanced Materials, Journal of the American Chemical Society (JACS), Theranostics, and Analytical Chemistry. Her research spans a broad spectrum, focusing on innovative methodologies, material science applications in medicine, and novel therapeutic strategies.

🌍IMPACT AND INFLUENCE:

Dr. Wang’s contributions have had a profound impact on the pharmaceutical sciences community. Her work is frequently cited and serves as a foundation for further research in areas like theranostics and analytical chemistry. By addressing pressing issues in healthcare and medical technology, her findings have the potential to influence patient outcomes and industrial practices.

📚ACADEMIC CITES:

Dr. Wang’s publications are not just numerous but also impactful, as reflected by citations in other high-impact journals. This demonstrates her influence as a thought leader and her ability to advance knowledge in pharmaceutical sciences, materials chemistry, and interdisciplinary fields.

🌟LEGACY AND FUTURE CONTRIBUTIONS:

Dr. Wang’s legacy lies in her ability to merge academic excellence with meaningful scientific contributions. As she continues her journey, she is poised to make even greater strides in her research, inspire future generations of scholars, and contribute to transformative innovations in pharmaceutical sciences.

🏆CONCLUSION:

Dr. Jing Wang exemplifies excellence in research and education through her significant contributions to pharmaceutical sciences. With 14 impactful publications in prestigious journals, her work advances innovative methodologies and interdisciplinary applications, addressing critical challenges in healthcare and science. As an Associate Researcher and Master’s Supervisor at Peking University, she not only drives groundbreaking research but also mentors the next generation of scholars. Dr. Wang’s dedication, expertise, and influence have positioned her as a leading figure in her field, ensuring her legacy as a transformative force in pharmaceutical and materials science. Her continued endeavors promise further groundbreaking achievements.

TOP NOTABLE PUBLICATIONS

📘 In situ analysis of nanoparticle soft corona and dynamic evolution
Authors: Didar Baimanov, Wang Jing, Zhang J, Liu K, Yalin Cong, Shi X, Zhang X, Yu-Feng Li, Xiumin Li, Qiao R et al.
Year: 2022

🧪 Role of tannic acid against SARS-CoV-2 cell entry by targeting the interface region between S-protein-RBD and human ACE2
Authors: Chen X, Wang Z, Wang J, Yao Y, Wang Q, Huang J, Xiang X, Zhou Y, Xue Y, Li Y et al.
Year: 2022

🔬 Size- and surface chemistry-dependent pharmacokinetics and tumor accumulation of engineered gold nanoparticles after intravenous administration
Authors: Wang J, Bai R, Yang R, Liu J, Tang J, Liu Y, Li J, Chai Z, Chen C
Year: 2022

🏥 Bioorthogonal SERS Nanotags as a Precision Theranostic Platform for in Vivo SERS Imaging and Cancer Photothermal Therapy
Authors: Wang J, Liang D, Jin Q, Feng J, Xinjing Tang
Year: 2020

🩺 Multicolor Cocktail for Breast Cancer Multiplex Phenotype Targeting and Diagnosis Using Bioorthogonal Surface-Enhanced Raman Scattering Nanoprobes
Authors: Wang J, Liang D, Feng J, Xinjing Tang
Year: 2019

💊 Gd-Hybridized Plasmonic Au-Nanocomposites Enhanced Tumor-Interior Drug Permeability in Multimodal Imaging-Guided Therapy
Authors: Wang J, Liu J, Liu Y, Wang L, Cao M, Ji Y, Wu X, Xu Y, Bai B, Qing Robert Miao et al.
Year: 2016

💡 Near infrared laser-induced targeted cancer therapy using thermoresponsive polymer encapsulated gold nanorods
Authors: Zhenjiang Zhang, Wang J, Nie X, Wen T, Ji Y, Wu X, Zhao Y, Chunying Chen
Year: 2014

🛠 Near-infrared light-mediated nanoplatforms for cancer thermo-chemotherapy and optical imaging
Authors: Zhenjiang Zhang, Wang J, Chunying Chen
Year: 2013

🧬 Nano-bio effects: interaction of nanomaterials with cells
Authors: Cheng LC, Jiang X, Wang J, Chunying Chen, Ru-Shi Liu
Year: 2013

Gold nanorods based platforms for light-mediated theranostics
Authors: Zhenjiang Zhang, Wang J, Chunying Chen
Year: 2013

🌟 Mesoporous silica-coated gold nanorods as a light-mediated multifunctional theranostic platform for cancer treatment
Authors: Zhenjiang Zhang, Wang L, Wang J, Jiang X, Li X, Hu Z, Ji Y, Wu X, Chunying Chen
Year: 2012