Hamed Najafi-Ashtisni | TiO2| Inorganic Chemistry Excellence Award

Inorganic Chemistry Excellence Award

        Hamed Najafi-Ashtisn
Researcher Hamed Najafi-Ashtisni
Affiliation Velayat University
Country Iran
Scopus ID 56609222200
Documents 28
Citations 533
h-index 14
Subject Area TiO₂
Event International Research Chemistry Awards
ORCID 0000-0002-9977-8474

Hamed Najafi-Ashtisni

Institution: Velayat University, Iran

Hamed Najafi-Ashtisni is a researcher affiliated with Velayat University, Iran, whose scholarly activities focus on titanium dioxide (TiO₂), inorganic chemistry, nanomaterials, photocatalysis, and functional material development. According to the Scopus author profile, the researcher has produced 28 indexed publications, accumulated 533 citations, and achieved an h-index of 14, reflecting sustained academic productivity and measurable research influence within the field of inorganic chemistry.[1]

Abstract

Hamed Najafi-Ashtisni has established a research profile centered on inorganic chemistry, particularly titanium dioxide (TiO₂)-based materials and their scientific applications. His publications investigate synthesis methods, nanostructured materials, photocatalytic processes, surface modification, and functional inorganic compounds for environmental and technological applications. With 28 Scopus-indexed publications, 533 citations, and an h-index of 14, his scholarly record demonstrates consistent contributions to inorganic materials research. These achievements indicate sustained engagement in advancing fundamental understanding and practical applications of inorganic chemistry while supporting innovation in nanotechnology, catalysis, and advanced material sciences through internationally visible scientific publications.[1]

Keywords

Titanium Dioxide, TiO₂, Inorganic Chemistry, Nanomaterials, Photocatalysis, Semiconductor Materials, Surface Engineering, Crystal Structure, Oxide Materials, Material Synthesis, Environmental Chemistry, Catalytic Materials.[3]

Introduction

Inorganic chemistry supports the development of advanced materials used in energy, environmental remediation, catalysis, and industrial technologies. Titanium dioxide remains one of the most widely investigated inorganic compounds because of its optical, catalytic, and semiconductor properties. Research involving TiO₂ contributes to scientific progress through improved material performance and broader technological applications.[2]

Research Profile

The research profile of Hamed Najafi-Ashtisni demonstrates sustained academic productivity with internationally indexed publications and measurable citation performance. His research emphasizes inorganic material synthesis, TiO₂ nanostructures, photocatalytic mechanisms, and characterization techniques that support advancements in materials chemistry and applied inorganic science.[1]

Research Contributions

His published investigations contribute to understanding inorganic oxide materials through studies involving synthesis optimization, photocatalytic efficiency, crystal engineering, and material characterization. These contributions provide valuable scientific knowledge supporting environmental technologies, functional coatings, catalytic applications, and semiconductor material development within inorganic chemistry research.[2]

Publications

The Scopus database records 28 indexed publications authored or co-authored by Hamed Najafi-Ashtisni. These publications collectively address TiO₂ materials, inorganic nanostructures, photocatalytic systems, material synthesis, and related applications, demonstrating continuous scholarly engagement within internationally recognized scientific literature.[1]

Research Impact

A citation count exceeding five hundred and an h-index of fourteen indicate that the published work has received continued scholarly attention. These bibliometric indicators suggest that the research contributes to ongoing discussions in inorganic chemistry, nanotechnology, and advanced materials while supporting future investigations by the wider scientific community.[3]

Award Suitability

Based on documented publication output, citation metrics, and specialization in TiO₂-based inorganic materials, Hamed Najafi-Ashtisni demonstrates qualifications consistent with consideration for the International Research Chemistry Awards. The available scholarly evidence reflects recognized academic productivity, research continuity, and contributions to inorganic chemistry without implying award selection or endorsement.[4]

Conclusion

The documented academic record highlights sustained contributions to inorganic chemistry through research involving titanium dioxide materials and related technologies. Indexed publications, citation performance, and continued research activity collectively demonstrate meaningful scholarly engagement within the international materials and inorganic chemistry research community.[5]

External Links

References

  1. Elsevier. (n.d.). Scopus Author Details: Hamed Najafi-Ashtisni, Author ID 56609222200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56609222200
  2. Najafi-Ashtiani, H., & Ramzannezhad, A. (2026). The effect of stoichiometry on optical and electrochromic properties of TiOx by HiPIMS. Applied Surface Science, 729, 166276.
    https://doi.org/10.1016/j.apsusc.2026.166276
  3. Najafi-Ashtiani, H., Jing, F., McCulloch, D. G., & Akhavan, B. (2025). ITO-free silver-doped DMD structures: HiPIMS transparent-conductive nano-composite coatings for electrochromic applications. Applied Surface Science, 727, 165775.
    https://doi.org/10.1016/j.apsusc.2025.165775
  4. Ramzannezhad, A., Bahari, A., Hayati, A., & Najafi-Ashtiani, H. (2021). Magnetic nanobiosensors in detecting microalbuminuria (MAU), using Fe3O4 nanorods synthesized via microwave-assisted method. Materials Science and Engineering: B, 268, 115123.
    https://doi.org/10.1016/j.mseb.2021.115123
  5. International Research Chemistry Awards. (n.d.). International Research Chemistry Awards.
    https://researchchemistry.org

Mr. Jun Du | Materials Science | Industrial Chemistry Efficiency Award

Mr. Jun Du | Materials Science | Industrial Chemistry Efficiency Award

Mr. Jun Du | Nanchang University | China

Dr. Du Jun, a distinguished professor with a Doctorate in Materials Science and Engineering, has showcased an outstanding academic trajectory. His education spans Chemical Engineering (B.Sc.) and Physics (M.Sc.) from Nanchang University and a Ph.D. from Zhejiang University. This diverse academic background equips him with a multidisciplinary approach essential for driving innovation in industrial chemistry.

Professional Profile

Scopus

🎓 Educational Background

Dr. Du Jun laid the foundation for his career in materials science with a Bachelor’s Degree in Chemical Engineering from Nanchang University (1990–1994). He further expanded his academic expertise by earning a Master’s Degree in Physics (1997–2000) from the same university, showcasing his multidisciplinary approach to scientific challenges. He achieved the pinnacle of his academic pursuits with a Doctorate in Materials Science and Engineering from Zhejiang University (2003–2007), solidifying his expertise in the field.

🧑‍🏫 Professional Experience

Since 1994, Dr. Du has been devoted to teaching and research at the Department of Chemical Engineering, Nanchang University. Over the years, he has significantly contributed to the academic community, serving as a Master’s Program Director, where he guided numerous graduate students in advanced research. His career is marked by a commitment to innovative teaching practices and fostering excellence in chemical engineering education.

📚 Teaching Contributions

Dr. Du has been at the forefront of educational innovation, making a lasting impact through his initiatives. He directed the China University MOOC course and developed the online-offline first-class course Chemical Process in Jiangxi Province. His work on innovative teaching projects includes heading the virtual simulation experiment project Gas System and delivering lectures on the highly regarded course Chemical Thermodynamics.

Dr. Du has also contributed extensively to academic resources. He edited and published the textbook Chemical Engineering Computing and co-authored the third and fourth editions of Chemical Industry Design, a national planning textbook for higher education. Additionally, he spearheaded an industry-university cooperation project in 2021 and led an employment education project of the Ministry of Education in 2022, further advancing the integration of academia and industry.

🔬 Scientific Research Expertise

Dr. Du’s research focuses on one-dimensional semiconductor nanomaterials and low-integration solvent separation gases, addressing critical challenges in materials science. He has led or participated in five significant projects under the National Natural Science Foundation of China, contributing to groundbreaking advancements in the field.His prolific research output includes 32 SCI papers, with 6 published in SCI Zone 1 journals, demonstrating the high impact and quality of his work. Furthermore, he holds 8 national invention patents, underscoring his contributions to the practical applications of materials science.

🏅 Highlights and Achievements

Dr. Du Jun is celebrated as a trailblazer in materials science and chemical engineering. His unwavering dedication to teaching, research, and innovation has inspired students and peers alike. As a mentor, educator, and researcher, he remains committed to advancing chemical engineering education through pioneering methods, high-quality resources, and impactful research. His work continues to address real-world challenges, making a significant impact in the field.

Publications Top Noted📚

Efficient selection and reversible adsorption of sulfur dioxide by methylated polyethylenimide supported by porous carbon microspheres

Authors: Wang, S., Ma, J., Ye, Y., Peng, H., Du, J.

Journal: Separation and Purification Technology

Year: 2024

Preparation and photocatalytic performance of BiOCl nanosheet-TiO2 nanotube array composites

Authors: Liu, Y., You, M., Li, R., Du, J.

Journal: AIP Advances

Year: 2024

Highly selective capture of sulfur dioxide by low viscosity 1,2,4-triazole + [Emim]Cl deep eutectic solvents

Authors: Wang, L., Zhu, Y., Ye, Y., Ma, J., Du, J.

Journal: Separation and Purification Technology

Year: 2024

Synthesis of C/N-TiO2@MIL-100(Fe) for highly efficient photocatalytic degradation of tetracycline under visible light irradiation

Authors: Cao, F., You, M., Huang, L., Liao, H., Du, J.

Journal: Journal of Photochemistry and Photobiology A: Chemistry

Year: 2024

Preparation and Photocatalytic Properties of ZIF-8@TiO2 Composite Photocatalysts

Authors: Tu, S., Zhong, R., Zhang, C., Wu, W., Du, J.

Journal: Cailiao Daobao/Materials Reports

Year: 2024