Abolfazl Mozaffari | Nano Electrospun Scaffolds | Innovative Practices in Academia Award

Dr. Abolfazl Mozaffari | Nano Electrospun Scaffolds | Innovative Practices in Academia Award

Assistant professor at Azad university Yazd branch, Iran

Dr. Abolfazl Mozaffari is a distinguished researcher and academic specializing in [Field]. With extensive experience in [Research Domains], he has made significant contributions to [Key Achievements]. His work bridges the gap between fundamental science and practical applications, particularly in [Industry or Medical Applications]. As a dedicated scholar, he has published extensively in peer-reviewed journals, participated in major research projects, and mentored students in cutting-edge scientific advancements.

Publication Profile

Google Scholar

Educational Details

Dr. Abolfazl Mozaffari holds a Ph.D. in [Field of Study] from [University Name], where he focused on [Ph.D. Research Topic]. He earned his Master’s degree in [Field] from [Institution], specializing in [Master’s Research Area]. His undergraduate studies in [Relevant Field] were completed at [University Name], laying the foundation for his expertise in [Key Subject].

Professional Experience

Dr. Mozaffari has held key academic and research positions in leading institutions. He currently serves as a [Current Position] at [Institution], where he is actively involved in [Research/Teaching Areas]. Previously, he was a [Previous Role] at [Previous Institution], contributing to advancements in [Relevant Research Field]. His professional journey includes collaborations with industrial partners, where he has applied his expertise to [Specific Applications]. Dr. Mozaffari has also been an invited speaker at international conferences and has served as a reviewer for high-impact journals in his field.

Research Interest

Dr. Mozaffari’s research focuses on:

  • [Research Area 1] (e.g., Advanced Materials for Biomedical Applications)
  • [Research Area 2] (e.g., Nanotechnology in Regenerative Medicine)
  • [Research Area 3] (e.g., Sustainable and Smart Biomaterials)
  • [Research Area 4] (e.g., Biomechanics and Tissue Engineering)

Author Metrics & Impact

  • Publications: [Number] peer-reviewed journal articles, conference papers, and book chapters
  • Citations: [Number] (Google Scholar)
  • h-index: [Value]
  • i10-index: [Value]
  • Editorial Roles: Reviewer/editor for [Journal Names]

Top Noted Publication

  • Argon and Argon–Oxygen Plasma Surface Modification of Gelatin Nanofibers for Tissue Engineering Applications

    • Authors: A. Mozaffari, M. Parvinzadeh Gashti, M. Mirjalili, M. Parsania
    • Journal: Membranes 11 (1), 31
    • Citations: 56 (2021)
    • Summary: This study explores plasma surface modification of gelatin nanofibers using argon and argon-oxygen to enhance biocompatibility and functionality for tissue engineering applications.
  • Polyvinylpyrrolidone/Carbon Nanotube/Cotton Functional Nanocomposite: Preparation and Characterization of Properties

    • Authors: F. Alimohammadi, M. Parvinzadeh Gashti, A. Mozaffari
    • Journal: Fibers and Polymers 19, 1940-1947
    • Citations: 28 (2018)
    • Summary: Investigates the synthesis and characterization of polyvinylpyrrolidone-carbon nanotube-cotton nanocomposites with enhanced functional properties.
  • Air Plasma Functionalization of Electrospun Nanofibers for Skin Tissue Engineering

    • Authors: A. Mozaffari, M. Parvinzadeh Gashti
    • Journal: Biomedicines 10 (3), 617
    • Citations: 17 (2022)
    • Summary: Examines air plasma treatment on electrospun nanofibers to improve cellular attachment and proliferation for skin tissue engineering.
  • Effect of Tannic Acid on Properties of Electrospun Gelatin Nanofibers

    • Authors: A. Mozaffari, M. Mirjalili, M. P. Gashti, M. Parsania
    • Journal: NISCAIR-CSIR, India
    • Citations: 13 (2020)
    • Summary: Studies the impact of tannic acid incorporation on the physical and biological properties of electrospun gelatin nanofibers.
  • Simultaneous Dyeing and Antibacterial Finishing of Nylon Fabric Using Acid Dyes and Colloidal Nanosilver

    • Authors: M. Montazer, A. Mozaffari, F. Alimohammadi
    • Journal: Fibres & Textiles in Eastern Europe 23 (2), 110
    • Citations: 8 (2015)
    • Summary: Discusses a novel approach for dyeing nylon fabric while imparting antibacterial properties using acid dyes and colloidal nanosilver.
  • Electrospinning Nanofibers Gelatin Scaffolds: Nanoanalysis of Properties and Optimizing the Process for Tissue Engineering Functionalization

    • Authors: M. Jalili, A. Mozaffari, M. Gashti, M. Parsania
    • Journal: J. Nanoanalysis 6, 289-298
    • Citations: 7 (2019)
    • Summary: Investigates the optimization of gelatin nanofiber electrospinning parameters for enhanced tissue engineering applications.
  • Effect of Voltage and Distance in Electrospinning of Gelatin

    • Authors: A. Mozaffari, M. Parvinzadeh
    • Journal: Iran. J. Text. Nano-Bio Modif 1, 32-38
    • Citations: 2 (2022)
    • Summary: Evaluates how different electrospinning parameters, such as voltage and collector distance, influence the morphology and mechanical properties of gelatin nanofibers.
  • The Impact of Helium and Nitrogen Plasmas on Electrospun Gelatin Nanofiber Scaffolds for Skin Tissue Engineering Applications

    • Authors: A. Mozaffari, M. Parvinzadeh Gashti, F. Alimohammadi, M. Pousti
    • Journal: Journal of Functional Biomaterials 15 (11), 326
    • Summary: Studies the effect of helium and nitrogen plasma treatments on electrospun gelatin nanofibers to improve scaffold properties for tissue engineering.

Conclusion

Dr. Abolfazl Mozaffari is a highly suitable candidate for the Research for Innovative Practices in Academia Award due to his groundbreaking contributions to nanotechnology, electrospun scaffolds, and tissue engineering applications. His strong research foundation, interdisciplinary approach, and academic mentorship reflect innovative practices in academia. By expanding global collaborations, pursuing commercialization efforts, and integrating AI-driven research, he can further enhance his academic influence and innovation potential.