Mohammad Fasihi | Polymer foams | Best Researcher Award

Dr. Mohammad Fasihi | Polymer foams | Best Researcher Award

Dr. Mohammad Fasihi, Iran University of Science and Technology, Iran

Dr. Mohammad Fasihi is an Associate Professor at the School of Chemical, Petroleum, and Gas Engineering, Iran University of Science and Technology, Tehran, Iran. He earned his Ph.D. in Polymer Engineering from Amirkabir University of Technology in 2013. His research focuses on polymer composites, nanocomposites, and polymer processing technologies. Dr. Fasihi has published extensively in journals such as the Journal of Applied Polymer Science and Polymer Degradation and Stability. He has presented at numerous international conferences, including those on polymer technologies and advanced materials.

Publication Profile

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Education

Ph.D. in Polymer Engineering, Amirkabir University of Technology, 2013

M.Sc. in Polymer Engineering, Amirkabir University of Technology, 2007

B.Sc. in Polymer Engineering, Amirkabir University of Technology, 2004

Research Focus

The research focus of this individual revolves around the development and optimization of polymer materials and composites. Their work spans polymer foams, including the tuning of pore sizes and densities for enhanced properties 🧪; nanocomposites, such as incorporating nanosilica and silicon carbide to improve mechanical and thermal properties 🔬; and additive manufacturing, focusing on the fracture properties of 3D printed materials 🖨️. They also explore thermoplastic polymers, analyzing their microstructural and mechanical characteristics when blended with various fillers 🧩. Overall, their research aims to advance polymer technology and enhance material performance across various applications.

Publication Top Notes

  • Tuning pore size and density of rigid polylactic acid foams through thermally induced phase separation and optimization using response surface methodologyM Ghorbandoust, M Fasihi, R Norouzbeigi – Scientific Reports 14 (1), 12395, 2024 🧪
  • Optimizing Lithium-Ion Battery Discharge Capacity Performance by Nanosilica-Modified Poly (Vinyl Alcohol) SeparatorA Shahbazi, M Fasihi, H Farrokhzad, A Yavari – Journal of Polymers and the Environment, 1-15, 2024 🔋
  • On the essential work of fracture of polylactic acid/thermoplastic polyurethane/halloysiteS Hosseinjani, F Ashenai Ghasemi, M Fasihi, P Rajaee – Journal of Elastomers & Plastics, 00952443241254938, 2024 🛠️
  • Effect of raster angle on the fracture properties of additively manufactured ABS via essential work of fractureP Rajaee, F Ashenai Ghasemi, SA Sajjadi, M Fasihi – Journal of Applied Polymer Science 141 (16), e55262, 2024 🖨️
  • Improving the mechanical properties and curing characteristics of styrene‐butadiene rubber/butadiene rubber composites by incorporating silicon carbideA Zabihi, M Fasihi, S Rasouli, R Wati Sharudin – Polymer Composites 45 (2), 1676-1687, 2024 🔩
  • Phenolic foams: Foaming processes and applicationsHB Ziarati, M Fasihi – Handbook of Thermosetting Foams, Aerogels, and Hydrogels, 421-441, 2024 📚
  • Hybrid network formation of silicon carbide and expanded graphene nanoplatelets in epoxy resin for thermal managementR Chenari, M Fasihi – Polymer Composites 45, 3184-3193, 2024 🌡️
  • Accelerating the kinetics of curing reaction of SBR/BR blend by silicon carbide via modification of thermal diffusivityGBP Kharat, A Zabihi, S Rasouli, M Fasihi, K Taki – Materials Today Communications 37, 107547, 2023 ⏱️
  • An experimental investigation of the tensile, fracture and microstructural characteristics of ABS/SBS reinforced with HNTsH Kamalvand, F Ashenai Ghasemi, M Fasihi, P Rajaee – Polymer Composites 44 (10), 6482-6494, 2023 🧩
  • An experimental study on the microstructural, tensile, and fracture properties of biodegradable polylactic acid blended with thermoplastic corn starch filled with halloysiteMS Rudabadi, FA Ghasemi, M Fasihi, P Rajaee – Industrial Crops and Products 201, 116922, 2023 🌱