Mohammad Khodaei m.khodaei@iut.ac.ir Office Department of Materials Engineering, Isfahan University of Technology, Golpayegan, Iran. Phone +98 3157240067 Fax +98 3157240067 Positions Assistance Professor - Materials Science and Engineering Research Interests Porous scaffolds for tissue engineering 3D printing Surface treatment Mohammad Khodaei type: Journal Title Conference / Journal Date Mechanical and Biological Properties of Fe-P Scaffolds Fabricated by Powder Metallurgy Method for Bone Tissue Engineering Applications Journal of Manufacturing and Materials Processing 2026-02 Electrostatic Precipitators: Types, Principles and Manufacturing a Modular-based Prototype Journal of Applied Research in Electrical Engineering 2026-02 اعمال پوشش سيليكات استرانسيم بر آلياژ Ti64 به روش الكتروفورتيك براي ايمپلنت دنداني فصلنامه علمي پژوهشي فرآيندهاي نوين در مهندسي مواد 2026-01 Biomedical, antibacterial, mechanical, and drug-releasing properties of 3D-Printed Al2O3-Reinforced akermanite composite scaffolds coated with a simvastatin-loaded carrageenan layer CERAMICS INTERNATIONAL 2025-11 بررسي رفتار مكانيكي نانوكامپوزيت پلي كاپرولاكتون- فلوئورآپاتيت در مهندسي بافت استخوان با استفاده از تئوريهاي ميكرومكانيكي فرآيندهاي نوين در مهندسي مواد 2025-10 تاثير الياف پلي پروپيلن بر خواص مكانيكي سيمان استخواني سولفات كلسيم سراميك ايران 2025-09 On the implications of Si3N4 nanoparticle addition for the structural, mechanical, and biomedical properties of 3D-printed polycaprolactone (PCL) scaffolds for bone tissue regeneration purposes Journal of Materials Research and Technology-JMR and T 2025-08 Development of 3D-Printed Polycaprolactone-Hardystonite Composite Scaffolds for Bone Tissue Engineering Applications JOURNAL OF POLYMERS AND THE ENVIRONMENT 2025-06 Surface modification of 3D-printed polylactic acid-hardystonite scaffold for bone tissue engineering INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES 2025-05 Zein/ZnO-Modified 3D-Printed PCL/Sphene Scaffolds with Improved Bacterial Inhibition and Osteoblast Activity for Bone Regeneration Applications ACS Biomaterials Science and Engineering 2025-05