Mohammad Khodaei

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
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
Electrostatic Precipitators: Types, Principles and Manufacturing a Modular-based Prototype Journal of Applied Research in Electrical Engineering
اعمال پوشش سيليكات استرانسيم بر آلياژ Ti64 به روش الكتروفورتيك براي ايمپلنت دنداني
فصلنامه علمي پژوهشي فرآيندهاي نوين در مهندسي مواد
Biomedical, antibacterial, mechanical, and drug-releasing properties of 3D-Printed Al2O3-Reinforced akermanite composite scaffolds coated with a simvastatin-loaded carrageenan layer CERAMICS INTERNATIONAL
بررسي رفتار مكانيكي نانوكامپوزيت پلي كاپرولاكتون- فلوئورآپاتيت در مهندسي بافت استخوان با استفاده از تئوريهاي ميكرومكانيكي
فرآيندهاي نوين در مهندسي مواد
تاثير الياف پلي پروپيلن بر خواص مكانيكي سيمان استخواني سولفات كلسيم
سراميك ايران
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
Development of 3D-Printed Polycaprolactone-Hardystonite Composite Scaffolds for Bone Tissue Engineering Applications JOURNAL OF POLYMERS AND THE ENVIRONMENT
Surface modification of 3D-printed polylactic acid-hardystonite scaffold for bone tissue engineering INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
Zein/ZnO-Modified 3D-Printed PCL/Sphene Scaffolds with Improved Bacterial Inhibition and Osteoblast Activity for Bone Regeneration Applications ACS Biomaterials Science and Engineering