۱۲۱ | Effects of silicon nanowires length on solar cells photovoltaic properties | مصطفی فرنگی- مصطفی زاهدی فر- م ر مزدیان فرد- حامد پاک ضمیر | Applied Physics A Materials Science & Processing | 2012-7-18 |
۱۲۲ | Synthesis and thermoluminescence characteristics of Mn doped CaF2 nanoparticles | M. Zahedifar- E. Sadeghi- Z. Mohebbi | Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms | 2012-1-4 |
۱۲۳ | Synthesis of CaSO4: Mn nanosheets with high thermoluminescence sensitivity | Mostafa Zahedifar, Mohsen Mehrabi, Somayeh Harooni | Applied radiation and isotopes | 2011/7/1 |
۱۲۴ | Thermoluminescence kinetic analysis of quartz using an improved general order model for exponential distribution of activation energies | مصطفی زاهدی فر-سمیه هارونی-احسان صادقی | Nuclear Instruments and Methods in Physics Research | 2011-7-5 |
۱۲۵ | Synthesis of CaSO4: Mn nanosheets with high thermoluminescence sensitivity | مصطفی زاهدی فر- محسن محرابی - سمیه هارونی | Applied Radiation and Isotopes | 2011-2-9 |
۱۲۶ | The estimation of gamma dose in a mixed neutron-gamma radiation field using LiF: Mg, Ti (TLD-600) thermoluminescence dosimeter | M Zahedifar, M Jafarizadeh, E Sadeghi, H Shakhusi | Journal of Nuclear Science and Technology | 2011 |
۱۲۷ | Thermoluminescence and photoluminescence of cerium doped CaSO4 nanosheets | مصطفی زاهدی فر - محسن محرابی | , Nuclear instruments and methods in physics research | 2010-8-31 |
۱۲۸ | , Synthesis and thermoluminescence of boron-doped germanium nanowires | مصطفی زاهدی فر-محمد حسین پور مشکانی-اشراقی-گنجی پور | Radiation Physics and Chemistry | 2010-11-10 |
۱۲۹ | A new model for thermoluminescence glow curve deconvolution function with exponential distribution of trapping states; Yek modele jadid baraye monhanie tabeshe termoluminesans … | M Zahedifar, P Rezaeian | International Atomic Energy Agency (IAEA) | 2007/7/1 |
۱۳۰ | Effect of population of trapping states on kinetic parameters of LiF: Mg, Cu, P (GR-200) using mixed and general order of kinetics | M Zahedifar, MJ Kavianinia, M Ahmadi | Radiation measurements | 2007/4/1 |
۱۳۱ | Thermoluminescence kinetic analysis of basaltic rocks using a generalized model for exponential distribution of activation energies | مصطفی زاهدی فر- پیمان رضاییان- سمیه هارونی | Thermoluminescence kinetic analysis of basaltic rocks using a generalized model for exponential distribution of activation energies | 2007-9-14 |
۱۳۲ | Diameter optimization of VLS-synthesized ZnO nanowires, using statistical design of experiment | S.Shafiee- A.H.Nourbakhsh- B.Ganjipour - M.Zahedifar -G.R. Vakili-Nezhaad | Nanotechnology | 2007-8-7 |
۱۳۳ | Effect of population of trapping states on kinetic Parameters of LiF:Mg,Ti (GR-200) using mixed and general order of kinetics | مصطفی زاهدی فر- مهرداد کاویانی نیا- م احمدی | Radiation Measurements | 2007-2-20 |
۱۳۴ | Morphology optimization of CCVD-synthesized multiwall carbon nanotubes, using statistical design of experiments | A. H. Nourbakhsh - B. Ganjipour- M. Zahedifar | Nanotechnology | 2007-2-14 |
۱۳۵ | Thermoluminescence general-order glow curve deconvolution function with continuous distribution of activation energies | M. Zahedifar- L. Karimi- M. J. Kavianinia | Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment | 2006-4-18 |
۱۳۶ | Template One-Page Abstract for IBCN12 | M. Moradi, M. Zahedifar, S. A. Chizhik | Iran-Belarus International Conference on Modern Applications of Nanotechnology | 2005 |
۱۳۷ | Study on dosimetry peak and trapping parameters of CaF {sub 2}: Mn (TLD400) thermoluminescent dosimeter | M Zahedifar | osti.gov | 2003/7/1 |
۱۳۸ | Synthesis and characterization of LaVO4: Dy 3 nanosheets as down converter in dye sensitized solar cells | Z Chamanzadeh, M Zahedifar, SM Hosseinpoor | Journal of Materials | 2003 |
۱۳۹ | OPTIMAL CONDITIONS FOR MUON CYCLING IN INHOMOGENEOUS MEDIA | M.R.Eskandari-M.Mahdavi- M. Zahedifar | IRANIAN JOURNAL OF SCIENCE AND TECHNOLOGY TRANSACTION A- SCIENCE | 2001-1-1 |
۱۴۰ | Energy gain evaluation for heavy ion fusion-fission reactor of 16O + 209Bi, 32S + 181Ta and neutron rich projectile reaction of 38S + 181Ta | M.R.Eskandari- M.Mahdavi- M. Zahedifar | Iranian Journal of Science and Technology | 2000 |