Dr. Mukhlis M. Ismail
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Dr. Mukhlis M. Ismail

Professor
University of Technology, Iraq


Highest Degree
Ph.D. in Physics from University of Technology, Iraq

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Area of Interest:

Physics
100%
Quantum Mechanics
62%
Magnetic Materials
90%
Piezoelectric
75%
Ferroelectric
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Ismail, M.M., A. Ahmed, W.Q. Cao, L. Anjo and M. Hashim 2021. Energy Storage Density of (Bi0.5Na0.5)1-xSrxTiO3 Ferroelectric Ceramics Under Relaxor Phenomena. Appl. Phys. A 10.1007/s00339-021-04852-8.
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  2. Hussain, W.A., E.M. Hadi, M.M. Ismail and L.H. Alwan, 2020. Preparation of household water filter. J. Appl. Sci. Eng., Vol. 23. 10.6180/jase.202003_23(1).0008.
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  3. Hashim, M., A. Ahmed, S.A. Ali, S.E. Shirsath and M.M. Ismail et al., 2020. Structural, optical, elastic and magnetic properties of Ce and Dy doped cobalt ferrites. J. Alloys Compd., Vol. 834. 10.1016/j.jallcom.2020.155089.
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  4. Al-Jawad, S.M.H., M.M. Ismail and S.F. Ghazi, 2020. Characteristics of diluted magnetic semiconductor based on Mn-doped TiO2 nanorod array films. J. Solid State Electrochem., Vol. 12. 10.1007/s10008-020-04823-8.
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  5. Ismail, M.M., 2019. Ferroelectric characteristics of Fe/Nb co-doped BaTiO3. Mod. Phys. Lett. B.,Vol. 33. 10.1142/S0217984919502610.
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  6. Ismail, M.M. and N.A. Jaber, 2018. Influences of cation distribution of zinc substituted on inverse spinel nickel ferrite nanoparticle for superparamagnetic approach. Surf. Rev. Lett., Vol. 25. 10.1142/S0218625X18500762.
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  7. Salman, O.N., I.R. Agool and M.M. Ismail, 2017. Preparation of the scattering layer based on TiO2 nanotube and their dye sensitized solar cell applications. Applied Phys., Vol. 123. 10.1007/s00339-017-1012-4.
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  8. Rafeeq, S.N., M.M. Ismail and J.M. Sulaiman, 2017. Magnetic and dielectric properties of CoFe2O4 and CoxZn1-xFe2O4 nanoparticles synthesized using sol-gel method. J. Magne, 22: 406-413.
  9. Ismail, M.M., B.G. Rasheed, A.H. Al-Hamdani and A.K. Judran, 2017. Photovoltaic properties enhancement of solar cell based on porous silicon. Optik Int. J. Light Electr. Optics, 138: 359-364.
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  10. Ismail, M.M., B. Aldabbagh, Q.L. Ibrhium, Z. Cheng and L. Zhang, 2017. Dielectric behavior of CaCu3Ti4O12–polyethylene composites with a low dielectric loss. Iran. J. Sci.Technol. Trans. A: Scie., 41: 7-16.
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  11. Ismail, M.M. and A.M. Hussein, 2017. Enhance the figure of merit for flexible thermoelectric materials by reducing the screening effect. Applied Nanosci., 7: 201-207.
  12. Cao, W.Q., R.L. Wang, F.L. Zhou, M.M. Ismail and R.K. Pan, 2017. Enhance luminescence property of Er in Bi 0.5 Na 0.5 TiO3 ceramics by gradient permeation method. Applied Phys. A, 123: 693-693.
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  13. Cao, W.Q., F. Fang, M.M. Ismail, R.K. Pan and Y.J. Qi, 2017. Stable dielectric properties in the intermediate temperature range of 50°C to 260°C for Na0.5 Bi0.5 TiO3-SrTiO 3 Ceramics with Er2 O3 Doping. J. Electron. Mater., 46: 6023-6028.
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  14. Cao, W.Q. and M.M. Ismail, 2017. Giant dielectric constant phenomena in Bi2O3-doped Ba0.8Sr0.2TiO3 ferroelectrics. Mater. Technol., 32: 321-326.
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  15. Al-Jawad, S.M. and M.M. Ismail, 2017. Characterization of Mn, Cu and (Mn, Cu) co-doped ZnS nanoparticles. J. Optical Technol., 84: 495-499.
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  16. Mangaiyarkkarasi, J., R. Saravanan and M.M. Ismail, 2016. Chemical bonding and charge density distribution analysis of undoped and lanthanum doped barium titanate ceramics. J. Chem. Sci., 128: 1913-1921.
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  17. Jaber, G.S., A.K. Ali and M.M. Ismail, 2016. Enhancement of DSSC by using Gold nanoparticles. Eng.Tech. J., 34: 73-79.
  18. Ismail, M.M.,W.Q. Cao and M.D. Humadi, 2016. Seed mediated growth controlled gold nanorods: synthesis and characterization. J. Applied Phys. Sci. Int., 6: 14-25.
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  19. Ismail, M.M., W.Q. Cao and M.D. Humadi, 2016. Synthesis and optical properties of Au/ZnO core–shell nanorods and their photocatalytic activities. Optik -Int. J. Light Electr. Optic, 127: 4307-4311.
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  20. Hasaani, A.S. and M.M. Ismail, 2016. Analysis of boltzmann equation for SF 6 and some gas-mixture discharges at critical field condition. Iraqi J. Applied Phys., 12: 31-34.
  21. Cao, W.Q., L.F. Xu, M.M. Ismail and L.L. Huang, 2016. olossal dielectric constant of NaNbO3 doped BaTiO3 ceramics. Mater. Sci. Poland, 34: 322-329.
  22. Cao, W.Q., L.F. Xu, M.M. Ismail and L.L. Huang, 2016. Colossal dielectric constant of NaNbO3 doped BaTiO3 ceramics. Mater. Sci. Poland, 34: 322-329.
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  23. Al-Jawad, S.M.H., M.M. Ismail and S. Emad, 2016. Effect of hydrothermal reaction temperatures on structural and optical properties of ZnS nanoparticles. Eng. Tech. J., 34: 808-819.
  24. Ismail, M.M., L.Q. Ibraheem, T.R. Marzoog, D.S. Ahmed and MD. Humadi, 2015. Role enhancement of ZnO nanoparticles and ZnO/Ag composite for medical applications. Chem.Mater. Res., 7: 57-65.
  25. Ismail, M.M., 2014. Dielectric properties of barium zirconate titanate ceramics prepared using hydrothermal method. J. Zankoy Sulaimani, 16: 69-74.
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  26. Ismai, M.M. and S.M.A. Ulaziz, 2014. Spectral study of silver nanoparticles prepared by chemical method. Eng. Tech. J., 32: 869-876.
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  27. Sulaimana, H.M., A.A.W. Mohammada, H.E. Abdul-Waheda and M.M. Ismail, 2013. Biosynthesis, antimicrobial and cytotoxic effects of silver nanoparticles using rosmarinus officinalis extract. Digest J. Nanomaterials Biostructures, 8: 273-280.
  28. Ibrhium, L.Q., M.M. Ismail and B.M. Aldabbagh, 2013. Dielectric constant of nano-CCTO / epoxy composite. IOSR J. Applied Phys., 5: 49-54.
  29. Cao, W.Q., F.L. Li, M.M. Ismail and G. Xiong, 2012. Dielectric properties of Y2O3 and Nb2O5 Co-doped barium titanate ceramics. Japanese J. Applied Phys., .
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  30. Ismail, R.A., A.K. Ali, M.M. Ismail and K.I. Hassoon, 2011. Preparation and characterization of colloidal ZnO nanoparticles using nanosecond laser ablation in water. Applied Nanosci., 1: 45-49.
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  31. Ismail, M.M., A.Z. Khalf and A.K. Ali, 2011. Synthesis, thermal behaviour and structure of barium zirconate from an oxalate method. J. Collage Basic Educ., 17: 193-199.
  32. Al-Sarraj, Z.S.A., M.M. Ismail, S.M. Ali and W.Q. Cao, 2011. Structural characterization of nano-crystalline BaTiO3 powder prepared using hydrothermal method. Adv. Mater. Res., 324: 205-208.
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