The effect of nickel doping on the structural, defect structural, optical and magnetic properties of zinc oxide nanoparticles

Authors

  • Mona Mohsen Physics Department Faculty of Science, Ain Shams University, Cairo, Egypt
  • Mohammed Mohammed El Okr Physics Department, Faculty of Science, Al Azhar University, Cairo, Egypt
  • Ehsan Gomaa Physics Department Faculty of Science, Ain Shams University, Cairo, Egypt
  • Emad Hassan Ali Physics Department Faculty of Science, Ain Shams University, Cairo, Egypt
  • Mohammed Essam Physics Department Faculty of Engineering, Modern Academy, Cairo, Egypt

Keywords:

Zinc oxide, PALS, Magnetization, Nanoparticles, Energy gap

References

Abdel Hakeem, A.M., 2010. Room –temperature ferromagnetism in Zn1-x Mnx O, J. Magn. Magn. Mater., 322, 709.

Ankiewicz, A.O., Martins, J.S., Carmo, M.C., 2010. Ferromagnetic resonance on metal nanocrystals in Fe and Ni implanted ZnO, J. Appl. Phys., 107, 09B518 -3.

Behan, A.J., Mokhtari, A., Blythe, H.J., 2008. Two magnetic regimes in doped ZnO corresponding to a dilute magnetic semiconductor and a dilute magnetic insulator, Phys. Rev. Lett., 100, 047206.

Chauhan, R., Kumar, A., Chaudhary, R., 2011. Structures and optical properties of Zn 1-x Nix O nanoparticles by co-precipitation method, J. Optoelectron. Biomed. Mater., 3(1), 17-23.

Chen, Z.Q., Yamanoto, S., Maekawa, M., 2003. Postgrowth annealing of defects in ZnO studied by positron annihilation, x-ray diffraction, Rutherford backscattering, cathodoliuminesence, and Hall measurements, J. Appl. Phys., 94, 4807.

Chou, H., Lon, C.P., Hsu, H.S., Sun, S.J., 2010. The role of carries in spin current and magnetic coupling for ZnO: Co diluted magnetic oxides, Appl. Phys. Lett., 96, 092503.

Das Sarma, S., 2001. A new class of device based on electron spin, rather than on charge, may yield the next generation of microelectonics, Am. Sci., 89, 516.

Dietl, T., Ohno, H., Matsukura, F., 2000. Zener model description of ferromagnetism in zinc-blende magnetic semiconductors, Sci., 287, 1019-22.

Egerton, R.F., Li, P., Malac, M., 2004. Radiation damage in the TEM and SEM, Micron 35, 399-409.

Gao, D.Q., Zhang, Z.H., Fu, J.L., 2009. Room temperature ferromagnetism of pure ZnO nanoparticles, J. Appl. Phys., 105(11), 113928-113928-4.

Hautojarvi, P., Corbel, C., 1995. Positron spectroscopy of solids, edited by Dupasquier A and Mills AP, 1st ed North Holland, Amsterdam.

Janisch, R., Gopal, P., Spaldin, N.A., 2005. Transition metal-doped TiO2 and ZnO-present status of the field, J. Phys. Condens. Matter., 17, 657.

Kaminski, A., Das Sarma, S., 2002. Polaron percolation in diluted magnetic semiconductors, Phys. Rev. Lett., 88, 247202.

Kansy, J., 2001. Positron for positron lifetime analysis adjusted to the PC windows environment, Mater. Sci. Forum., 652, 363-365.

Katayama-Yoshida, H., Sato, K., Fukushima, T., 2007. Theory of ferromagnetic semiconductors, Phys Status Solidi A., 204, 15 – 32.

Kim, D., Yang, J.H., Hong, J., 2009. Ferromagnetism induced by Zn vacancy defect al lattice distortion in ZnO, J. Appl. Phys., 106, 013908.

Langford, J.I., Wilson, A.J.C., 1978. Scherrer after sixty years: A survey and some new results in the determination of crystallite size, J. Appl. Cryst., 11, 102-113.

Liu, C., Yun, F., Moroc, H., 2005. Ferromagnetism of ZnO and GaN: A review, J. Mater. Sci., 16, 555-597.

Malaeru, T., Neamtu, J., Morari, C., Sbacea, G., 2012. Structural and magnetic properties of nanocrystalline powders of Ni-doped ZnO diluted magnetic semiconductors synthesized by sol-gel method, Rev. Roum. Chim., 57(9-10), 857-862.

Matsumoto, Y., Murakami, M., Shono, T., 2001. Room temperature ferromagnetism in transparent transition metal doped titanium dioxide, Sci., 291, 854.

Mohapatra, J., Mishra, D.K., Kamilla, S.K., 2011. Ni- doped ZnO: Studies on structural and magnetic properties, Phys. Status. Solidi., B248(6), 1352-1359.

Ohno, H., 1998. Making nonmagnetic semiconductors ferromagnetic, Sci., 281, 951.

Pandey, B., Ghosh, S., Srivastava, P., 2010. Room temperature transparent ferromagnetism in 200 keV Ni2+ ion implanted pulsed laser deposition grown ZnO/sapphire film, J. Appl. Phys., 107, 023901.

Park, Y.R., Kim, K.J., 2003. Sol-gel preparation and optical characterization of NiO and Ni1-xZnxO thin films, J. Cryst. Growth., 258, 380-384.

Pearton, S.J., Norton, D.P., Lp, K., 2004. Recent advances in processing of ZnO, J. Vac. Sci. Technol., B 22, 932.

Sato, K., Katayama-Yoshida, H., 2000. Ferromagnetism in a transition metal atom doped ZnO, Physica E., 10(1-3), 251- 255.

Sharma, P.K., Dutta, R.K., Pandey, A.C., 2009. Effect of iron doping concentration on magnetic properties of ZnO nanoparticles, J. Magn. Magn. Mater., 321, 2587-2591.

Stephen, R., Mauro S Ferrira, 2013. Indirect exchange and Ruderman-Kittel-Kasuya- Yosida (RKKY) interactions in Magnetically-doped grapheme, Crystals 3, 49-78.

Tian, Y., Li, Y., He, M., 2011. Bound magnetic polarons and p-d exchange interaction in ferromagnetic insulating Cu- doped ZnO, Appl. Phys. Lett., 98, 162503.

Wang, D., Chen, Z.Q., Wang, D.D., 2010. Positron annihilation study of the interfacial defects in ZnO nanocrystals: Correlation with ferromagnetism, J. Appl. Phys., 107, 023524.

Yan, W.S., Sun, Z.H., Liu, Q.H., 2007. Zn vacancy induced room-temperaure ferromagnetism in Mn-doped ZnO, Appl. Phys. Lett., 91(6), 062113.

Zhi-Yuan Chen, Chen ZQ, Zou B, 2012. Defect mediated ferromagnetism in Ni-doped ZnO nanocrystals evidenced by positron annihilation spectroscopy, J. Appl. Phys., 112, 083905.

Published

2016-03-25

How to Cite

Mohsen, M. ., Mohammed El Okr, M. ., Gomaa, E. ., Hassan Ali, E. ., & Essam, M. . (2016). The effect of nickel doping on the structural, defect structural, optical and magnetic properties of zinc oxide nanoparticles. Scientific Journal of Review, 5(3), 360-370. Retrieved from http://sjournals.com/index.php/sjr/article/view/76

Issue

Section

Chemistry