Preparation and studying Structural and Electrical properties of nano Co3O4
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Abstract
In this study (Cobalt oxide) nano powder prepared using sol-gel method with a crystallite size 22 nm By testing XRD and by matching with card (JCPDS) files No.( 00-042-1467). Electrical and dielectric properties like (Dielectric constant, resistivity, electrical conductivity) are studied by LCR meter with frequency range from (50 Hz) to (5 MHz ). It was noted that the resistivity and dielectric constant was decreasing while electrical conductivity increased with increased frequency .
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References
[1] Porter, A. L.; Youtie, J.; Shapira,P. and Schoeneck, D. J. (2008). Refining search terms for nanotechnology, Journal Nanopartical Research, (10) :715–728.
[2] Feng, L.; Zhang, C. ;Gao, G. and Cui, D. (2012). Facile synthesis of hollow Cu2O octahedral and spherical nanocrystals and their morphology-dependent photo catalytic properties. Nanoscale Research Letters, (7):276-280. [3] Lina, Y. ;Xie, T.; Cheng, B.; Geng, B. and Zhang,L. (2003). Spectroelectrochemistry of Nanostructured NiO. Chemical Physics Letters, (380):521-525.
[4] Manigandan, R.; Suresh, R.; Giribabu, K.; Vijayalakshmi, L. ; Stephen A. and Narayanan, V. (2012). Cobalt Oxide Nanoparticles: Characterization and its Electrocatalytic Activity towards Nitrobenzene. Advance Material Research, (584):263-266.
[5] Amekura ,H. ; Umeda ,N. ; Takeda ,Y.; Lu, J .and Kishimoto, N.(2004). Embedment of ZnO nanoparticles in SiO2 by ion implantation and low-temperature oxidation. Applied Physics Letters, (6) 85.
[6] Shiloms, M, I.; Pshenichnikov, A. F. ; Morozov, K. I.and Shurubor ,I .Y. (1990). Cobalt Oxide Nanoparticles: Characterization and its Electrocatalytic Activity towards Nitrobenzene. Journal Magnetic Materials , (85):40-46.
[7] Bergemann, C. Muller, D.; Oster, J. and Brassard, L. A. S. (1999).Ferrofluids. Journal Magnetic Materials , (194):45- 52.
[8]Gruttner, C. and Teller, J. (1999). Experimental investigations into Sarcomas. Journal Magnetic Materials , (194):8-15. [9]Guo ,L.; Huang, J.; Li, X. Y. and Yang, S. H.(2003). Effect of Chemical Oxidation on the Structure of Single-Walled Carbon Nanotubes. Physical Chemistry, (16) 12–18 [10] Ando, T. ; Kobayashi, S.; Iijima, M. and Haruta, J. (1997). Optical recognition of CO and H2 by use of gas-sensitiveAu–Co3O4 composite films. Material. Chemistry, (7) 17-19.
[11] Zhang, H.R.; Geng, L.S. and Zheng, B. D. J. (2005). chemistry of polymeric metal chelates. Alloys Compd , ( 392) 31-37. [12] Li, L.N. and Xu, J. (2005).Co3O4 Nanomaterials in Lithium‐Ion Batteries and Gas Sensors. Functional. Material, (15) 85-87
[13] Davar, Z.; Fereshteh, M. and Salavati, N. J. (2009). Preparation of Co3O4 nanoparticles by nonhydrolytic thermolysis of [Co (Pht)(H2O)] n polymers. Alloys Compd , (476) 7-9.
[14] Salavati, Z.; Fereshteh, F. and Davar. (2009). Nanomaterials Preparation by Thermolysis of Metal Chelates. Polyhedron , (28) 10-16