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Information Journal Paper

Title

ELECTROPHORETIC DEPOSITION OF HA-TIO2-CNT NANOCOMPOSITE COATING AND EVALUATION OF ITS BIOLOGICAL BEHAVIOR IN BODY SIMULATED ENVIRONMENT

Pages

  209-220

Abstract

 In this research, hydroxyapatite-titanium oxide-carbon nanotubes NANOCOMPOSITE coating deposited on 316L stainless steel by ELECTROPHORETIC process. In order to making a stable suspension, isopropanol used as solvent and tri-ethanol amine as dispersant. Microstructure, chemical composition and structural phase of coatings were investigated by SEM, EDS, respectively. The dissolution amount of NANOCOMPOSITE coatings after putting in SBF solution were analyzed by ICP method. The results showed that the microstrutural of NANOCOMPOSITE coatings were so uniform and proved no presence of microcracks and agglomerated particles in structure of coatings. The distribution of CARBON NANOTUBES and titanium oxide nanoparticles in structure of coatings were so suitable without any lamination in NANOCOMPOSITE coatings. Also, the results confirmed the titanium oxide nanoparticles and CARBON NANOTUBES improved the BIOLOGICAL BEHAVIOR of NANOCOMPOSITE coatings.

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    APA: Copy

    TARI, A., DEHGHANIAN, C., & SANJABI, S.. (2010). ELECTROPHORETIC DEPOSITION OF HA-TIO2-CNT NANOCOMPOSITE COATING AND EVALUATION OF ITS BIOLOGICAL BEHAVIOR IN BODY SIMULATED ENVIRONMENT. NANOMATERIALS (JOURNAL OF NANOCOMPOSITE MATERIALS RESEARCH), 1(4), 209-220. SID. https://sid.ir/paper/185876/en

    Vancouver: Copy

    TARI A., DEHGHANIAN C., SANJABI S.. ELECTROPHORETIC DEPOSITION OF HA-TIO2-CNT NANOCOMPOSITE COATING AND EVALUATION OF ITS BIOLOGICAL BEHAVIOR IN BODY SIMULATED ENVIRONMENT. NANOMATERIALS (JOURNAL OF NANOCOMPOSITE MATERIALS RESEARCH)[Internet]. 2010;1(4):209-220. Available from: https://sid.ir/paper/185876/en

    IEEE: Copy

    A. TARI, C. DEHGHANIAN, and S. SANJABI, “ELECTROPHORETIC DEPOSITION OF HA-TIO2-CNT NANOCOMPOSITE COATING AND EVALUATION OF ITS BIOLOGICAL BEHAVIOR IN BODY SIMULATED ENVIRONMENT,” NANOMATERIALS (JOURNAL OF NANOCOMPOSITE MATERIALS RESEARCH), vol. 1, no. 4, pp. 209–220, 2010, [Online]. Available: https://sid.ir/paper/185876/en

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