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        Electrochemical and anticorrosion behavior of functionalized graphite nanoplatelets epoxy coating

        Somayeh Mohammadi,Faramarz Afshar Taromi,Homeira Shariatpanahi,Jaber Neshati,MAHMOUD HEMMATI 한국공업화학회 2014 Journal of Industrial and Engineering Chemistry Vol.20 No.6

        Functionalized graphite nanoplatelets (FGNP) were used as efficient and compatible nano-particles toproduce homogenous epoxy nano-coating with impressive anticorrosion behavior for carbon steel. Thecharacterizations of the nano-particle and nano-coating were carried out by SEM, FT-IR, XRD, TEM andpull-off test. Fine distribution of nano-particles in the cured nano-coating with particle sizes of 20–40 nm was obtained. Electrochemical experiments, salt spray and X-ray fluorescence showed that thenano-coatings protect the metal substrate by formation of passive layer and physical barriercharacteristics. Three samples (0.25%, 0.5% and 1%) of FGNP-epoxy coatings were prepared that 0.5%showed better anticorrosion properties.

      • KCI등재후보

        EFFECT OF CARBON NANOTUBES ON THE KINETICS OF IN SITU POLYMERIZATION OF METHYL METHACRYLATE

        MEHDI SALAMI-KALAJAHI,VAHID HADDADI-ASL,FARID BEHBOODI-SADABAD,SAEID RAHIMI-RAZIN,HOSSEIN ROGHANI-MAMAQANI,MAHMOUD HEMMATI 성균관대학교(자연과학캠퍼스) 성균나노과학기술원 2012 NANO Vol.7 No.1

        The effect of carbon nanotubes on the kinetics of free radical polymerization of methyl methacrylate (MMA) was investigated. To do this, pristine, acid treated, alcoholic and methacrylate-modified carbon nanotubes with different loadings were used and Conversion, molecular weight and polydispersity index (PDI) of all samples were monitored during polymerization. The results show that carbon nanotubes induce an induction time to polymerization system which is independent of modification system while decrease in monomer conversion can be improved by developing organic moieties on surface. Molecular weight and polydispersity index for free and attached-on-surface chains were studied separately and different kinetics behaviors were observed for them. Molecular weight of free chains was increased by adding carbon nanotubes while more modified nanotubes resulted in much increased molecular weight. On the other hand, more system stability of more modified nanotubes, which was tested using UV-Visible spectra, resulted in higher molecular weights. Adding more nanotubes in the case of MMA-modified nanotubes caused to determine an optimum loading value to reach maximum molecular weight of free chains which was ascribed to system stability according to UV-Visible results. In this optimum loading value, free chains had minimum PDI value. However, increasing carbon nanotubes content led to decreased molecular weight of attached chains while PDI values increased because of shielding effect as physical phenomenon.

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