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In this article a series of epoxy nanocomposites film were developed using amine functionalized (ZnO-APTES) core shell nanoparticles as the dispersed phase and a commercially available epoxy resin as the matrix phase. The functional group of the samples was characterized using FT-IR spectra. The most prominent peaks of epoxy resin were found in bare epoxy and in all the functionalized ZnO dispersed epoxy nanocomposites (ZnO-APTES-DGEBA). The XRD analysis of all the samples exhibits considerable shift in 2θ, intensity and d-spacing values but the best and optimum concentration is found to be 3

作者:S, Suresh;P, Saravanan;K, Jayamoorthy;S, Ananda Kumar;S, Karthikeyan

来源:Materials science & engineering. C, Materials for biological applications 2016 年 64卷

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作者:
S, Suresh;P, Saravanan;K, Jayamoorthy;S, Ananda Kumar;S, Karthikeyan
来源:
Materials science & engineering. C, Materials for biological applications 2016 年 64卷
标签:
APTES Antimicrobial activity FT-IR ZnO nanocomposites, XRD
In this article a series of epoxy nanocomposites film were developed using amine functionalized (ZnO-APTES) core shell nanoparticles as the dispersed phase and a commercially available epoxy resin as the matrix phase. The functional group of the samples was characterized using FT-IR spectra. The most prominent peaks of epoxy resin were found in bare epoxy and in all the functionalized ZnO dispersed epoxy nanocomposites (ZnO-APTES-DGEBA). The XRD analysis of all the samples exhibits considerable shift in 2θ, intensity and d-spacing values but the best and optimum concentration is found to be 3