2010Gaofenzi cailiao kexue yu gongchengRequires access

Preparation and Properties of Poly(Acrylamide-co-Styrene) Monodisperse Functional Microspheres

Yan Feng

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Abstract

A series of poly(acrylamide-co-styrene) (PSAM) monodisperse functional microspheres were prepared through emulsion polymerization method in the aqueous solution using styrene and acrylamide as monomers and potassium persulfate as initiator.The samples were characterized by Fourier transform infrared spectrum(FT-IR),thermogravimetry analysis(TG) and transmission electron microscopy (TEM).The formation and thermal enhancement mechanism were discussed.The results show that the monodisperse poly (acrylamide-co-styrene) (PSAM) functional microspheres with smooth surface and high thermal stability had been obtained by controlling the emulsifier and initiator content and microspheres contain rich amino groups on their surface.

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What this paper is about

A series of poly(acrylamide-co-styrene) (PSAM) monodisperse functional microspheres were prepared through emulsion polymerization method in the aqueous solution using styrene and acrylamide as monomers and potassium persulfate as initiator.The samples were characterized by Fourier transform infrared spectrum(FT-IR),thermogravimetry analysis(TG) and transmission electron microscopy (TEM).The formation and thermal enhancement mechanism were discussed.The results show that the monodisperse poly (acrylamide-co-styrene) (PSAM) functional microspheres with smooth surface and high thermal stability had been obtained by controlling the emulsifier and initiator content and microspheres contain rich amino groups on their surface.

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Available abstract

A series of poly(acrylamide-co-styrene) (PSAM) monodisperse functional microspheres were prepared through emulsion polymerization method in the aqueous solution using styrene and acrylamide as monomers and potassium persulfate as initiator.The samples were characterized by Fourier transform infrared spectrum(FT-IR),thermogravimetry analysis(TG) and transmission electron microscopy (TEM).The formation and thermal enhancement mechanism were discussed.The results show that the monodisperse poly (acrylamide-co-styrene) (PSAM) functional microspheres with smooth surface and high thermal stability had been obtained by controlling the emulsifier and initiator content and microspheres contain rich amino groups on their surface.

Key concepts: Dispersity, Materials science, Potassium persulfate, Acrylamide, Styrene, Thermogravimetry, Thermal stability, Chemical engineering

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