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STUDY ON PREPARATION OF UNIFORM POLYSTYRENE HOLLOW PARTICLES

STUDY ON PREPARATION OF UNIFORM POLYSTYRENE HOLLOW PARTICLES
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摘要 Uniform polystyrene hollow particles were prepared successfully by employing SPG (Shirasu porous glass) emulsification technique. The oil phase composed of monomer [styrene (St) and N,N’-dimethylamino ethylmethacrylate (DMAEMA)], hexadecane (HD) and initiator was permeated through the uniform pores of SPG membrane into the aqueous phase (containing stabilizer, emulsifier and water-soluble inhibitor ) by a gas pressure to form uniform droplets. The droplets were then polymerized at 70℃. It was found that the hollow particles were obtained by adding a small amount of DMAEMA into the oil phase and by using NaNo2 as the water-soluble inhibitor, while only one-hole particles were obtained without adding DMAEMA, or when using diaminophenylene (DAP) or hydroquinone (HQ) as the inhibitor. The formation mechanism was discussed by the view of interfacial tensions between polymer and aqueous phase, HD and aqueous phase, and HD and polymer. Further more, it was found that hollow particles can be obtained even when DMAEMA content in the oil phase was very low, by increasing HD to high value. Uniform polystyrene hollow particles were prepared successfully by employing SPG (Shirasu porous glass) emulsification technique. The oil phase composed of monomer [styrene (St) and N,N -dimethylamino ethylmethacrylate (DMAEMA)], hexadecane (HD) and initiator was permeated through the uniform pores of SPG membrane into the aqueous phase (containing stabilizer, emulsifier and water-soluble inhibitor ) by a gas pressure to form uniform droplets. The droplets were then polymerized at 70℃. It was found that t...
出处 《化工学报》 EI CAS CSCD 北大核心 2000年第S1期35-38,共4页 CIESC Journal
关键词 Shirasu porous glass EMULSIFICATION hollow particle POLYSTYRENE N N’-dimethylmino ethylmethacrylate Shirasu porous glass emulsification hollow particle polystyrene N N -dimethylmino ethylmethacrylate
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参考文献1

  • 1Omi S.Katami K, Yamamoto I, and Iso M.Synthesis of PolymericMicrospheres Employing SPG Emulsification Technique, J. Appl[].Polymer Science.1994

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