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Adsorption Stabilization of $TiC_{2}$ Particles in Water Soluble Block Copolymers

수용성 블록공중합물에서 산화티탄 분말의 흡착 안정화

  • 권순일 (충북대학교 화학공학부) ;
  • 정환경 (삼성전자 천안반도체 AMLCD) ;
  • 최성옥 (충북대학교 화학공학부) ;
  • 남기대 (충북대학교 화학공학부)
  • Published : 2001.06.30

Abstract

Micelle formation and adsorption at the $Ti0_{2}$ interface of a series of polystyrene-polythylene oxide(PS-PEO) block copolymer in aqueous solution was studied using fluorescence probing and small-angle X-ray methods. Further, the stability of aqueous $Ti0_{2}$ dispersion in the presence of copolymer was investigated by microelectrophoresis, optical density and sedimentation measurements. The dissolution of pyrene as fluorescent probe in aqueous surfactant solution leads to a slow decrease of the $I_{1}/I_{3}$ ratio, as the copolymer concentration increase; $I_{1}$ and $I_{3}$ are respectively the intensities of the first and third vibrionic peaks in the pyrene fluorescence emission. The behaviour was due to the characteristics of the copolymers and/or to the copolymer association efficiency in water. Moreover, the adsorption at the plateau level increases with decreasing PEO until chain length. The zeta potential of $TiO_{2}$ particles decreases with increasing copolymer concentration and reaches a plateau value. Finally, stabilization using block copolymers was more effective with samples having higher weight fractions of PS block.

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