• Title/Summary/Keyword: dispersed polycondensation

Search Result 6, Processing Time 0.023 seconds

Preparation of Monodisperse Melamine-Formaldehyde Microspheres via Dispersed Polycondensation

  • Cheong, In-Woo;Shin, Jin-Sup;Kim, Jung-Hyun;Lee, Seung-Jun
    • Macromolecular Research
    • /
    • v.12 no.2
    • /
    • pp.225-232
    • /
    • 2004
  • We have successfully synthesized relatively monodisperse and cross-linked melamine-formaldehyde (M-F) microspheres by dispersed polycondensation and subsequent pH adjustment with serum replacement cleaning. The average particle sizes (equation omitted): weight-average and (equation omitted) : number-average), the polydispersity index (equation omitted), the number of particles N$\_$p/ and the gel content of the M-F microspheres were observed by varying the pH, the surfactant concentration, and the polymerization temperature. We observed that both the pH and the polymerization temperature were predominant factors in determining (equation omitted) and N$\_$p/, but the effect that the temperature and pH had on the gel content ( > 94% for all samples) was negligible. The exponents of the slopes of plots of N$\_$p/ versus pH and surfactant concentration were -10 and 0.6, respectively. Particle nucleation and growth were achieved within short periods; the incessant coagulation occurred even in the presence of surfactants.

On the In situ Composites Containing TLCP Polymerized in PMMA Solution (PMMA 용액에서 중합된 TLCP in situ 복합재료에 관한 연구)

  • Kim, Sung-Kug;Yun, Doo-Soo;Choi, Soo-Kyung;Bang, Moon-Soo;Choi, Jae-Kon;Jo, Byung-Wook
    • Applied Chemistry for Engineering
    • /
    • v.10 no.1
    • /
    • pp.148-153
    • /
    • 1999
  • In situ composites containing a thermotropic liquid crystalline polymer were prepared by polycondensation of 1,4-bis(p-hydroxy-benzoyloxy)butane with 2-bromoterephthaloyl chloride in a poly(methyl methacrylate) solution. Morphology and mechanical, thermal properties of the composites were examined by differential scanning calorimeter(DSC), dynamic mechanical thermal analyser(DMTA), optical microscope and scanning electron microscope(SEM). The TLCP domains showed nematic phase. The glass transition temperature($T_g$) and mechanical properties of the PMMA in the composites increased with increasing the content of TLCP. The TLCP domains were finely dispersed in the PMMA matrix. The 20 wt % TLCP/PMMA composite prepared by in situ polymerization showed more improved mechanical property with finely well dispersed morphology compared with that prepared by solution blending of the same composition.

  • PDF

Reaction Kinetics in the Formation of Silica Fine Particles By the Hydrolysis of Ethyl Silicate (에틸실리케이트의 가수분해에 의한 실리카 미립자 생성반응의 속도론적 연구)

  • 김한수;김희택;배성렬;유경옥
    • Journal of the Korean Crystal Growth and Crystal Technology
    • /
    • v.1 no.1
    • /
    • pp.92-99
    • /
    • 1991
  • The reaction obtaining $SiO_2$ fine particle from $ Si(OC_2H_5)_4$consists of two steps, that is, hydrolysis and polycondensation. Polycondensation is the first order with respect to the concentration of $Si(OC_2H_5)_4$As the concentration of water, ammonia reaction temperature are increased, the reaction rate constant of polycondensation is increased.Silica particles formed are spherical and very uniformly dispersed. The diameters of them are be-tween 0.06 and $0.27\mu\textrm{m}$. As the initial concentration of $Si(OC_2H_5)_4$is decreased and the reaction temper-ature is increased, the diameters of silica particles are reduced. The rate of particles growth derived from time vs, conversion data, is represented as follows; d=a.ln(Xa)+b, where d is the diameter of silica and a, b are constant. The final diameter of silica approaches to the value of b.

  • PDF

On the Properties of TLCP/PBT Blends Prepared by In Situ Polymerization in PBT Solution (In situ 중합에 의해서 제조된 TLCP/PBT 블렌드의 특성 연구)

  • Choi, Jae-Kon;Park, Il-Soo;Kim, Sun;Choi, Yoo-Sung;Lee, Eung-Jae;Jo, Byung-Wook
    • Elastomers and Composites
    • /
    • v.39 no.3
    • /
    • pp.217-227
    • /
    • 2004
  • A new thermotropic liquid crystalline polymer(TLCP) containing a triad aromatic ester type mesogenic unit and butylene terephthalate unit(BT) in the main chain was synthesized by polycondensation reaction. The TLCP synthesized showed nematic mesophasic behavior and its transition temperature from solid to mesophase was $260^{\circ}C$. The TLCP/PBT blends were prepared by in-situ polymerization in PBT solution and characterized by differential scanning calorimeter(DSC), thermogavimetric analyzer(TGA), scanning electron microscope(SEM), x-ray diffractometer(XRD), and dynamic mechanical thermal analyze, (DMTA). The blends showed well dispersed TLCP phases with domain sizes $0.05{\sim}0.2{\mu}m$ in the PBT matrix. As the increasing TLCP content from 5 to 20 wt%, ${\Delta}Hm$ values of pure PBT in the blend were increased because TLCP acts as a nucleating agent in the PBT matrix. The mechanical properties of the blends depended on the TLCP contents because the TLCP acted effectively as a reinforcing material in the PBT matrix. The blends showed good interfacial adhesion between the TLCP phase and PBT matrix.The blends prepared by in-situ polymerization showed higher mechanical properties and well dispersed TLCP domains than those of the blends prepared by melt blending.

Properties of Liquid Crystalline Polyester/Poly(ethylene 2,6-naphthalate) Blend Fibers (액정 폴리에스테르/PEN 블렌드 섬유의 성질)

  • Kim, Won;Kim, Young-Yong;Son, Jung-Sun;Yun, Doo-Soo;Han, Chul;Choi, Jae-Kon;Jo, Byung-Wook
    • Elastomers and Composites
    • /
    • v.37 no.4
    • /
    • pp.244-257
    • /
    • 2002
  • A thermotropic liquid crystalline polymer(TLCP) which has flexible butylene/hexylene spacers in the main chain and a triad aromatic ester type mesogenic unit containing a naphthyl group was prepared by solution polycondensation. The in-situ composites based on poly(ethylene 2,6-naphthalate) (PEN) and a thermotropic liquid crystalline polymer(TLCP) were prepared and melt spun at different TLCP contents and different draw ratios to produce monofilaments. Blends of the TLCP with PEN were investigated in terms of thermal, mechanical properties and morphology. The TLCP synthesized showed nematic mesophasic behavior and its transition temperature to isotropic melt from mesophase was 249℃. The blends showed well dispersed TLCP phases in the PEN matrix without macroscopic phase separation. Inclusion of TLCP in the blends decreased the cold crystallization temperature of PEN in the blend, therefore, the TLCP acts as a nucleating agent in the blend and showed good interfacial adhesion between the dispersed LCP phases and PEN matrix with domain sizes 40~50 nm in diameter and well developed fibrillation in the monofilaments. The TLCP acted effectively as a reinforcing material in the PEN matrix at the 10wt% level, it led to an increase of initial modulus up to 270% and tensile strength by 235%, while the elongation rate increasing with higher draw ratios.

On the Composites of poly(ethylene 2,6-naphthalate) with a Thermotropic Block Copolyester(I) (열방성 블록 코폴리에스테르와 poly(ethylene 2,6-naphthalate)의 복합재료 연구(I))

  • Choi, Jae Kon
    • Applied Chemistry for Engineering
    • /
    • v.8 no.3
    • /
    • pp.454-462
    • /
    • 1997
  • Thermotropic block copolyester(TLCP-b-PBN) based on poly(tetramethylene 2,6-(naphthaloyldioxy)dibenzoates)(TLCP) and poly(butylene 2,6-naphthalate)(PBN) was synthesized by solution polycondensation and melt-blended with poly(ethylene 2,6-naphthalate)(PEN) for in-situ composites. The TLCP domains showed nematic behavior in melt. The composition of block copolymer was determined from $^1H-NMR$ spectroscopy. The DSC thermogram of block copolymer revealed the presence of two major melting transitions, corresponding to the separete melting of PBN and TLCP domains. The glass transition temperature(Tg) of the PEN in the blends decreased with increasing the content of TLCP-b-PBN and the TLCP-b-PBN acted as a nucleating agent for the matrix polymers. In the 20% TLCP-b-PBN blend, well oriented TLCP fibriles were observed at temperature above the melting point of the PEN by optical microscopy. By scanning electron micrographs of cryogenically fractured surfaces of extruded blends, the TLCp domains were found to be finely and uniformely dispersed in 0.15 to $0.2{\mu}m$ size. Interfacial adhesion between the TLCP and matrix polymer was seemed to be good. Under certain condition TLCP formed a fiver structure in the PEN matrix, with thin oriented TLCP fibril in the skin region and spherical TLCP domains in the core.

  • PDF