• Title/Summary/Keyword: Poly(methacrylic acid)

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pH-dependent Swelling Properties of Methacrylic Acid Copolymer Hydrogels (pH 의존성 Methacrylic acid 공중합체의 팽윤특성)

  • Kim, Kyung-Chung;Lee, Seung-Jin
    • YAKHAK HOEJI
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    • v.33 no.6
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    • pp.372-376
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    • 1989
  • Equilibrium swelling and pH-sensitivity of a polyelectrolyte copolymer hydrogel were controlled by employing copolymers with different hydrophilic-hydrophobic balances. Model pH-sensitive hydrogels, e.g., poly(methacrylic acid), poly(methacrylic acid-co-acrylamide), poly(methacrylic acid-co-2-hydroxyethylmethacrylate), poly(methacrylic acid-co-styrene) were synthesized at various monomer compositions. As hydrophobicity of the copolymer hydrogels increased, the equilibrium swelling decreased while the pH-sensitivity increased. In the case of poly(methacrylic acid-co-acrylamide), polymer-polymer interaction significantly affected the equilibrium swelling and provided a wide range control of pH-sensitivity.

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Anti-gelling Effect of Poly(methacrylic acid, methyl methacrylate) on Cefuroxime Axetil Composition

  • Shim, Ji-Yeon;Wang, Hun-Sik;Kwon, Min-Chang;Park, Jun-Sang
    • Proceedings of the PSK Conference
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    • 2003.10b
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    • pp.237.1-237.1
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    • 2003
  • Cefuroxime axetil, a broad spectrum antibiotic, has been known to form a gelatinous mass in contact with aqueous media, which could lead to poor dissolution. Therefore, this study was conducted for removing the gelling phenomenon and thereby obtaining a favorable dissolution profile. We have found that the addition of poly (methacrylic acid, methyl methacrylate) could not only inhibit the tendency of cefuroxime axetil to form a gel but also showed the good dissolution profile compared to the formula without poly (methacrylic acid, methyl methacrylate). (omitted)

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Preparation of Surface-anionized Poly(vinyl alcohol-co-methacrylic acid) Hydrogel Beads (표면에 음이온이 도입된 폴리(비닐 알코올-co-메타아크릴산) 하이드로젤 입자의 제조)

  • 윤주표;박연흠;이세근;박기홍;이철주
    • Polymer(Korea)
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    • v.27 no.2
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    • pp.159-166
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    • 2003
  • For the purpose of obtaining surface-anionized poly(vinyl alcohol) (PVA) hydrogel beads, vinyl acetate(VAc) and methacrylic acid(MMA) were copolymerized by the suspension polymerization technique and followed by the saponification. It was confirmed by $^1$H-NMR that the copolymerized microspheres contained carboxylic acid groups in their surface. poly(VAc-co-MAA) microspheres were completely saponified in the heterogeneous system. The saponification reaction was laster than that of PVAc microspheres. We observed the swelling property of saponified PVA microspheres treated in the acidic solution and in the alkaline solution successively. Saponified microspheres shrank in acidic solution and swelled in alkaline solution respectively, which was reversible. from the result, saponified microspheres were highly water-absorbing hydrogel beads and were certified -COOH group at their surface by $^1$H-NMR and FT-IR.

Synthesis of Poly(methacrylic acid)-functionalized SBA-15 and its Adsorption of Phenol in Aqueous Media

  • Vo, Vien;Kim, Hee-Jin;Kim, Ha-Yeong;Kim, Youngmee;Kim, Sung Jin
    • Bulletin of the Korean Chemical Society
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    • v.34 no.12
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    • pp.3570-3576
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    • 2013
  • Poly(methacrylic acid)-functionalized SBA-15 silicas (denoted as P-x-PMA/SBA-15 where x is molar ratio of TSPM/(TEOS+TSPM) in percentage in the initial mixture) were synthesized by co-condensation of tetraethoxysilane and varying contents of 3-(trimethoxysilyl)propyl methacrylate in acidic medium with the block copolymer Pluronic 123 as a structure directing agent and then polymerization by methacrylic acid in the presence of ammonium persulfate as an initiator. The functionalized materials were characterized by PXRD, TEM, SEM, IR, and $N_2$ adsorption-desorption at 77 K. The investigation of phenol adsorption in aqueous solution on the materials showed that the poly(methacrylic acid)-functionalized mesoporous silicas possess strong adsorption ability for phenol with interaction of various kinds of hydrogen bonds. The adsorption data were fitted to Langmuir isotherms and the maximum adsorption capacity of the three functionalized materials P-5-PMA/SBA-15, P-10-PMA/SBA-15, and P-15-PMA/SBA-15 to be 129.37 mg/g, 187.97 mg/g, and 78.43 mg/g, respectively, were obtained. The effect of the pH on phenol adsorption was studied.

Synthesis of Amphiphilic Poly(alkyl methacrylate-b-methacrylic acid) by Group Transfer Polymerization and Selective Hydrolysis

  • Soon Ki Kwon;Weon Jung Choi;Yun Hi Kim;Sam Kwon Choi
    • Bulletin of the Korean Chemical Society
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    • v.13 no.5
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    • pp.479-482
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    • 1992
  • Several poly(alkyl methacrylate-b-t-butyl methacrylate) diblock copolymers were synthesized by group transfer polymerization. The molecular weight of poly(t-butyl methacrylate) segments and the composition of the resulting block copolymers were controlled by the monomer feed ratios and mole ratios of monomer to initiator. The poly(t-butyl methacrylate) block was quantitatively hydrolyzed to poly(methacrylic acid) block by refluxing with a catalytic amount of p-toluenesulfonic acid in dioxane at $100^{\circ}C$ for 12 hrs. The thermogravimetric analysis of poly(alkyl methacrylate-b-t-butyl methacrylate) exhibited the lose of isobutylene and subsequent anhydride formation in the range of $205-300^{\circ}C$.

Study on Compatibilities between Asphalt and Various Ionomers (아스팔트와 이오노머 (ionomer)의 상용성에 관한 연구)

  • Son, Young-Gon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.9
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    • pp.4267-4273
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    • 2011
  • In order to select the best compatibilizer for PE/asphalts mixtures, compatibilities of poly(ethylene-co-acrylic acid) and poly(ethylene-co-methacrylic acid) based ionomers with asphalts were investigated via optical microscopy, thermal analysis and rheology. By comparing the polarities of ionomers through an ultimate adsorption of moisture, it was observed that the compatibilities of ionomers increase with the increases of the polarities. By rheological investigations, some of ionomer were observed to be not only compatible but also miscible with asphalts.

Ab Initio Dispersion Polymerization of Styrene in the Presence of the Poly(methacrylic acid) Macro-RAFT Agent

  • Wi, Yeon-Hwa;Lee, Kang-Seok;Lee, Byung-Hyung;Choe, Soon-Ja
    • Macromolecular Research
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    • v.17 no.10
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    • pp.750-756
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    • 2009
  • Stable, spherical, polystyrene particles were synthesized in ab initio dispersion polymerization by using the poly(methacrylic acid)[PMAA] macro-RAFT agent. The presence of the PMAA macro-RAFT agent on the polystyrene (PS) particles was confirmed by NMR and FTIR spectroscopy. The PS particle size was influenced by the concentration of the RAFT agent and monomer due to the initial nucleation. When the concentration of the PMAA macro-RAFT agent was increased from 2 to 10 wt% relative to the monomer, the average particle size decreased from 2.31 to 1.36 ${\mu}m$, the conversion decreased from 93.3 to 88.9%, the weight-average molecular weight increased from 46,300 to 150,200 g $mol^{-1}$ and the PDI decreased from 2.79 to 1.94, respectively. In particular, the incorporation of 10 wt% of PMAA macro-RAFT agent produced monodisperse PS spheres of 1.36 ${\mu}m$ with a coefficient of variation (CV) of 6.44%. Thus, the PMAA macro-RAFT agent worked as a reactive steric stabilizer providing monodisperse, micron-sized, PS particles.

Retention Mechanism of Caffeine and Tryptophan in Macroporous Poly[Methacrylic Acid-co-Ethylene Glycol Dimenthacrylate] Rods (매크로 다공성 Poly[Methacrylic Acid-co-Ethylene Glycol Dimenthacrylate] 막대에서 Caffeine과 Tryptophan의 체류 메카니즘)

  • Jin, Longmei;Yan, Hongyuan;Zheng, Jinzhu;Row, Kyung-Ho
    • KSBB Journal
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    • v.21 no.5
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    • pp.401-404
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    • 2006
  • Macroporous Poly(Methacrylic acid-co-Ethylene Glycol Dimethacrylate) Rods were in situ thermal initialized within a empty column($3.9{\times}150mm$) by free radical polymerization. The polymerization mixture was consisted of monomer, cross-linking monomer, porogenic solvent, initiator and control the ratio of these materials, column efficiency could be developed. Caffeine and tryptophan as separation substances and the retention mechanism of this kind of monolithic column was mainly hydrogen bond function.