• 제목/요약/키워드: Acryloyl chloride

검색결과 23건 처리시간 0.018초

새로운 Acyclonucloside의 합성 : 새로운 $N_1$-Substituted 5-Fluorouracil 유도체의 합성과 그 특성에 관한 연구 (Synthesis of Novel Acyclonuclosides : Study on the Synthesis and Characteristics of New $N_1$-Substituted 5-Fluorouracil)

  • 정승호;윤용진;이종광
    • 대한화학회지
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    • 제35권3호
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    • pp.233-239
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    • 1991
  • 합성된 2-chloroethyl acrylate를 출발물질로 이용하여 5-fluorouracil의 $N_1$-위치에 각각 hydroxyethyl, acryloyloxyethyl, poly(acryloyloxyethyl)기를 가진 5-fluorouracil 유도체를 높은 수율로 얻었다. 이들 유도체들과 HCl과의 가수분해속도를 물-에탄올(1:1) 혼합용매에서 UV 분광기를 이용하여 측정하였다. 1-hydroxyethyl-5-fluorouracil, 1-acryloyloxyethyl-5-fluorouracil 및 Poly(1-acryloyloxyethyl-5-fluorouracil)의 가수분해속도는 각각 $k=1.38{\times}10^{-4}$sec, $9.25{\times}10^{-5}$/sec, $4.16{\times}10^{-5}$/sec 이었다. 또한, 합성된 5-fluorouracil 유도체의 열분해성에 대해 논의하였다.

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Crown Ether를 이용한 탐침형 납 이온선택성 전극 (Coated Wire Lead(Ⅱ) Ion-Selective Electrodes based on Crown Ethers)

  • 장미경;하광수;서무룡
    • 대한화학회지
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    • 제41권7호
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    • pp.337-342
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    • 1997
  • 본 연구에서는 benzo-15-crown-5(B15C5)와 poly(acryloylmethylbenzo-15-crown-5)[poly(AMB15C5)] 화합물을 이온선택성 물질로 이용해서 $Pb^{2+}$를 전위차법으로 정량할 수 있는 탐침형 이온선택성 전극(coated wire-ion-selec-tive electrode[CWISE])을 개발하였다. 각각 감지막의 최적 조성은 B15C5의 경우에는 리간드 20 mg, 가소제인 tris(2-ethylhexyl) ester 165 mg, 지지체인 polyvinylchloride 75 mg 및 용매인 THF 0.7 mL이었으며 poly(AMB15C5) 경우에는 리간드 35 mg, 가소제인 tris(2-ethylhexyl) ester 160 mg, 지지체인 PVC [Polyvinyl Chloride] 70 mg 및 용매인 THF 2 mL이었다. 이 때 코팅용액의 리간드에 대한 무게함량은 각각 7.7%와 13.1%이었다. 각각의 전극은 $10^{-5} M{\sim}10^{-1}$ M 농도 범위에서 기울기가 28{\pm}1$ mV/decade인 직선성이 잘 성립하는 감응을 나타내었다. 또한 전극의 감응시간은 poly(AMB15C5) 경우에는 5분 이내였으며 B15C5의 경우에는 3분이내로 비교적 빠른 편이었다. 전극의 안정성은 크라운 에테르의 물에 대한 용해도 때문에 좋은 편은 아니었다. 최적 pH 조건은 pH 3~6이었으며 $Mg^{2+},\; Ca^{2+},\; Co^{2+},\; Ni^{2+},\; Cu^{2+},\; Zn^{2+}$$Cd^{2+}$는 방해가 거의 없었으나 $Na^+$$K^+$는 방해효과가 컸다. 그리고 본 연구에서 제조한 탐침형 이온선택성 전극을 이용하여 $Pb^{2+}$ 이온을 전위차 적정법으로 정량분석해 보았을 때 이론적인 당량점과 종말점이 잘 일키하는 결과를 얻었다.

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Novel pH/Temperature Sensitive Hydrogels of Poly (ethylene glycol)-Poly (caprolactone) -Poly (${\beta}-amino\;ester$) (PAE-PCLA-PEGPCLA-PAE) Biodegradable Polyester Block Copolymer

  • Huynh Dai Phu;Lee Doo-Sung
    • 한국고분자학회:학술대회논문집
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    • 한국고분자학회 2006년도 IUPAC International Symposium on Advanced Polymers for Emerging Technologies
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    • pp.263-263
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    • 2006
  • Poly (ethylene glycol)(PEG) - Poly (${\varepsilon}-caprolactone(CL)$) - Poly (D,L lactide(LA) (PCLA-PEG-PCLA) was synthesized by ring-opening polymerization to form temperature sensitive hydrogel triblock copolymer. The triblock copolymer was acrylated by acryloyl chloride. ${\beta}-amino$ ester was used as a pH sensitive moiety, in this study ${\beta}$- amino ester obtained from 1,4-butandiol diacrylate, and 4, 4' trimethylene dipiperidine, it have pKb around 6.6. pH/temperature sensitive penta-block copolymer (PAE-PCL-PEG-PCL-PAE) was synthesized by addition polymerization from acrylated triblock copolymer, 1,4-butandiol diacrylate, and 4, 4' trimethylene dipiperidine. Their physicochemical properties of triblock and penta-block copolymers were characterized by $^1H-NMR$ spectroscopy and gel permeation spectroscopy. Sol-gel phase transition behavior of PAE-PCL-PEG-PCL-PAE block copolymers were investigated by remains stable method. Aqueous media of the penta-block copolymer (at 20 wt%) changed from a sol phase at pH 6.4 and $10^{\circ}C$ to a gel phase at pH 7.4 and $37^{\circ}C$. The sol-gel transition properties of these block copolymers are influenced by the hydrophobic/hydrophilic balance of the copolymers, block length, hydrophobicity, stereo-regularity of the hydrophobic of the block copolymer, and the ionization of the pH function groups in the copolymer depended on the changing of environmental pH, respectively. The degradation and the stabilization at pH 7.4 and $37^{\circ}C$, and the stabilization at pH 6.4 and $10^{\circ}C,\;5^{\circ}C,\;0^{\circ}C$, of the gel were determined. The results of toxicity experiment show that the penta block copolymer can be used for injection drug delivery system. The sol?gel transition of this block copolymer also study by in vitro test ($200{\mu}l$ aqueous solution at 20wt% polymer was injected to mouse). Insulin loading and releasing by in vitro test was investigated, the results showed that insulin can loading easily into polymer matrix and release time is around 14-16days. The PAE-PCL-PEG-PCL-PAE can be used as biomaterial for drug, protein, gene loading and delivery.

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