• Title/Summary/Keyword: 토실화 반응

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Synthesis of azide-terminated glycidyl azide polymer with low molecular weight (아지드기로 양말단 변성된 저분자량 Glycidyl Azide Polymer의 합성)

  • Min Byoung-Sun
    • Journal of the Korea Institute of Military Science and Technology
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    • v.8 no.1 s.20
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    • pp.69-80
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    • 2005
  • A synthesis of azide-terminated glycidyl azide polymer, GAP-A, was carried out by tosylation and azidation of polyepichlorohydrin(PECH) prepared by cationic ring-opening polymerization. Polyepichlorohydrin was prepared by cationic activated monomer polymerization using ethylene glycol and $BF_3{\cdot}OEt_2$ as an initiator and a catalyst at $\~10^{\circ}C$. Tosylation of polyepichlorohydrin was performed using traditional TsCl/pyridine method and was also carried out using TsCl/amine catalysts to reduce the reaction time significantly. Azidation of tosyl-terminated PECH(OTs-PECH) was performed using $NaN_3$ as an azidation reagent in DMF solvent at high temperature and was unexpectedly completed within 2 hours.

Study on the Synthesis of N,N'-Dicyclohexylcarbodiimide from N,N'-Dicyclohexylurea (디사이클로헥실우레아로부터 디사이클로헥실카르보디이미드의 합성에 관한 연구)

  • Kim, Jae Young;Chung, Dae-Won
    • Applied Chemistry for Engineering
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    • v.22 no.3
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    • pp.319-322
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    • 2011
  • N,N'-Dicyclohexylcarbodiimide (DCC) known as powerful dehydrating reagent in amide or ester synthesis is converted into N,N'-dicyclohexylurea (DCU) during the reaction. In the paper, DCU was recovered from the reaction for the synthesis of the hydrophilic derivative of ${\beta}$-sitosterol, and the purification of the recovered DCU and the dehydration of DCU into DCC were investigated. In the presence of tosyl chloride, (TsCl) and triethylamine (TEA), DCU was converted into DCC, and the optimum molar ratio of [DCU] : [TsCl] : [TEA] was found to be 1.0 : 1.5 : 3.0. Pure DCC was obtained with a 46% yield by the sublimation after the purification process, and characterized by GC/MS, FT-IR and $^{13}C-NMR$.

Synthesis of Dendritic Polystyrene-block-Linear Poly(t-butyl acrylate) Copolymers by an Amide Coupling (아미드 커플링을 통한 덴드리틱 Polystyrene-Block-Linear Poly(t-butyl acrylate) 공중합체의 합성)

  • Song, Jie;Cho, Byoung-Ki
    • Polymer(Korea)
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    • v.33 no.2
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    • pp.158-163
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    • 2009
  • In this study, we synthesized a series of dendritic polystyrene-b-linear poly (t-butyl acrylate) copolymers with well-defined molecular architectures. The hydroxyl group located at the focal point of the second generation dendron bearing polystyrene ($M_n$ = 1000 g/mol) peripheries was converted into amine group via the following stepwise reactions: 1) tosylatoin, 2) azidation, and 3) reduction. On the other hand, the linear poly (t-butyl acrylate)s were prepared by an atom transfer radical polymerization (ATRP) of t-butyl acrylate where benzyl 2-bromopropanoate and Cu(I)Br/PMDETA were used as initiator and catalyst, respectively. To convert the end group of prepared poly (t-butyl acrylate) s into carboxylic acid, a debenzylation was performed using Pd/C catalyst under $H_2$ atmosphere. In the final step, dendritic-linear block copolymers were obtained through a simple amide coupling reaction mediated by 4-(dimethylamino) pyridine(DMAP) and N,N'-diisopropylcarbodiimide(DIPC). The resulting diblock copolymers were shown to have well-defined molecular weights and narrow molecular weight distributions as supported by $^1H$-NMR spectroscopy and gel permeation chromatography(GPC).

O-Alkylation Using Ag2O; Synthesis of Novel 4-Alkyloxy-2-phenylcarboxamidyl-1-tosylpyrrolidines (산화은을 이용한 O-알킬화 반응; 새로운 4-알킬옥시-2-페닐카복사미딜-1-토실피롤리딘 유?체의 합성)

  • Park, Myeong Suk
    • Journal of the Korean Chemical Society
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    • v.45 no.6
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    • pp.549-554
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    • 2001
  • For the development of new COX-2 inhibitor, novel compound were synthesized through induction an arylsulfonyl group to 1-position, an arylcarboxamidyl group to 2-position and an alkyl group to 4-position of L-proline. We started from 4-hydroxy-L-proline, the 4-methylphenylsulfonyl of 1-position was introduced through N-tosylation and the carboxylic acid group was protected by esterification. We sucessfully converted to a various derivatives 4b-d for O-alkyl-(or aralkyl)ation of 4-position using silver oxide as catalysis. The 4-alkyloxy-1-tosyl L-prolines 5b-d were synthesized through base-hydrolysis for the deprotection of carboxylic acid. Final compound 1,2,4-substituted pyrrolidines, 4-alkyloxy-2-phenylcarboxamidyl-1-tosyl pyrrolidines 6a-d were synthesized through the condensation of arylamine with 3 and 5b-d using DCC.

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