• Title/Summary/Keyword: Aminophenols

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Dehydropolycondensation of Aminopenols under the Catalytic Action of Metallic Chelate Compounds (I) Effects of the Solvents and Characteristics of the Oligomers Obtained (金屬킬레이트化合物의 觸媒作用에 依한 Aminophenol 類의 酸化的 重縮合反應 (Ⅰ) 溶媒의 效果와 生成重合體의 特性)

  • Choi, Kyu-Suck
    • Journal of the Korean Chemical Society
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    • v.12 no.3
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    • pp.114-120
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    • 1968
  • Fe-EDTA complex, which is easily formed when Fe salt and EDTA.2Na are mixed in the aqueous medium, is found to be a very effective catalyst in the dehydropolycondensation of aminophenols. In the dehydropolycondensation of aminophenols, the catalyst, Fe(Ⅲ)-EDTA complex (higher oxidation state) is reduced to less stable Fe(Ⅱ)-EDTA complex (lower oxidation state), and the latter is easily oxidized by air to the original higher oxidation state complex, therefore the catalytic action of Fe-EDTA complex is found to be recycled effectively. Under the catalytic action of the above mentioned complex, p-aminophenol is polymerized in the aqueous medium to form the oligomers of p-aminophenol, which the degree of polymerization to be 5 or more. The oligomers formed contain partly quinone nucleus as well as amino and hydroxyl groups. In this study, the effects of the solvents and characteristics of the oligomers are discussed. These types of polymerizations catalyzed by the metallic chelate compounds are considered to be very closely related to the reactions in the living matters.

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Ruthenium Complex Catalyzed Synthesis of 2-Substituted Benzoxazoles from o-Aminophenol and Alcohol with Spontaneous Hydrogen Evolution

  • Keun-Tae Huh;Sang Chul Shim
    • Bulletin of the Korean Chemical Society
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    • v.14 no.4
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    • pp.449-452
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    • 1993
  • o-Aminophenols react with alcohols in the presense of a catalytic amount of ruthenium catalyst at 180$^{\circ}C$ to give 2-substituted benzoxazole in good yield. The yields of 2-substituted benzoxazoles were affected by the yield of N-alkylation compound from o-aminophenol and alcohol as starting materials. During the reaction, a stoichiometric amount of hydrogen was spontaneously evolved into the gas phase.

Dehydropolycondensation of Aminophenols under the Catalytic Acition of Metallic Chelate Compounds (Ⅲ) Reactions of the Isomers, Reaction Mechanisms, and the Structures of the Oligomers (金屬킬레이트 化合物의 觸媒作用에 依한 Aminophenol 類의 酸化的 重縮合反應 (Ⅲ) 異性體의 反應, 反應機構 및 生成物의 構造)

  • Choi, Kyu-Suck
    • Journal of the Korean Chemical Society
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    • v.12 no.3
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    • pp.128-137
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    • 1968
  • In the oligomerization of p-aminophenol by the catalytic action of Fe-EDTA complex in the aqueous medium, the mixed complex intermediate, Fe-EDTA-M type, is considered to be formed, from which active radicals of the monomer are produced. In this system, polymerization is presumed to proceed as follows: Free radical formation ${\to}$ Coupling ${\to}$ Activation ${\to}$ Coupling, and so on. In this study, the form of the monomer and coordination state in the mixed complex, the catalytic action of Fe-EDTA the complex, the reaction mechanism, and the structure of the oligomers are discussed.

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Dehydropolycondensation of Aminophenols under the Catalytic Action of Metallic Chelate Compounds (II) Effects of the Ligands, Structures of the Mixed Complexes, and Side Reactions (金屬킬레이트 化合物의 觸媒作用에 依한 Aminophenol 類의 酸化的 重縮合反應 (Ⅱ) Ligands 種의 效果, 混合錯物의 構造및 副反應)

  • Choi, Kyu-Suck
    • Journal of the Korean Chemical Society
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    • v.12 no.3
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    • pp.121-127
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    • 1968
  • In the oligomerization of p-aminophenol under the catalytic action of the metallic complexes, the effects of the ligands are studied. When the initial velocity of $O_2$ uptake at pH 8 using Fe(Ⅲ) as the central metal and N-hydroxylethylethylenediaminetriacetic acid (HEDTA), ethylenediaminetetraacetic acid (EDTA), diethylenetriaminepentaacetic acid (DTPA), 1,2-cyclohexanediaminetetraacetic acid(CyDTA) as the ligands respectively are compared, the velocities are as the following order: HEDTA > EDTA > DTPA > CyDTA. Further when the effect of the ligands, nitrilotriacetic acid (NTA), HEDTA, EDTA, and DTPA, on the yields of oligomers are compared, the result shows as the following order: NTA > HEDTA > EDTA > DTPA. These are nearly reverse order of the stability constants of the complexes. In order to determine the composition of the mixed complexes at the initial step, the method of continuous variation is used, and it is found that the composition ratio of Fe-EDTA complex to monomer in the mixed complexes is one at pH 5-8 range. It is also found that at pH 9 or in the more alkaline range, side reactions occur to form water soluble dimer of quinone type and the catalytic action of the metallic complex markedly decreases on account of the hydrolysis of the central metal by the $OH^-$ ion.

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