• Title/Summary/Keyword: Aromatic compound

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Improvement of the resistance to Treeing by additive in Low Density Polyethylene (첨가재에 의한 저밀도 폴리에틸렌의 내트리잉성 향상)

  • 김봉협;임기조
    • The Transactions of the Korean Institute of Electrical Engineers
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    • v.35 no.1
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    • pp.17-25
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    • 1986
  • Discussions on this paper are related to the effects of organic materials to treeing phenomena of low density polyethylene. As additives, 11 kinds of organic compounds are selected by considering the respective features such as melting point, boiling point, electron affinity as well as molecular structure, and then the specimens of low density polyethylene are prepared by blending with 10wt% of the selected additives. For the comparison of effectiveness of treeing resistance and interpretation of the mechanism of compounds as treeing retardants, several investigations such as the tree acceleration test, the prestressed test and the measurement of internally occurred partial discharge are carried out. As the results, meta-Cresol is regard as the most effective retardant among those, and it is supposed that this aromatic compound to be comprised of radical having large electron affinity has strong capability to accept energetic electron to prevent or delay the growth of discharge streamer. Furthermore, by activating partial discharge at the wall of tree pit through the function of trapped electron at this material, the gas pressure in the pit is increased up to prevent the growth of streamer.

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Multicyclization Reaction of 2,3-Dichloro-1,4-Naphthoquinone (2,3-디클로로-1,4-나프토퀴논의 다중고리화 반응)

  • 김순옥;박재경;홍사미
    • YAKHAK HOEJI
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    • v.39 no.2
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    • pp.118-130
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    • 1995
  • Aliphatic & aromatic compounds with two nucleophilic functional groups which were chosen as nucleophiles reacted with 2,3-dichloro-1,4-naphthoquinone as a substrate to give cyclized products by nucleophilic vinyl substitution. And the trends in the syntheses of the heterocyclic compounds was studied and expounded. Besides, the biological activities of the products, especially activity as an agricultural chemical, were examined. Moreover 5-aminomethyl-2-pyrrolidinone was synthesized for the purpose of forming a polynuclear heterocyclic compound containing a similar structure of azasteroid. However only one chlorine of 2,3-dichloro-1,4-naphthoquinone was replaced by an amino group of pyrrolidinone and cyclization did not take place.

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The Crystal Structure of Tolfenamic Acid $(C_{14}H_{12}ClNO_2)$, an Antiinflammatory Fenamate

  • Kim, Yang-Bae;Chung, Uoo-Tae;Park, Il-Yeong
    • Archives of Pharmacal Research
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    • v.19 no.2
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    • pp.160-162
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    • 1996
  • The structural analysis of tolfenamic acid, 2-[(3-chloro-2-methylphenyl)-amino]benzoic acid, was performed by single crystal X-ray diffraction technique. The compound was recrystallized from a mixture of ether and toluene in triclinic, space group $P2_1/c, \;with\; \partial=3.914(1), \; b=22.\; 020(2), \; c=14.271(1)\;{\AA}, \beta.=94.68(1)^{\circ}, $ and Z=4. The calculated density is $1.418 g/cm^3$. The structure was solved by the direct method and refined by full matrix least-squares procedure to the final R value of 0.039 for 1773 independent reflections. In the molecule, carboxyl group at the anthranilic acid is coplanar to the phenyl ring. The dihedral angle between the two aromatic rings of the molecule is $44.2^{\circ}$ The molecules are dirnerized through the intermolecular hydrogen bonds at the carboxyl group in the crystal.

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Phytochemical Constituents of Artemisia stolonofera

  • Kwon, Hak-Cheol;Choi, Sang-Un;Lee, Kang-Ro
    • Archives of Pharmacal Research
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    • v.24 no.4
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    • pp.312-315
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    • 2001
  • Repeated column chromatographic separation of the $CH_{2}Cl_{2}$ extract of Artemisia stolonofera (Asteraceae) led to the isolation of a triterpene (I), a sesquiterpene (II), two aromatic compounds (III and IV) and a benzoquinone (V). Their structures were determined by spectroscopic means to be simiarenol (I), (1S,7S)-1 $\beta$-hydroxygermacra-4(15),5, 10(14)-triene (II), 3'-methoxy-4'-hydroxy-trans-cinnamaldehyde (III), vanillin(IV) and 2,6-dimethoxy-1,4-benzoquinone (V), respectively. Among these products, compound V showed significant cytotoxicity against five human tumor cell lines in vitro, A549 (non small cell lung adenocarcinoma), SK-OV-3 (ovarian), SK-MEL-2 (skin melanoma), XF498 (CNS) and HCT15 (colon) with ED_{50}$ values ranging from 1.33~4.22${\mu}g/ml$.

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Computational Mechanistic Study on the Catalyst-Free Intramolecular Carbon Insertion

  • Park, Yun-Su;Jeong, Yu-Seong
    • Proceeding of EDISON Challenge
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    • 2013.04a
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    • pp.111-124
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    • 2013
  • Jianbo Wang의 그룹에서 최근 발표한 무촉매 분자 내 탄소-탄소 결합 형성 반응의 메커니즘을 계산 화학적으로 평가한다. 이 반응은 금속 촉매를 사용하지 않는다는 점과 Bio activity 를 갖는 Hydroxy-substituted Polycyclic Aromatic Compound (PAC)를 손쉽게 합성할 수 있다는 점에서 중요하다. Diazo moiety를 갖는 분자의 반응이 일반적으로 진행할 수 있는 세 가지 반응 경로가 제시되었고, DFT functional을 이용해 중간체 및 전이 상태에 대한 최적화 구조 및 에너지를 얻었다. 탄소-탄소 결합의 원천을 탐구하기 위해 Natural bond orbital charge calculation과 치환기 효과에 대한 계산이 수행되었다. 계산 결과, 중간체로 Triplet carbene을 형성하는 경로가 가장 불안정한 중간체를 형성했고, Tosylate가 해리되기 전 탄소-탄소 결합이 형성되는 경로가 가장 합리적인 반응경로임을 알 수 있었다.

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Stable Degradation of Benzoate by Klebsiella oxytoca C302 Immobilized in Alginate and Polyurethane

  • Kim, Jun-Ho;Jeong, Won-Hwa;T.B. Karegoudar;Kim, Chi-Kyung
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.7 no.6
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    • pp.347-351
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    • 2002
  • Benzoate produced from the degradative pathways of various aromatic chemicals is generally recognized as a pollutant compound. However, various bacterial strains isolated as benzoate degraders have exhibited certain limits to their functions, including a loss of viability and degradability when cultivated in a broth medium for a longer time. Accordingly, immobilization techniques have been utilized to overcome such problems, and the current study examined the use of alginate and polyurethane for immobilizing Klebsiella oxytoca C302 to extend its viability and degradability of benzoate. The organism was well encapsulated by both matrices and the immobilized cells showed a high stability as regards their viability and degradability of 2 mM benzoate in a MM2 broth medium during cultivation for longer than 60 h in a semicontinuous batch system.

The Reactivity of Thiopyrylium Compound. Reduction of Thiopyrylium Cation by Alkali Metals-Evidence of Thiabenzene Radical

  • Joo, Wan-Chul;Kim, Chung-Kyun
    • Bulletin of the Korean Chemical Society
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    • v.1 no.3
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    • pp.98-101
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    • 1980
  • For the first time we have synthesized thiabenzene radical by the reaction of thiopyrylium cation with alkali metals. As might be expected for a free radical, ESR-spectrum of 2,4,6-triphenylthiabenzene radical shows the single signal with g-value of 2.0045. The proton signal of 2,4,6-triphenylthiabenzene radical in nmr spectrum shifts to the higher field than that of 2,4,6-triphenylthiopyrylium cation by ca. 0.5 ppm. From the UV-spectrum of thiabenzene radical the presence of 6${\pi}$ non-benzenoid aromatic system was observed as in the case of thiopyrylium cation. The reactivity of alkali metals with thiopyrylium cation increases in the order of decreasing ionization energy, Li

Selective Synthesis of N-(Cyclohexylmethyl)-N-alkylamines from Primary Amines and Pimelaldehyde using Tetracarbonylhydridoferrate, $HFe(CO)_4^\;-$, as a Reducing Agent

  • Sang Chul Shim;Young Gil Kwon;Chil Hoon Doh;Byung Won Woo;Jin Ook Baeg;Hong Seok Kim;Tae Jeong Kim;Dong Ho Lee;Young Woo Kwak;Jin Soon Cha;Hyung Soo Lee;Jae Kook Uhm;Young Bae Park
    • Bulletin of the Korean Chemical Society
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    • v.11 no.2
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    • pp.140-143
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    • 1990
  • Ethanolic tetra carbonylhydridoferrate solution combined with dialdehyde (no of carbon; 4,5,6) is very efficient for the selective transformation of amino group into N-heterocyclic compound. However, a large variety of both aliphatic and aromatic amines react with the ferrate-pimelaldehyde at room temperature under an atmospheric pressure of carbon monoxide to give the corresponding N-(cyclohexylmethyl)-N-alkyiamine derivatives in moderate yields instead of the corresponding N-substituted perhydroazocine derivatives.

Hydroxy-Substituted Polyenaminonitrile as a Soluble Precursor for Rigid-Rod Polybenzoxazole

  • Kim, Ji Heung;Lee, Jae Gwan
    • Bulletin of the Korean Chemical Society
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    • v.22 no.9
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    • pp.999-1004
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    • 2001
  • (1-Chloro-2,2-dicyanovinyl)benzene or 1,4-bis(1-chloro-2,2-dicyanovinyl)benzene was reacted with 2-amino-phenol to give the model compound, hydroxy enaminonitrile, which was found to undergo thermal cyclization reaction to form the corresponding benzoxazole. This intramolecular cyclization reaction is expected to occur through nucleophilic attack to electropositive enamine carbon by ortho-hydroxy group on the phenyl ring, which is accompanied by the release of neutral malononitrile through rearrangement. From each bifunctional monomer, o-hydroxy substituted polyenaminonitrile was prepared and characterized as a new precursor polymer for well-known aromatic polybenzoxazole. Also the unusual macrocyclic dimer formation from the 1,4-bis(1-chloro-2,2-dicyanovinyl)benzene and 2,2-bis(3-amino-4-hydroxyphenyl)hexafluoropropane polymerization reaction system was discussed. The thermal cyclization reactions and the properties of polymers were investigated using FT-IR and thermal analysis (DSC & TGA).

Reaction of Dipyrrolidinoaluminum Hydride in Tetrahydrofuran with Selected Organic Compounds Containing Representative Functional Groups

  • Jin Soon Cha;Oh Oun Kwon;Jong Mi Kim;Jae Cheol Lee
    • Bulletin of the Korean Chemical Society
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    • v.15 no.8
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    • pp.644-649
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    • 1994
  • The approximate rates and stoichiometry of reaction of excess dipyrrolinoaluminum hydride (DPAH) with selected organic compounds containing representative functional groups under standardized conditions (tetrahydrofuran, 0, reagent : compound=4 : 1) were examined in order to define the characteristics of the reagent for selective reductions. The reducing ability of DPAH was also compared with that of bis(diethylamino)aluminum hydride (BEAH). The reagent appears to be stronger than BEAH, but weaker than the parent reagent in reducing strength. DPAH shows a unique reducing characteristics. Thus, the reagent reduces aldehydes, ketones, esters, acid chlorides, epoxides, and nitriles readily. In addition to that, ${\alpha},\;{\beta}$-unsaturated aldehyde is reduced to the saturated alcohol. Quinone are reduced cleanly to the corresponding 1,4-reduction products. The examination for possibility of achieving a partial reduction to aldehydes was also performed. Both primary and tertiary aromatic carboxamides are converted to aldehydes with a limiting amount of DPAH. Finally, disulfides and sulfoxides are readily reduced to thiols and sulfides, respectively.