• Title/Summary/Keyword: 1,1-diphenylhydrazine

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Synthesis of Blue Emission Hydrazone Derivatives for Organic Electroluminescence (유기 EL용 청색 발광 히드라존 유도체의 합성)

  • Chung, Pyung-Jin;Lim, Hoi-Deuk
    • Korean Journal of Materials Research
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    • v.13 no.8
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    • pp.514-518
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    • 2003
  • As a fundamental study on organic electroluminescence(EL), blue emitting materials were synthesized and characterized. Individual blue colored hydrazone derivatives were synthesized from the reaction of aldehydes (phthalaldehyde, isophthalaldehyde) with the corresponding amnios (1-methyl -1-phenylhydrazine, 1,1-diphenylhydrazine hydrochloride). Recrystallization of hydrazones from chloroform revealed the melting temperature within $142∼156^{\circ}C$. Photoluminescence(PL) analysis on each hydrazone showed that emission range were blue(458∼478 nm). The structure of obtained hydrazones were elucidated by FT-IR, $^1$H-NMR and C, H, N elemental analyzer.

Synthesis of 6-Alkyl-3-Chromonealdehyde(2,2-dialkyl)hydrazone Derivatives for Green Light Emitting Materials (녹색발광 6-알킬-3-크로몬알데히드(2,2-디알킬)하이드라존 유도체의 합성)

  • Chung, Pyung-Jin;Chang, Hong-Joon
    • Applied Chemistry for Engineering
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    • v.21 no.4
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    • pp.424-429
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    • 2010
  • 6-Alkyl-3-chromonealdehyde (2,2-dialkyl)hydrazone derivatives were synthesized by dehydration condensation. They are green-emitting materials for organic light emitting device (OLED) composed of electron acceptor of 6-alkyl-3-chromonealdehydes and electron donor of 2,2-dialkylhydrazones in a conjugated structure. The structural properties of reaction products were analyzed by FT-IR and $^1H$-NMR spectroscopy. The thermal stabilities and reactivities were measured by melting points and yields. The UV-visibles and PL properties were also determined by excitation spectra and emission spectra, respectively.

Synthesis of 3-Chromonealdehyde(2,2-disubstituted)hydrazone Derivatives for Green Light Emitting Materials (녹색발광 3-크로몬알데히드(2,2-이치환)하이드라존 유도체의 합성)

  • Chung, Pyung Jin;Chang, Hong Joon
    • Applied Chemistry for Engineering
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    • v.20 no.6
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    • pp.670-674
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    • 2009
  • 3-Chromonealdehyde(2,2-disubstituted)hydrazone derivatives were synthesized by dehydration condensation. They are green-emitting materials for organic light emitting device (OLED) composed of electron acceptor of 3-chromonealdehydes and electron donor of 2,2-disubstituted hydrazones by a conjugated structure. The structural properties of reaction products were analyzed FT-IR and $^1H-NMR$ spectroscopy. The thermal stabilities and reactivities were measured by melting points and yields. The UV-visibles and PL properties can be determined by excitation spectra and emission spectra, respectively.

Reduction of Representative Organic Functional Groups with Gallane-Trimethylamine

  • 최정훈;오영주;김민정;황북기;백대진
    • Bulletin of the Korean Chemical Society
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    • v.18 no.3
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    • pp.274-280
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    • 1997
  • The rates and stoichiometry of the reaction of gallane-trimethylamine with selected organic compounds containing representative functional groups were examined in tetrahydrofuran solution under standardized conditions (THF, 0 ℃). And its reducing characteristics were compared with those of aluminum hydride-triethylamine(AHTEA). The rate of hydrogen evolution from active hydrogen compounds varied considerably with the nature of the functional group and the structure of the hydrocarbon moiety. Alcohols, phenol, amines, thiols evolved hydrogen rapidly and quantitatively. Aldehydes and ketones were reduced moderately to the corresponding alcohols. Cinnamaldehyde was reduced to cinnamyl alcohol, which means that the conjugated double bond was not attacked by gallane-trimethylamine. Carboxylic acids, esters, and lactones were stable to the reagent under standard conditions. Acid chlorides also were rapidly reduced to the corresponding alcohols. Epoxides and halides were inert to the reagent. Caproamide and nitrile were stable to the reagent, whereas benzamide was rapidly reduced to benzylamine. Nitropropane, nitrobenzene and azoxybenzene were stable to the reagent, whereas azobenzene was reduced to 1,2-diphenylhydrazine. Oximes and pyridine N-oxide were reduced rapidly. Di-n-butyl disulfide and dimethyl sulfoxide were reduced only slowly, but diphenyl disulfide was reduced rapidly. Finally, sulfones and sulfonic acids were inert to the reagent under the reaction.