• 제목/요약/키워드: Solvent-solvent bond

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혼합용매에서의 용매화 (제3보). 이성분 혼합용매 중에서 용매효과에 대한 분광용매화 분석 (Solvation in Mixed Solvent (III). Solvatochromic Analysis for the Solvent Effect of Binary Mixed Solvent)

  • 이익춘;나상무;이본수;손세철
    • 대한화학회지
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    • 제28권4호
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    • pp.210-216
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    • 1984
  • MeOH-MeCN 혼합용매의 Taft용매 파라미터인 ${\pi}^{\ast}$(용매의 polarity-polarizability), ${\alpha}$(용매의 수소결합 주게 산도) 그리고 ${\beta}$(용매의 수소결합 받게 염기도)를 여러 지시약을 사용하여 분광용매화 비교법으로 구하였다. 또한 Swain의 용매 파라미터인 A(음이온을 용매화 시키는 척도)와 B(양이온을 용매화 시키는 척도)를 반응속도 자료를 이용하여 최소 자승법으로 구하였다. 용매 상수 ${\beta}$는 용매의 염기도에 의존하며 혼합용매의 MeOH 함량이 증가할 수록 $(MeOH)_n$의 기여에 의해 증가하는 것을 알 수 있었다. ${\pi}^*$는 용매의 쌍극자 모멘트에 의존하며 혼합용매의 MeCN 함량이 증가할 수록 ${\pi}^{\ast}$값도 커지며 ${\alpha}$는 MeOH의 수소결합주게 효과에 의해 혼합용매의 MeOH함량이 증가할 수록 크게 증가하는 것을 나타냈다. 앞서 보고된 반응들에 용매 파라미터를 적용하여 반응상수를 구하였으며 Taft의 반응상수 a, s와 Swain의 반응상수 a, b사이에는 용매 척도의 차이 때문에 서로 연관성이 없었다. 그러나 그들의 비인 a/s와 a/b는 서로 좋은 직선관계를 보여 주었으며 이들 반응상수 비를 이용하여 반응 메카니즘이나 치환기 변화 및 이탈기 변화에 미치는 용매효과를 논의 하였다.

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Application of a New Method to Reproduce the Enthalpies of Transfer of NaI from Water to Aqueous Methanol, Ethanol and iPrOH Solvent Systems at 298 K

  • Rezaej Behbehani, G.
    • Bulletin of the Korean Chemical Society
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    • 제26권2호
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    • pp.238-240
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    • 2005
  • The enthalpies of transfer, ${\Delta}H_t{\Theta}$, of NaI from water to aqueous methanol, ethanol and isopropanol, iPrOH, systems are reported. These data have been analysed in terms of the new solvation theory. These data are considered in terms of the new developed solvation theory including variable ($\alpha$n + $\beta$N), the net effect of the solute on the solvent-solvent bonding, is positive if there is a net breaking or weakening of solvent-solvent bonds. The solvation parameters recovered from the analyses indicate that the net affect of NaI on solvent structure is a breaking of solvent-solvent bonds and that NaI is preferentially solvated by water in all aqueous alcohol systems considered. ($\alpha$n + $\beta$N) values increase with increasing in the size of the alcohol alkyl residue from methanol to iPrOH.

Temperature Effect on the Configurational Properties of an n-Decane Chain in Solution

  • Oh, In-Joon;Ree, Tai-Kyue
    • Bulletin of the Korean Chemical Society
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    • 제5권4호
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    • pp.162-167
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    • 1984
  • Equilibrium and dynamical behaviors of an n-alkane poymer (decane) in solution have been investigated by a molecuar dynamics simulation method. The polymer is assumed to be a chain of elements $(CH_2)$ interconnected by bonds having a fixed bond length and bond angle, but esch bond of the polymer is allowed to execute hindered internal rotation. The calculation explicitly considers the molecular naturer of solvent by including the intermolecular interactions between slovent-solvent molecules and chain element-solvent molecule. We present the results of calculations on (1) equilibrium properties (the solvent molecule-chain element pair correlation function, chain element-chain element pair correlation function, the mean square end-to-end distance and the mean square radius of gyration of the polymer) and (2) dynamic properties (four different autocorrelation functions, namely, the autocorrelation functions for the end-to-end distance and the radius of gyration, and the velocity autocorrelation functions for the center of mass and the end point of the chain). We found that the physical properties of the polymer chain depends sensitively on temperature. Comparison of the present work with other authors' results is also presented.

The Solvent Effects on the Formation of Polyynes by Laser Ablation

  • Park, Young-Eun;Shin, Seung-Keun;Park, Seung-Min
    • Bulletin of the Korean Chemical Society
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    • 제33권7호
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    • pp.2439-2442
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    • 2012
  • In order to explore the effects of the solvent on the formation rate of polyynes, we investigated the absorption spectra of polyynes obtained by laser ablation of a graphite target in different solvents at 1064 nm. Polyynes so produced were confirmed by the Raman band around $2200cm^{-1}$ which corresponds to the carbon triple bonds. The production of polyynes by laser ablation turned out to be significantly affected by the ratio of the hydrogen and carbon atoms in the solvent molecule. No clear correlations were observed in the formation of polyynes for other properties of the solvent such bond dissociation energy, thermal conductivity, and total mass of hydrogen atoms per volume of solvent.

2,4-이니트로할로벤젠과 치환된 아닐린의 반응속도에 대한 용매효과 (제2보) (Influence of Solvents on Rates of Reactions of 2,4-Dinitro Substituted Halobenzenes with Substituted Anilines (Ⅱ))

  • 이해황;이익춘
    • 대한화학회지
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    • 제22권1호
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    • pp.7-11
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    • 1978
  • 이니트로요오도벤젠과 파라치환체 아닐린과의 반응을 아세토니트릴-메탄올 혼합용매에서 연구하였다. 행해진 반응에서의 반응속도 상수는 메탄올 용매하에서 아세토니트릴 용매에 비해 큰 값을 보였다. 실험 결과로 부터 중간체 생성 과정이 반응속도 결정 단계임을 알았으며 용매효과는 메탄올의 산소 원자와 아닐린의 수소원자 사이의 수소결합에 의한 천이상태 안정화로 설명하였다.

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Mechanistic Studies of the Solvolyses of Cyclohexanesulfonyl Chloride

  • Kang, Suk Jin;Koh, Han Joong
    • 대한화학회지
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    • 제63권4호
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    • pp.233-236
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    • 2019
  • In this study, the solvolysis of cyclohexanesulfonyl chloride (1) was studied by kinetics in ethanol-water, methanol-water, acetone-water, and 2,2,2-trifluoroethanol (TFE)-water binary solvent systems. The rate constants were applied to the extended Grunwald-Winstein equation, to obtain the values of m = 0.41 and l = 0.81. These values suggested $S_N2$ mechanism in which bond formation is more important than bond breaking in the transition state (TS). Relatively small activation enthalpy values (11.6 to $14.8kcal{\cdot}mol^{-1}$), the large negative activation entropy values (-29.7 to $-38.7cal{\cdot}mol^{-1}{\cdot}K^{-1}$) and the solvent kinetic isotope effects (SKIE, 2.29, 2.30), the solvolyses of the cyclohexanesulfonyl chloride (1) proceeds via the $S_N2$ mechanism.

신발제조업체에서 사용되는 접착제에 관한 연구 (Study on Bond Used in Shoes Manufacturing Industry)

  • 박대희;문덕환;이채언
    • 한국산업보건학회지
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    • 제1권2호
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    • pp.200-213
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    • 1991
  • ln order to acquire the fundamental data for the organic solvents in bond and to contribute the health improvement of workers in deprtment of organic solvents in shoes manufacturing industries. The authors surveyed the contents of organic solvent in adhesive and determined the amount of volatilization of organic solvent by time and temperature with gaschromatography from March to September 1990. The results were as follows; 1) The kinds for organic solvents in bond were 9 that was Toluene, C-Hexane, N-Hexane, C-Hexanon, Aceton, Methyl Ethyl Keton, Dimethyl Formamide, Etyly Acetate. 2) Toluene and Methyl Ethyl Keton among the organic solvents in adhesive were over 80.18%. 3) The amount of volatilization of Methyl Cyclohexanone and Aceton by time and temperature were the most level than other compounds.

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SPECTRAL AND PROTOPHYSICAL PROPERTIES OF 1-PYRAZINYL-2-(3- QUINOLINYL)ETHYLENE

  • Bong, Pill-Hoon;Ryoo, Jae-Hwan
    • Journal of Photoscience
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    • 제6권4호
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    • pp.171-176
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    • 1999
  • The spectral and photophysical properties of trans-1-pyrazinyl-2-(3-quinolinyl)ethylene (trans-3- PyQE) are investigated under various conditions in order to obtain information on ground and excited states. The absorption spectrum of trans-3-PyQE changes slightly with varying degree of solvent polarity ; the. fluorescence spectrum is shifted to the red and becomes broad and structureless as the solvent polarity increases. The fluorescence quantum yield increases with increasing solvent polarity. The fluorescence intensity of trans-3-PyQE decreases as the concentration of methyl iodide increases. The fluorescence spectra of trans-3-PyQE changes markedly upon the variation of the excitation wavelength, presumably due to an equilibrium between conformers originating from the rotation of a quasi-single bond between the quinolinyl group and ethylenic carbon atom. These results indicate that the spectral and photophysical properties of trans-3-PyQE are strongly influenced by solvent, heavy atom, and an equilibrium between conformers

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Organic co-solvents mediated variation in anion-water hydrogen bonding in [Bmim][BF4] ionic liquid through FTIR spectroscopy

  • Manna, Arpan;Lim, Manho
    • Rapid Communication in Photoscience
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    • 제4권3호
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    • pp.67-69
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    • 2015
  • FTIR spectroscopy has been employed to investigate the variation of anion-water hydrogen bonding in 1-butyl 3-methyl imidazolium tetrafluoroborate ([Bmim][$BF_4$]) ionic liquid caused by addition of organic co-solvents with various polarities. The variation was estimated by probing band shape and intensity of the OH stretching vibration of trace water present in ionic liquid at $3400-3800cm^{-1}$. The presence of polar aprotic co-solvent in ionic liquid dramatically reduces the absorptivity of the OH stretch band, indicating that the co-solvent changes the nature of anion-water hydrogen bond drastically, which might be responsible for the reduction of the viscosity of ionic liquid in the presence of the co-solvent.