• 제목/요약/키워드: $S_{N}2$ mechanism

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N-(p-니트로페닐)-벤조히드라조닐아지드 유도체의 가수분해 반응메카니즘과 그의 반응속도론적 연구 (Kinetics and Mechanism of the Hydrolysis of N-(p-Nitrophenyl)-benzohydrazonyl Azide Derivatives)

  • 성낙도;권기성;김태린
    • 대한화학회지
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    • 제22권3호
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    • pp.150-157
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    • 1978
  • N-(p-nitrophenyl)-benzohydrazonyl azide (p-$CH_3,\;p-CH_3O,\;p-NO_2$, p-Cl, p-Br) 유도체들의 가수분해 반응 속도상수를 $25^{\cicr}C$의 50% dioxane 수용액속에서 자외선 분광광도법으로 측정하여 넓은 pH 범위에서 잘맞는 반응속도식을 구하였다. 위 반응속도식과 가수분해 반응속도에 미치는 치환기 효과를 검토하기 위하여 Hammet의 식에 도시한 결과 pH 5.0 이하에서는 $\rho$ = -0.47을, pH 7.0 이상에서는 $\rho$ = 0.68을 얻었다. 또한 반응속도에 미치는 염의 효과, 용매효과, 그리고 azide ion 효과로부터 이 가수분해 반응은 pH 5.0 이하에서는 $S_N1$ 반응, pH 7.0 이상에서는 hydrazonyl azide에 hydroxide 이온이 직접 반응하는 $S_N2$ 반응이 일어나며 pH 5.0와 pH 7.0 사이에서는 이 두반응이 서로 경쟁적으로 반응함을 알 수 있었다.

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승용이앙기 작업부의 기구 해석 및 유압회로 개발 (Mechanism Analysis of Working Equipment and Development of Hydraulic System for Rice Transplanter for Riding)

  • 김성엽;이규승;황헌;이상식
    • Journal of Biosystems Engineering
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    • 제31권2호
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    • pp.88-94
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    • 2006
  • The market of rice transplanter has already been changed for riding and to be turned large size of chassis. Because an automation is rapidly expanded, It is strongly need to analyze a mechanism and develop a hydraulic circuit. In this study, we analyzed the mechanism of working equipment of rice transplanter for riding and developed hydraulic circuits. We proposed the operating mechanism of rice transplanter for riding through the mechanistic analysis of working equipment. And the simulation and experiment were performed. In order to up and down the working equipment of rice transplanter for riding, we designed the mechanism which was installed hydraulic circuit and hydraulic cylinder, and it was manufactured. The pressure of developed hydraulic circuit was set by 800 $N/cm^2$. In the field testing, the hydraulic response presented at 50 msec in the maximum driving velocity, 0.8 m/sec of rice transplanter for riding, and it was well performed. The results of experiments showed the system characteristics sufficient to use as the hydraulic mechanism for a rice transplanter for riding.

산 촉매하에서 cis-$[Co(en)_2(N_3)_2]^+$ 와 Fe(II) 와의 산화-환원반응에 대한 반응속도와 메카니즘 (Kinetics and Mechanism for Redox Reaction of cis-$[Co(en)_2(N_3)_2]^+$ with Fe(II) in Acidic Solution)

  • 박병각;김광진;임주상
    • 대한화학회지
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    • 제33권3호
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    • pp.309-314
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    • 1989
  • 산 용액내에서 cis-$[Co(en)_2(N_3)_2]^+$와 Fe(II)간의 산화-환원 반응속도를 UV/vis-분광광도계로 측정하였다. 여기서 촉매 $H^+$가 관여한 반응속도상수와 각 반응물의 반응차수 그리고 활성화파라메타를 구하여 이들 자료를 바탕으로 타당한 반응메카니즘을 제안하였다. 본 연구의 실험결과를 보면, Co(III)와 Fe(II) 그리고 $H^+$에 대해서 각각 1차로 총괄반응이 3차 반응이다. 이때 반응속도상수 $K_H^+$$3.27{\times}10^{-2}l^2{\cdot}mol^{-2}{\cdot}sec^{-1}$이였다. 그리고 활성화에너지 $E_a$는 14.8Kcal/mol, 활성화엔탈피 ${\Delta}H^{\neq}$는 14.2Kcal/mol, 활성화엔트로피 ${\Delta}S^{\neq}$는 -16.7e.u.였다. 이러한 실험적 사실을 바탕으로, 본 반응계에서 $H^+$가 촉매로 작용하여 내부권(inner-sphere) 메카니즘으로 산화-환원반응이 진행되는 타당한 반응메카니즘을 제안하였다.

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MeOH-MeCN 혼합용매계에서 할로겐화 벤질과 피리딘 사이의 친핵성 치환반응 (Nucleophilic Substitution Reactions of Benzyl Halides with Pyridines in MeOH-MeCN Mixtures)

  • 송호봉;이익춘
    • 대한화학회지
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    • 제32권5호
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    • pp.416-421
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    • 1988
  • 메탄올-아세토니트릴 혼합 용매계에서 할로겐화 벤질(파라 치환된 브롬화 벤질과 요오드화 벤질)과 피리딘 사이의 친핵성 치환반응을 속도론적으로 연구하여 반응메카니즘을 밝혔다. 치환기 상호 작용 계수 ${\rho}_{XY}$값으로 부터 할로겐화 벤질과 피리딘 사이의 반응은 전이 상태에서 dissociative S$_N$2 메카니즘으로 진행되고 있음을 알 수 있었다. Hammett ${\rho}$(${\rho}_X$, ${\rho}_Y$) 값, Br${\o}$nsted ${\beta}_N$값, 분광 용매화 관계식의 계수 a, s 및 a/s 값을 이용하여 비교하였다. PES 모형과 QM 모형의 분석결과 QM 모형 해석에 잘 적용 됨을 알수 있었다.

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살충성 Imidacloprid의 가수분해 반응 메카니즘 (Kinetics and Mechanism of Hydrolysis of Insecticidal Imidacloprid)

  • 유성재;강문성;성낙도
    • Applied Biological Chemistry
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    • 제40권1호
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    • pp.53-57
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    • 1997
  • 중성과 알카리성의 $45^{\circ}C$, 15%(v/v) dioxane 수용액중에서 살충성 imidacloprid (lUPAC:1-(6-chloro-3-pyridylmethyl)-3-N-nitro-iminoimidazolidine-2-ylideneamine)의 가수분해 반응속도 상수를 측정하고 pH-효과, 용매효과(m=0.04, n=0.30 및 m${\ll}$l), 열역학적 활성화 파라미터(${\Delta}S^{\neq}$=-0.03e.u. 및 ${\Delta}S^{\neq}=16.14\;kcal{\cdot}mol^-$), 반응 생성물 분석등의 결과로부터 반응 속도식($K_{obs}=4.56{\times}10^{-3}[OH^-]$)을 유도하여 특정 염기촉매 반응($K_{OH^-}$)으로 사면체($sp^3$) 중간체인 1-(6-chloro-3-pyridylmethyl)-2-hydroxy-2-imidazolidinylisonitraminate(I)을 거쳐 imidazolidine 고리 열림반응으로 $\beta$-3-(6-chloro-3-pyridylmethyl)aminoethyl-1-nitrourea(III)를 경유한 다음에 1-(6-chloro-3-pyridylmethyl)aminoethyl-1-nitrourea(III)으로 분해되는 일련의 친핵성 첨가-제거($Ad_N-E$) 반응메카니즘을 제안하였다. 그리고 $45^{\circ}C$의 중성(pH 8.0)에서 반감기(t1/2)는 약 4.5개월로 잔류성이 큰 화합물임을 알았다.

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Rate and Product Studies of 5-Dimethylamino-Naphthalene-1-Sulfonyl Chloride under Solvolytic Conditions

  • Koh, Han Joong;Kang, Suk Jin
    • Bulletin of the Korean Chemical Society
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    • 제35권8호
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    • pp.2285-2289
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    • 2014
  • The solvolysis rate constants of 5-dimethylamino-naphthalene-1-sulfonyl chloride ($(CH_3)_2NC_{10}H_6SO_2Cl$, 1) in 31 different solvents are well correlated with the extended Grunwald-Winstein equation, using the $N_T$ solvent nucleophilicity scale and $Y_{Cl}$ solvent ionizing scale with sensitivity values of $0.96{\pm}0.09$ and $0.53{\pm}0.03$ for l and m, respectively; the correlation coefficient value was 0.955. These l and m values can be considered to support an $S_N2$ reaction pathway having a transition state (TS) structure similar to that of the benzenesulfonyl chloride reaction. This interpretation is further supported by the activation parameters, i.e., relatively small positive ${\Delta}H^{\neq}$ (12.0 to $15.9kcal{\cdot}mol^{-1}$) and large negative ${\Delta}S^{\neq}$ (-23.1 to $-36.3cal{\cdot}mol^{-1}{\cdot}K^{-1}$) values, and the solvent kinetic isotope effects (SKIEs, 1.34 to 1.88). Also, the selectivity values (S = 1.2 to 2.9) obtained in binary solvents are consistent with the proposed mechanism.

Application of the Extended Grunwald-Winstein Equation to the Solvolyses of 4-(Chlorosulfonyl)biphenyl

  • Kang, Suk Jin;Koh, Han Joong
    • 대한화학회지
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    • 제61권1호
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    • pp.25-28
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    • 2017
  • Solvolyses with the reaction center being the sulfur of 4-(chlorosulfonyl)biphenyl ($C_6H_5C_6H_4SO_2Cl$, 1) was studied under solvolytic conditions and the extended Grunwald-Winstein equation was applied. The thirty five kinds of solvents gave a reasonable extended Grunwald-Winstein plot with a correlation coefficient (R) of 0.940. The sensitivity values (l = 0.60 and m = 0.47) of 1 were smaller than those obtained for benzenesulfonyl chloride ($C_6H_5SO_2Cl$, 2; l = 1.10 and m = 0.61) proposed to undergo dissociative $S_N2$ mechanism. These l and m values for the solvolyses of 1 can be considered to support a $S_N2$ pathway with some ionization reaction. The activation parameters, ${\Delta}H^{\neq}$ and ${\Delta}S^{\neq}$, were determined and they are also in line with values expected for a bimolecular reaction. The kinetic solvent isotope effect (KSIE) of 1.26 is also in accord with a bimolecular mechanism, probably assisted by general-base catalysis.

Kinetics and Mechanism of Azidolysis of Y-Substituted Phenyl Benzoates

  • Um, Ik-Hwan;Kim, Eun-Hee;Han, Hyun-Joo
    • Bulletin of the Korean Chemical Society
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    • 제29권3호
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    • pp.580-584
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    • 2008
  • Second-order rate constants (kN) have been measured spectrophotometrically for reactions of Y-substituted phenyl benzoates (1a-h) with azide ion (N3) in 80 mol % H2O/20 mol % DMSO at 25.0 0.1 oC. The Brnsted-type plot for the azidolysis exhibits a downward curvature, i.e., the slope (b lg) changes from 0.97 to 0.20 as the basicity of the leaving group decreases. The pKao (defined as the pKa at the center of the Brnsted curvature) is 4.8, which is practically identical to the pKa of the conjugate acid of N3 ion (4.73). Hammett plots correlated with s o and s constants exhibit highly scattered points for the azidolysis. On the contrary, the corresponding Yukawa-Tsuno plot results in an excellent linear correlation with r = 2.45 and r = 0.40, indicating that the leaving group departs in the rate-determining step. The curved Brnsted-type plot has been interpreted as a change in the rate-determining step in a stepwise mechanism. The microscopic rate constants (k1 and k2/k1 ratio) have been calculated for the azidolysis and found to be consistent with the proposed mechanism.

Initial State and Transition State Solvation for the Solvolysis of trans-$[Co(N-eten)_2Cl_2]$+ in Binary Aqueous Mixtures: Excess Free Energy, Free Energy Cycle and Reacton Mechanism

  • Park, Yu-Chul;Cho, Young-Je
    • Bulletin of the Korean Chemical Society
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    • 제11권4호
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    • pp.309-313
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    • 1990
  • The rates of solvolysis of trans-$[Co(N-eten)_2Cl_2)$+ (N-eten; N-ethylethylenediamine) have been investigated using spectrophotometric method in binary aqueous mixtures containing methyl alcohol, isopropyl alcohol, t-butyl alcohol, ethylene glycol and glycerol. The values of ${\Delta}H^{\neq}$ and ${\Delta}S^{\neq}$ obtained from temperature effect on the rate constants were $80{\sim}84 kJmol^{-1}$ and $- 28{\sim} - 45 JK^{-1}mol^{-1}.$ Extrema found in the variation of the enthalpy and entropy of activation with solvent composition correlated very well with extrema in the variation of the physical properties of mixture which relate to sharp change in the solvent structure. The reaction mechanism was discussed in terms of correlation diagrams involving the exess molar Gibbs function of mixing for the binary mixtures. The behavior of this cobalt(Ⅲ) complex was compared with that of t-butyl chloride. The application of free energy cycle to the process initial state to transition state in water and in the mixture showed that the solvation of transition state had dominant effect on the rates in the mixtures. It was found that $S_N1$ character was increased with increasing the content of co-solvent in the mixture.

Imidoyl Halide의 가수분해 반응메카니즘과 그의 반응속도론적 연구 (Kinetics and Mechanism of the Hydrolysis of Imidoyl Halides)

  • 김태린;김진희;장병두;이광일;김응조
    • 대한화학회지
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    • 제20권1호
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    • pp.48-55
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    • 1976
  • N-(2,4-dinitrophenyl)-benzimidoyl chloride의 여러가지 유도체의 가수분해 속도상수를 측정하여 넓은 pH 범위에서 잘 맞는 반응속도식을 구하였다. 이 식에 의하면 아직 잘 알려져 있지 않은 산성과 염기성 용액속에서 가수분해 반응메카니즘을 정량적으로 잘 설명할 수 있었다. 즉 pH 7.0 이하에서는 carbonium ion 중간체를 거쳐 반응이 진행되는 $S_n1$ 반응과정이며, pH 8.5 이상에서는 hydroxide ion과 imidoyl chloride 농도에 비례하는 $S_n2$ 반응메카니즘에 의해 가수분해가 진행되며, pH 7.0∼8.5 사이에서는 이 두 반응이 경쟁적으로 일어남을 알았다.

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