• 제목/요약/키워드: $H_2O$/DMSO ratio

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세자리 Schiff Base Co(Ⅱ) 착물의 합성과 전기화학적 성질 (Synthesis of Tridentate-Schiff Base Co(II) Complexes and Their Electrochemical Properties)

  • 채희남;최용국
    • 대한화학회지
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    • 제42권4호
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    • pp.422-431
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    • 1998
  • Salicyladehyde와 2-hydroxy-1-naphthaldehyde를 2-aminophenol과 2-amino-p-cresol에 반응시켜 세자리 Schiff base 리간드$(SIPH_2,\;SIPCH_2,\;HNIPH_2,\; HNIPCH_2)$들을 합성하였으며 이들 리간드를 Co(II) 이온과 반응시켜 세자리 Schiff base Co(II) 착물들을 합성하였다. 리간드와 착물들의 구조와 특성을 원소분석, $^1H$-NMR, IR, UV-vis 분광법과 열 무게 분석법으로 예측하였다. Co(II) 착물들은 Schiff base 리간드와 금속(II)의 몰비가 1:1로 결합하였으며, 3분자의 수화물이 배위된 6배위 착물 구조임을 알았다.지지 전해질로서 0.1M TBAP를 포함한 DMSO 용액에서 순환 전압전류법으로 세자리 Schiff base 리간드와 이들의 Co(II) 착물들의 전기 화학적인 산화·환원 과정을 알아보았다. 리간드들의 전기 화학적 환원은 확산 지배적이고 비가역적으로 진행되었으며 Co(II) 착물의 전기 화학적 환원과정은 2단계의 1전자 반응으로 확산 지배적이고 비가역적으로 진행되었다. Co(II) 착물들의 환원전위는 [Co(II)$(HNIPC)(H_2O)_3$]>[Co(II)$(HNIP)(H_2O)_3$]>[Co(II)$(SIPC)(H_2O)_3$]>[Co(II)$(SIP)(H_2O)_3] 순으로 약간 양전위 방향으로 이동하였으나 리간드의 영향은 크게 받지 않았다.

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Cu(II) 전이금속 착물의 합성과 전기화학적 성질에 관한 연구 (Synthesis of Transition Metal Cu(II) Complexes and Their Electrochemical Properties)

  • 채희남;최용국
    • 공업화학
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    • 제9권5호
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    • pp.719-725
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    • 1998
  • Salicylaldehyde와 2-hydroxy-1-naphthaldehyde를 2-aminophenol과 2-amino-p-cresol에 반응시켜 세자리 Schiff base 리간드들을 합성하였다. 이들 리간드를 Cu(II)이온과 반응시켜 세자리 Schiff base Cu(II) 착물들을 합성하였다. 리간드와 그 착물들의 구조와 특성을 원소분석, $^1H$-NMR, IR, UV-vis 분광법과 열 무게 분석법으로 알아보았다. Schiff base 리간드와 Cu(II)의 몰비는 1:1로 결합하며 Cu(II)착물들은 1 분자의 수화물이 배위된 4배위의 평면 사각형 구조임을 알았다. 지지전해질로서 0.1M TBAP를 포함한 DMSO 용액에서 순환 전압전류법과 미분 펄스 전압전류법으로 세자리 Schiff base 리간드와 이들의 Cu(II) 착물들의 전기 화학적인 산화 환원 과정을 알아보았다. 세자리 Schiff base 리간드들의 전기 화학적 환원은 확산 지배적이고 비가역적으로 진행되었다. Cu(II) 착물들의 전기화학적 환원과정은 1단계 1전자 반응으로 모두 확산 지배적이고 준가역적으로 진행되었다. Cu(II)착물들의 환원전위는 [Cu(II)(HNIPC)($H_2O$)]>[Cu(II)(HNIP)($H_2O$)]>[Cu(II)(SIP)($H_2O$)]>[Cu(II)(SIPC)($H_2O$)] 순으로 양전위 방향으로 이동하였다.

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Kinetic and Theoretical Studies on Pyridinolysis of 2,4-Dinitrophenyl X-Substituted Benzoates: Effect of Substituent X on Reactivity and Mechanism

  • Um, Ik-Hwan;Kim, Eun-Hee;Im, Li-Ra;Mishima, Masaaki
    • Bulletin of the Korean Chemical Society
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    • 제31권9호
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    • pp.2593-2597
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    • 2010
  • Second-order rate constants ($k_N$) have been measured spectrophotometrically for reactions of 2,4-dinitrophenyl X-substituted benzoates (X = 4-MeO, H and 4-$NO_2$) with a series of Z-substituted pyridines in 80 mol % $H_2O$/20 mol % DMSO at $25.0{\pm}0.1^{\circ}C$. The Br${\o}$nsted-type plots exhibit downward curvature (e.g., $\beta_2$ = 0.89 ~ 0.96 when $pK_a$ < 9.5 while $\beta_1$ = 0.38 ~ 0.46 when $pK_a$ > 9.5), indicating that the reaction proceeds through a stepwise mechanism with a change in rate-determining step (RDS). The ${pK_a}^o$, defined as the $pK_a$ at the center of Br${\o}$nsted curvature, has been analyzed to be 9.5 regardless of the electronic nature of the substituent X in the benzoyl moiety. Dissection of $k_N$ into the microscopic rate constants $k_1$ and $k_2/k_{-1}$ ratio has revealed that $k_1$ is governed by the electronic nature of the substituent X but the $k_2/k_{-1}$ ratio is not. Theoretical calculations also support the argument that the electronic nature of the substituent X in the benzoyl moiety does not influence the $k_2/k_{-1}$ ratio.

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.

N,N'-bis(4-methoxysalicylidene)phenylendiamine를 이용한 Cu(II) 이온의 분광학적 분석 (Spectrophotometric Quantitative Analysis of Cu(II) Ion Using N,N'-bis(4-methoxysalicylidene)phenylendiamine)

  • 김선덕;설종민
    • 대한화학회지
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    • 제56권2호
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    • pp.228-235
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    • 2012
  • $N_2O_2$계 시프염기 리간드인 N,N'-bis(4-methoxysalicylidene)phenylendiamine(4-$CH_3O$-salphen)을 합성하였다. 합성한 4-$CH_3O$-salphen을 이용하여 분광광도법으로 수용액 중의 Cu(II)이온 정량실험을 시도하였다. Cu(II)이온 정량을 위한 최적 실험조건을 구한 결과, 4-$CH_3O$-salphen 농도는 $2.0{\times}10^{-4}\;mol/L$, 용매 DMSO와 물의 비율은 50/50(v/v), pH는 5.5에서, 온도는 $55^{\circ}C$에서 한 시간정도를 물중탕하고, 시료의 흡광도는 388 nm였고, 그 조건에서 검량곡선을 작성하였다. 작성된 검량곡선(${\varepsilon}=3.6{\times}10^4\;mol^{-1}cm^{-1}$)은 $R^2$=0.9963의 상관계수 값을 나타내었다. 이상의 최적화된 실험조건을 이용하여 온천수, 반도체 공장폐수 및 하수 처리장의 처리수를 채취하여 Cu(II)이온을 각각 정량 분석한 결과는 측정 평균값이 기준 값에 대하여 0.6~5.4% 범위에서 잘 일치 하였고, 정량한계는 31.77 ng/mL($5.0{\times}10^{-7}\;mol/L$)이었다.

Pyridinolyses of 2,4-Dinitrophenyl Phenyl Carbonate and 2,4-Dinitrophenyl Benzoate: Effect of Nonleaving Group on Reactivity and Mechanism

  • Um, Ik-Hwan;Son, Min-Ji;Kim, Song-I;Akhtar, Kalsoom
    • Bulletin of the Korean Chemical Society
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    • 제31권7호
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    • pp.1915-1919
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    • 2010
  • Second-order rate constants $(k_N)$ have been measured for reactions of 2,4-dinitrophenyl phenyl carbonate (2) with a series of pyridines in 80 mol % $H_2O$/20 mol % DMSO at $25.0{\pm}0.1^{\circ}C$ and compared with the $k_N$ values reported for the corresponding reactions of 2,4-dinitrophenyl benzoate (1) to investigate the effect of nonleaving group on reactivity and mechanism. The reactions of 2 result in larger $k_N$ values than those of 1. The Br${\o}$nsted-type plot for the reactions of 2 exhibits a downward curvature (i.e., ${\beta}2$ = 0.84 and ${\beta}1$ = 0.16), which is typical for reactions reported to proceed through a stepwise mechanism with a change in rate-determining step. The $pK_a$ at the center of the Br${\o}$nsted curvature, defined as $pK_a{^{\circ}}$, has been found to be 8.5 and 9.5 for the reactions of 2 and 1, respectively. Dissection of $k_N$ into the microscopic rate constants (e.g., $k_1$ and $k_2/k_{-1}$ ratio) has revealed that the reactions of 2 result in larger k1 values than those of 1, indicating that PhO behaves as a stronger electron-withdrawing group than Ph. However, the $k_2/k_{-1}$ ratio has been found to be independent of the electronic nature of Ph and PhO.

Kinetic Study on Nucleophilic Substitution Reactions of 4-Chloro-2-nitrophenyl X-Substituted-benzoates with Cyclic Secondary Amines: Effect of Substituent X on Reactivity and Reaction Mechanism

  • Jeon, Seong Hoon;Kim, Hyun Soo;Han, Young Joon;Kim, Min-Young;Um, Ik-Hwan
    • Bulletin of the Korean Chemical Society
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    • 제34권10호
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    • pp.2983-2988
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    • 2013
  • Second-order rate constants ($k_N$) have been measured spectrophotometrically for the reactions of 4-chloro-2-nitrophenyl X-substituted-benzoates (1a-1h) with a series of cyclic secondary amines in 80 mol % $H_2O$/20 mol % DMSO at $25.0{\pm}0.1^{\circ}C$. The Hammett plot for the reactions of 1a-1h with piperidine consists of two intersecting straight lines, while the Yukawa-Tsuno plot exhibits an excellent linear correlation with ${\rho}_X $ = 1.25 and r = 0.58, indicating that the nonlinear Hammett plot is not due to a change in the rate-determining step (RDS) but is caused by ground-state stabilization through resonance interactions for substrates possessing an electron-withdrawing group in the benzoyl moiety. The Br${\o}$nsted-type plot for the reactions of 4-chloro-2-nitrophenyl benzoate (1d) with a series of cyclic secondary amines curves downward with ${\beta}_2$ = 0.85, ${\beta}_1$ = 0.24, and $pK_a{^o}$ = 10.5, implying that a change in RDS occurs from the $k_2$ step to the $k_1$ process as the $pK_a$ of the conjugate acid of the amine exceeds 10.5. Dissection of $k_N$ into the microscopic rate constants $k_1$ and $k_2/k_{-1}$ ratio associated with the reaction of 1d reveals that $k_2$ is dependent on the amine basicity, which is contrary to generally held views.

A Simple Carbazole-based Schiff Base as Fluorescence "off-on" Probe for Highly Selective Recognition of Cu2+ in Aqueous Solution

  • Tang, Lijun;Wu, Di;Hou, Shuhua;Wen, Xin;Dai, Xin
    • Bulletin of the Korean Chemical Society
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    • 제35권8호
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    • pp.2326-2330
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    • 2014
  • A carbazole-based Schiff base CB2 was synthesized and applied as a highly selective and sensitive fluorescent probe for $Cu^{2+}$ in $H_2O$-DMSO (8/2, v/v, pH = 7.4) solution. CB2 exhibits an excellent selectivity to $Cu^{2+}$ over other examined metal ions with a prominent fluorescence "turn-on" at 475 nm. CB2 and $Cu^{2+}$ forms a 1:2 binding ratio complex with detection limit of $9.5{\mu}M$. In addition, the $Cu^{2+}$ recognition process is hardly interfered by other examined metal ions.

Pyridinolysis of 2,4-Dinitrophenyl Phenyl Thionocarbonate: Effect of Changing Electrophilic Center from C=O to C=S on Reactivity and Mechanism

  • Son, Min-Ji;Kim, Song-I;Um, Ik-Hwan
    • Bulletin of the Korean Chemical Society
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    • 제32권4호
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    • pp.1165-1169
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    • 2011
  • Second-order rate constants ($k_N$) have been measured spectrophotometrically for nucleophilic substitution reactions of 2,4-dinitrophenyl phenyl thionocarbonate 4 with a series of Z-substituted pyridines in 80 mol % $H_2O$/20 mol % DMSO at $25.0{\pm}0.1^{\circ}C$. The Br${\o}$nsted-type plot for the reactions of 4 exhibits downward curvature (i.e., ${\beta}_1$ = 0.21 and ${\beta}_2$ = 1.04), indicating that the reactions proceed through a stepwise mechanism with a change in rate-determining step. It has been found that 4 is less reactive than its oxygen analogue, 2,4-dinitrophenyl phenyl carbonate 3, although the thionocarbonate is expected to be more electrophilic than its oxygen analogue. The $pK_a$ at the center of the Br${\o}$nsted curvature, defined as $pK_a^o$, has been analyzed to be 6.6 for the reactions of 4 and 8.5 for those of 3. Dissection of $k_N$ into the microscopic rate constants $k_1$ and $k_2/k_{-1}$ ratio has revealed that the reactions of 4 result in smaller $k_1$ values but larger $k_2/k_{-1}$ ratios than the corresponding reactions of 3. The larger $k_2/k_{-1}$ ratios have been concluded to be responsible for the smaller $pK_a^o$ found for the reactions of 4.

Aminolysis of 2,4-Dinitrophenyl 2-Furoate and 2-Thiophenecarboxylate: Effect of Modification of Nonleaving Group from Furoyl to Thiophenecarbonyl on Reactivity and Mechanism

  • Um, Ik-Hwan;Min, Se-Won;Chuna, Sun-Mee
    • Bulletin of the Korean Chemical Society
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    • 제29권7호
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    • pp.1359-1363
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    • 2008
  • Second-order rate constants have been determined spectrophotometrically for reactions of 2,4-dinitrophenyl 2- thiophenecarboxylate (2) with a series of alicyclic secondary amines in 80 mol % $H_2O$/20 mol % DMSO at 25.0 ${\pm}$ 0.1 ${^{\circ}C}$. The Brønsted-type plot exhibits a downward curvature, i.e., the slope decreases from 0.74 to 0.34 as the amine basicity increases. The $pK_a$ at the center of the Brønsted curvature, defined as $pK_a^o$, has been determined to be 9.1. Comparison of the Brønsted-type plot for the reactions of 2 with that for the corresponding reactions of 2,4-dinitrophenyl 2-furoate (1) suggests that reactions of 1 and 2 proceed through a common mechanism, although 2 is less reactive than 1. The curved Brønsted-type plot has been interpreted as a change in RDS of a stepwise mechanism. The replacement of the O atom in the furoyl ring by an S atom (1 $\rightarrow$ 2) does not alter the reaction mechanism but causes a decrease in reactivity. Dissection of the apparent second-order rate constants into the microscopic rate constants has revealed that the $k_2/k_{-1}$ ratio is not influenced upon changing the nonleaving group from furoyl to thiophenecarbonyl. However, $k_1$ has been calculated to be smaller for the reactions of 2 than for the corresponding reactions of 1, indicating that the C=O bond in the thiophenecarboxylate 2 is less electrophilic than that in the furoate 1. The smaller k1 for the reactions of 2 is fully responsible for the fact that 2 is less reactive than 1.