• Title/Summary/Keyword: 염기도 상수

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Electrochemical Properties of Copper(II) Complexes with Multidentate N,O-Schiff Base Ligands (여러 자리 산소-질소계 시프염기 리간드 구리(II) 착물의 전기화학적 특성)

  • Kim, Sun-Deuk;Jang, Gi-Ho;Kim, Jun-Kwang;Lee, Seong-Woo;Joung, Jae-Joung
    • Analytical Science and Technology
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    • v.9 no.4
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    • pp.345-354
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    • 1996
  • Algal(II) Multidentate N, O-Schiff base ligands, such as bis(salicylaldehyde) ethylenediimine(SED), bis(salicylaldehyde) propylenediimine(SPD), bis(salicylaldehyde) diethylenetriimine(SDT), bis (salicylaldehyde) triethylenetetraimine(STT) and bis(salicyl-aldehyde)tetraethylenepentaimine(STP) were prepared. Stepwise proton dissociation constants of the Schiff base were measured potentiometrically in ethanol and a mixture of 70% dioxane and 30% $H_2O$. The stability constants of copper(II)-Schiff base complexes were in the order of Cu(II)-SPD${\leq}$Cu(II)-SED~STT${\leq}$Cu(II)-STP. Oxidation-reduction process of the Cu(II)-Schiff base complexes was involved with one-electron reaction.

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Properties of Mononuclear and Binuclear Cu(II) Schiff Base Complexes and Oxidation of Ascorbic Acid (단핵 및 이핵성 시프염기리간드 Cu(II) 착물의 특성과 Ascorbic Acid에 대한 산화반응)

  • Kim, Sun Deuk;Lee, Young Seuk;Park, Jung Eun
    • Analytical Science and Technology
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    • v.13 no.5
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    • pp.558-564
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    • 2000
  • Mononuclear schiff base ligand N,N'-bissalicylidene-1,2-phenylenediamine(BSPD) and binuclear schiff base ligands N,N',N',N'''-tetrasalicylidene-3,3',4,4'-tetraaminodiphenyl-methane (TSTM), N,N',N'',N'''-tetrasalicylidene-3,3'-diaminobenzidine (TSDB) have been synthesized. Proton dissociation constants of the ligands were determined by potentiometric method. The synthesized ligands and complexes formed with Cu(II) ion. These complexes were investigated by cyclic voltammetry and differential pulse voltammetry. The results revealed two step diffusion controlled redox process. The mononuclear complex Cu(II)-BSPD and binuclear complexes $Cu(II)_2$-TSDB and $Cu(II)_2$-TSTM were used in the oxidation reaction of ascorbic acid. The reaction rates were in the order of $Cu(II)_2$-TSTM>$Cu(II)_2$-TSDB>Cu(II)-BSPD, indicating that the binuclear $Cu(II)_2$-TSTM complex had the fastest values.

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Kinetic Study on the Alkaline Hydrolysis of the Substituted Phenyl N,N-diethyl-P-benzylphosphonamidates (치환 Phenyl N,N-diethyl-P-benzylphosphonamidates의 염기성 가수분해 반응에 대한 속도론적 연구)

  • Shon, Kyoung Hwa;Shin, Gap Cheol
    • Journal of the Korean Chemical Society
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    • v.43 no.1
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    • pp.85-91
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    • 1999
  • The second order rate constants for the hydrolysis of substituted phenyl N,N-diethyl-P-benzylphosphonamidates (2,4-$(NO_2)_2$, 4-$NO_2$, 4-CN, 4-Cl, 4-H)in 20% dioxane-water (v/v) have been determined by UV/Vis spectrophotometric method at various temperatures. The activation parameters (Ea, ${\Delta}H^{\neq}$,${\Delta}S^{\neq}$) were calculated from the rate constants and the reaction constant ($\rho$) was also estimated by Hammett equation. The activation entropies of the title reactions show considerably negative values, this result is not consistent with a dissociative mechanism (EA) in which a positive or a slightly negative value of the entropy of activation should be expected. Further, kinetic evidence for an associative mechanism (AE) was obtained from the linear free energy relationship. By the results of kinetic study for the alkaline hydrolysis of substituted phenyl N,N-diethyl-P-benzylphosphonamidates, it may be concluded that these reactions proceed through an associative mechanism.

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Synthesis and Properties of Polydentate Schiff Base Ligands having $N_nO_2$ (n=3~5) Donor Atoms and Bromine Substituent and their Transition Metal Complexes (여러자리 질소-산소계 시프염기 리간드와 전이금속착물의 합성 및 전기화학적 특성)

  • Kim, Sun-Deuk;Shin, Yun-Yeol;Park, Sung-Woo
    • Analytical Science and Technology
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    • v.11 no.6
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    • pp.440-447
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    • 1998
  • Polydentate Schiff base ligands 5-Br-BSDT(bis(5-bromosalicylaldehyde)diethylenetriamine) having $N_3O_2$ atoms, 5-Br-BSTT(bis(5-bromosalicylaldehyde)triethylenetetramine) having $N_3O_2$ atoms, 5-Br-BSTP(bis(5-bromosalicylaldehyde)tetraethylenepentamine) having $N_3O_2$ atoms were synthesized. Stability constants of the complexes between these ligands and the metal ions such as Cu(II), Ni(II) and Zn(II) were measured in DMSO by a polarographic method. It was observed that all metal(II) ions employed in this study formed 1 : 1 complexes with Schiff base ligands. Stability constants for the ligands were in the order of Cu(II)>Ni(II)>Zn(II), and for complex formation were in the order of 5-Br-BSTP>5-Br-BSTT>5-Br-BSDT according to the increasing in the number of donor atoms. Both enthalpy and entropy changes are obtained in negative valves. Exothermicity for the complex formation indicated tight binding between the ligands and metal ions. The negative entropy change would be related to the fact that solvent molecules are strongly interacting with the metal complexes.

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Separation and Distribution Coefficients of Some Transition Metal Ions in Some Mixed Solvents (혼합용매에서의 양이온교환수지에 의한 전이원소의 분리와 분배계수)

  • Kee Won Cha;Si-Joong Kim;Kee Chae Park
    • Journal of the Korean Chemical Society
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    • v.17 no.6
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    • pp.434-438
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    • 1973
  • Distribution coefficients (C) of some transition metal ions such as Ni(II), Cu(II), Cd(II), Zn(II), and Hg(II) have been determined in methanol-, ethanol-, isopropanol-, acetone-, and dimethylsulfoxide-water mixtures by using Rexyn 101 (Na-form) resin and 0.2 M sodium chloride solution. The log C values of the metallic ions decrease almost straightly with the increase in reciprocal values of the dielectric constants of the mixed solvents. In the solvents having the same dielectric constants, the distribution coefficients of the metallic ions decrease with the increase in the basicity of the aprotic organic molecule and with the decrease in the molecular size of the protic organic molecule. The separation of the metallic ions has been accomplished with the eluting agent suggested by the C values.

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Stability Constants of Nitrogen-Oxygen Donor Macrocyclic Ligand-Metal Ion Complexes in Aqueous Solutions (질소-산소 주개 거대고리 화합물-금속착물의 수용액에서의 안정도상수)

  • Jeong Kim;Chang-Ju Yoon;Hyu-Bum Park;Si-Joong Kim
    • Journal of the Korean Chemical Society
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    • v.35 no.2
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    • pp.119-127
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    • 1991
  • The protonation and the metal ion complexation of 15 to 18 membered diaza crown ether such as 1,12-diaza-3, 4 : 9, 10-dibenzo-5, 8-dioxacyclopentadecane(NtnOenH$_4$), 1,13-diaza-3,4 : 10,11-dibenzo-hydroxy-5,9-dioxacyclohexadecane(NtnOtnH$_4$), 1,13-diaza-3,4 : 10,11-dibenzo-15-hydroxy-5,9-dioxacyclohexadecane(Ntn(OH)OtnH$_4$), 1,15-diaza-3,4 : 12,13-dibenzo-5,8,11-trioxacycloheptadecane (NenOdienH$_4$) and 1,15-diaza-3,4 : 12,13-dibenzo-5,8,11-trioxacyclooctadecane(NtnOdienH$_4$) were studlied by potentiometry and NMR spectroscopy. The protonation constants were used to predict basicity of crown ethers. The sequence of the basicity was NenOdienH$_4$ < Ntn(OH)OtnH$_4$ < NtnOenH$_4$ < NtnOtnH$_4$ < NtnOdienH$_4$. Changes on the basicity were explained in terms of the effects of substituents and the degree of twistness of the macrocyclic ring. The sequence of the complex stabilities were Co(II) < Ni(II) < Cu(II) < Zn(II) for the transition metal complexes and Cd(II) < pb(II) < Hg(II) for the post-transition metal complexes. These changes on the stabilities were dependent on the basicity of the ligand and cavity size of the ring. For the heavy post-transiton metal complexes and Zn(Ⅱ) complex, the former factor was predominent and for the other transition metal complexes, the latter was affected on the stabilities. $^1$H and $^{13}$C-NMR studies for heavy post-transition metal complexes indicated that the nitrogen atom has greater affinity on metal ions than oxygen atom and the planarity of the rings was losed by the complexation with metal ions.

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Synthesis of Naphthol-Containing Polyamines and Determination of Stability Constants of Their Metal Complexes by Potentiometric Titration (나프톨을 포함하는 폴리아민의 합성 및 전위차 적정에 의한 금속착물의 안정도상수 결정)

  • Kim, Sun-Deuk;Kim, Jun-Kwang
    • Analytical Science and Technology
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    • v.10 no.4
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    • pp.256-263
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    • 1997
  • The new naphthol-containing hexadentate ligands, 1,12-bis (2-naphthol)- 2,5,8,11-tetraazadodecane 4HCl (nptr) and 1,14-bis(2-naphthol)- 2,6,9,13- tetraazatetradodecane .4HCl (npptr) were synthesized and characterized by elemental analysis, IR, NMR, and mass spectrometry. Acid dissociation constants and stability constants of Co(II), Ni(II). Cu(II), and Zn(II) complexes were determined at $25.0^{\circ}C$ and ionic strength ($\mu$)=0.10M($KNO_3$) by potentiometry. The relationship between basicity and stability constants of ligands containing aliphatic amines and 2-naphthol were studied.

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The Complex Formation of p-Aminoazobenzene and its Derivatives with Fe(Ⅲ) and Mn(Ⅱ) in Organic Solvents (유기용매중에서 Fe(Ⅲ), Mn(Ⅱ)과 p-aminoazobenzene 및 그 유도체와의 착물형성에 관한 연구)

  • Eun Soo Kim
    • Journal of the Korean Chemical Society
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    • v.32 no.5
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    • pp.464-475
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    • 1988
  • The complex formation of p-aminoazobenzene and its derivatives with Fe(III) and Mn(II) has been studied by UV and IR spectroscopy and conductometry. The effects of solvents, donor basicity, and other factors on the formation of these complexes have been examined. The vatio of metal to ligand for the complexes formed is 1 : 1, both in the solid state and in solution. The stability constants of Fe(III)-donor and Mn(II)-donor complexes are in the range of 10$^2$∼10$^4$ and 0.1∼1, respectively. The absorptivities are ~10$^4$ and ∼10$^3$ l/mol${\cdot}$cm respectively. Thermodynamic properties such as ${\Delta}H^{\circ}$, ${\Delta}G^{\circ}$ and ${\Delta}S^{\circ}$ are calculated from their stability constants utilizing Van't Hoff equation.

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Nucleophile Substitution von Arylmethylchloriden. Kinetische Untersuchung der Solvolyse von 9-Chlormethylanthracen in binaren Losungsmittelgemischen (염화아릴메틸의 친핵치환 반응. 이성분혼합용매내에서 9-클로로메틸안트라센의 가용매 분해반응의 속도론적 연구)

  • Wang-Ki Kim
    • Journal of the Korean Chemical Society
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    • v.24 no.6
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    • pp.413-420
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    • 1980
  • Die Geschwindigkeitskonstanten der Solvolyse-Reaktionen von 9-Chlormethylanthracen wurden bei verschiedenen Temperaturen in unterschiedlichen binadren Losungsmittelgemischen (Wasser/Aceton, Wasser/Acetonitril, Wasser/Methanol, Wasser/Athanol) mit Hilfe der Leitfahigkeitsmeßungen bestimmt. Die Aktivierungsparameter $E_a$, ${\Delta}H^{\neq}$ und ${\Delta}S^{\neq}$ wurden berechnet. Die Meßergebnisse deuten darauf hin, daß die Solvolyse von 9-Chlormethylanthracen in protonischen Losungsmitteln schneller ablauft als in aprotonischen Losungsmitteln; in den Meßreihen mit protonsichen bzw. mit aprotonischen Losungsmitteln steigt die Reaktionsgeschwindigkeit mit der Zunahme der Dielektrizitatskonstanten des Losungsmittels an, und die Aktivierungsparameter nehmen mit steigendem Wassergehalt zu. Es wurde festgestellt, daß die Reaktion nach einem $S_N1$-Mechanismus ablauft. Die experimentellen Daten deuten darauf hin, daß Wasser einerseits als Nucleophil und andererseits als allgemeine Base am Reaktionsmechanismus beteiligt ist.

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Synthesis and Properties of Polydentate Schiff Base Ligands having $N_nO_2$ (n=3~5) Donor Atoms and their Transition Metal Complexes (여러자리 질소-산소계 시프염기 리간드와 전이금속착물의 합성 및 특성)

  • Kim, Sun-Deuk;Shin, Yun-Yeol;Park, Sung-Woo
    • Analytical Science and Technology
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    • v.11 no.5
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    • pp.366-373
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    • 1998
  • Polydentate Schiff base ligands, BSDT(1,9-bis(2-hydroxyphenyl)-2,5,8-triaza-1,8-nonadiene) having $N_3O_2$ atoms, BSTT(1,12-bis(2-hydroxyphenyl)-2,5,8,11-tetraaza-1,11-dodecadiene) having $N_4O_2$ atoms, BSTP(1,15-bis(2-hydroxyphenyl)-2,5,8,11,14-pentaaza-1,14-pentadodecadiene) having $N_5O_2$ atoms were synthesized. Protonation constants of these polydentate ligands were measured by potentiometry. Stability constants of the complexes between these ligands and the metal ions such as Cu(II), Ni(II) and Zn(II) were measured in DMSO by a polarographic method. It was observed that all metal(II) ions employed in this study formed 1:1 complexes with Schiff base ligands. Stability constants for the complex formation were in the order of Cu(II)>Ni(II)>Zn(II), and for the ligands were in the order of BSTP>BSTT>BSDT. There are due to the increase in the number of donor atoms. Both enthalpy and entropy changes were obtained in negative values. Exothermicity for the complex formation indicated tight binding between the ligands and metal ions. The negative entropy change would be related to the fact that solvent molecules are strongly interacting with the metal complexes.

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