• 제목/요약/키워드: Redox complexes

검색결과 80건 처리시간 0.02초

X-ray Structure and Electrochemical Properties of Ferrocene-Substituted Metalloporphyrins

  • 김진원;이석우;나용환;이기평;도영규;정세채
    • Bulletin of the Korean Chemical Society
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    • 제22권12호
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    • pp.1316-1322
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    • 2001
  • Transition metal complexes of novel mono- and di-ferrocene-substituted porphyrins have been synthesized and characterized by structural and electrochemical methods. The X-ray structures of Mn(FPTTP)Cl and Mn(DFTTP)Cl showed the distorted square pyramidal coordination geometry with syn configuration of chloride and ferrocenyl substituents. The electrochemistry of ferrocene-substituted porphyrins and their metal complexes has been determined to elucidate the ${\pi}-conjugation$ effect of the porphyrin ring. The ferrocenyl group of H2FPTTP underwent a reversible one-electron transfer process at 0.30 V, indicating the good electron donating effect of the phorphyrin ring to the ferrocene substituent. The redox potential of the ferrocenyl subunit and porphyrin ring was affected by the central metal ions of the metalloporphyrins, that is, Zn(II) and Ni(II) made the oxidation of ferrocene much easier and Mn(III) made it harder. The ferrocene subunits of H2DFTTP interacted electrochemically with each other with peak splitting of 0.21 V. The strength of the electrochemical interactions between the two ferrocenyl substituents can be controlled by central metal ions of metalloporphyrins.

Structural and Spectral Characterization of a Chromium(III) Picolinate Complex: Introducing a New Redox Reaction

  • Hakimi, Mohammad
    • 대한화학회지
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    • 제57권6호
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    • pp.721-725
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    • 2013
  • Reaction between 2-pyridinecarboxylic acid (Hpic) and $K_3[Cr(O_2)_4]$ give complex $[Cr(pic)_3].H_2O$ (1) which is characterized by elemental analysis and spectroscopic methods (FT-IR, Raman) and X-ray crystallography. In the crystal structure of 1, chromium atom with coordinated by three nitrogen and three oxygen atoms has a distorted octahedral geometry. Also a water molecule is incorporated in crystal network. Each water molecule acts as hydrogen bond bridging and connects two adjacent complexes by two $O-H{\cdots}O$ hydrogen bonds.

Spectroscopic, Redox and Biological Studies of Push-Pull Porphyrins and Their Metal Complexes

  • Rajesh, K.;Rahiman, A. Kalilur;Bharathi, K. Shanmuga;Sreedaran, S.;Gangadevi, V.;Narayanan, V.
    • Bulletin of the Korean Chemical Society
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    • 제31권9호
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    • pp.2656-2664
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    • 2010
  • We have synthesized a series of push-pull porphyrins containing both donor and acceptor substituents at the mesopositions and have examined their spectral and biological properties. The push-pull porphyrins containing both strong donor $NH_2$ and acceptor $NO_2$ at meso-positions, in which donor group condensed with the ligand, (2,6-bis(4-methylpiperazine-1-yl-methyl)-4-formlyphenol (L) to form imine linkages with porphyrin. The Schiff base ligand 5-[4-(2,6-bis(4-methylpiperazine-1-yl-methyl)-4-iminomethylphenol)phenyl]-10,15,20-tris(4-nitrophenyl) porphyrin [$an_3$(TPP)L] can be synthesized from 2,6-bis(4-methylpiperazine-1-yl-methyl)-4-formylphenol (L) and 5-(4-aminophenyl)-10, 15,20-tris(4-nitrophenyl)porphyrin. The push-pull porphyrin [$an_3$(TPP)L] was metallated to get copper, nickel and zinc complexes. The spectral, electrochemical, antibacterial, antifungal and cytotoxicity properties of all the donor- acceptor push-pull porphyrins and their complexes were characterized and studied.

디메틸술폭시드용매중에서 Thorium (IV)-Crown Ether 착물의 산화-환원 반응메카니즘 (Redox Reaction Mechanisms of Thorium (IV) Complexes with Crown Ethers in Dimethylsulfoxide)

  • 정학진;정오진;서혁춘
    • 대한화학회지
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    • 제31권3호
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    • pp.250-257
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    • 1987
  • DMSO와 $H_2O$용매 중에서 결합구조가 밝혀진 동공의 크기를 달리한 토륨(IV) 착물들의 전기전도도를 측정하여 해리현상과 전해질의 행동을 알아 보고 DMSO용매중에서 polarography와 cyclic voltammography적 거동을 조사하여 합성착물의 산화환원반응 메카니즘, 가역성을 알아 보고 환원과정에 관여하는 전자수 및 착물의 확산계수를 계산하였다. 그 결과 반양성자성 용매에서 모든 착물들은 1:1전해질로, 물에서는 1:4전해질로 각각 행동하고, DMSO용매중에서 각 착물의 환원반응은 1전자 1단계의 환원반응으로 가역적이며 확산계수는 착물종에 따라 $5.831{\times}10^{-6}{\sim}6.900{\times}10^{-6}$이었다. 그리고 모든 착물의 물분자는 -1.8V(대조전극, SCE)이상에서 분해를 일으켜 수소기체를 발생한다.

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EFFECT OF CARBONATE ON THE SOLUBILITY OF NEPTUNIUM IN NATURAL GRANITIC GROUNDWATER

  • Kim, B.Y.;Oh, J.Y.;Baik, M.H.;Yun, J.I.
    • Nuclear Engineering and Technology
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    • 제42권5호
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    • pp.552-561
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    • 2010
  • This study investigates the solubility of neptunium (Np) in the deep natural groundwater of the Korea Atomic Energy Research Institute Underground Research Tunnel (KURT). According to a Pourbaix diagram (pH-$E_h$ diagram) that was calculated using the geochemical modeling program PHREEQC 2.0, the redox potential and the carbonate ion concentration both control the solubility of neptunium. The carbonate effect becomes pronounced when the total carbonate concentration is higher than $1.5\;{\times}\;10^{-2}$ M at $E_h$ = -200 mV and the pH value is 10. Given the assumption that the solubility-limiting stable solid phase is $Np(OH)_4(am)$ under the reducing condition relevant to KURT, the soluble neptunium concentrations were in the range of $1\;{\times}\;10^{-9}$ M to $3\;{\times}\;10^{-9}$ M under natural groundwater conditions. However, the solubility of neptunium, which was calculated with the formation constants of neptunium complexes selected in an OECD-NEA TDB review, strongly deviates from the value measured in natural groundwater. Thus, it is highly recommended that a prediction of neptunium solubility is based on the formation constants of ternary Np(IV) hydroxo-carbonato complexes, even though the presence of those complexes is deficient in terms of the characterization of neptunium species. Based on a comparison of the measurements and calculations of geochemical modeling, the formation constants for the "upper limit" of the Np(IV) hydroxo-carbonato complexes, namely $Np(OH)_y(CO_3)_z^{4-y-2z}$, were appraised as follows: log $K^{\circ}_{122}\;=\;-3.0{\pm}0.5$ for $Np(OH)_2(CO_3)_2^{2-}$, log $K^{\circ}_{131}\;=\;-5.0{\pm}0.5$ for $Np(OH)_3(CO_3)^-$, and log $K^{\circ}_{141}\;=\;-6.0{\pm}0.5$ for $Np(OH)_4(CO_3)^{2-}$.

다섯자리 Schiff Base Molybdenum(Ⅴ) 착물들의 합성과 비수용매에서의 전기화학적 성질 (Synthesis of Pentadentate Schiff Base Molybdenum(Ⅴ) Complexes and Their Electrochemical Properties in Aprotic Solvents)

  • 김선숙;최주형;최용국;정병구
    • 대한화학회지
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    • 제38권2호
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    • pp.160-168
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    • 1994
  • 다섯자리 Schiff base의 molybdenum(Ⅴ)착물로써 [Mo(Ⅴ)O(Sal-DET)(NCS)] 와 [Mo(Ⅴ)O(Sal-DPT)(NCS)]들을 Sabat법에 의해 합성하였다. 이들 착물들의 원소분석, IR-spectrum, UV-Vis spectroscopy 및 Thermogravimetric analysis(T.G.A.)곡선으로부터 리간드 대 금속의 몰비가 1:1착물임을 확인하였다. 0.1M tetraethyl ammonium perchlorate(TEAP)지지전해질을 포함한 비수용매에서 순환 전압-전류법과 시차펄스 폴라그래피에 의한 전기화학적 측정으로부터 이들 착물들은 dimer로 형성된 후, 일전자 전이의 확전자 전이의 확산지배적인 환원과정이 다음과 같이 네단계로 진행됨을 알았다. 2Mo(Ⅴ)$\rightleftarrow^{e-}$ Mo(Ⅴ)Mo(Ⅳ) $\longrightarrow^{e-}$ 2Mo(Ⅳ), Mo(Ⅳ)$\longrightarrow^{e-}$ Mo(Ⅲ) $\longrightarrow^{e-}$ Mo(Ⅱ)

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비수용매에서 Schiff Base를 가진 Cobalt(II) 착물들의 전기화학적 성질 (Electrochemical Properties of Cobalt(II) Schiff Base Complexes in Nonaqueous Solvent)

  • 오정근;최용국
    • 분석과학
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    • 제15권2호
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    • pp.97-101
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    • 2002
  • Co(II)착물들을 세자리 Schiff base-NOIPH, 네자리 Schiff base-$NOTDH_2$$TNBPH_4$ 로부터 합성하였으며, 이 착물들의 산화-환원 과정 mecanism을 지지 전해질로서 0.1 M TBAP를 포함한 DMF용액에서 작업전극으로 유리질 탄소전극을 사용하여 순환 전압-전류법과 펄스 차이 전압-전류법에 의해서 알아 보았다. [Co(II)$(NOIP)_2$]와 [Co(II)(NOTD)$(H_2O)_2$] 착물의 환원은 Co(III)/Co(II)의 반응이 비가역적으로 진행되고 Co(II)/Co(I)의 반응이 준가역적으로 진행되는 일전자의 2단계반응이 확산 지배적으로 일어났다. 반면에 [$Co(II)_2$(TNBP)] 착물의 환원반응은 $Co(II)_2$가 Co(II)/Co(I)로 진행되는 준가역적이며 일전자 일단계의 반응이 확산지배적으로 일어났다.

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

  • 김선덕;이영석;박정은
    • 분석과학
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    • 제13권5호
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    • pp.558-564
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    • 2000
  • 단핵성 네자리 시프염기인 N,N'-bissalicylidene-1,2-phenylenediamine(BSPD)와 이핵성 네자리 시프 염기 리간드인 N,N',N'',N'''-tetrasalicylidene-3,3',4,4'-tetraaminodiphenyl-methane (TSTM) 및 N, N',N'',N'''-tetrasalicylidene-3,3'-diaminobenzidine (TSDB)을 합성하고, 이들 리간드의 양성자 해리상수를 전위차법으로 구하였다. 합성된 시프염기 리간드들과 Cu(II) 이온을 이용해 착물을 합성하여 순환전압-전류법으로 착물의 특성을 측정한 결과 $Cu(II)_2$-TSTM 착물은 순환전압-전류법에서 두 과정 두 단계의 환원과정으로 두 전자의 확산 지배적인 과정으로 일어남을 알았다. 또한 단핵성 착물 Cu(II)-BSPD와 이핵성 착물 $Cu(II)_2$-TSDB 및 $Cu(II)_2$-TSTM을 ascorbic acid의 산화반응에 이용한 결과, 반응속도는 $Cu(II)_2$ -TSTM>$Cu(II)_2$-TSDB>Cu(II)-BSPD의 순으로 이핵성인 $Cu(II)_2$-TSTM 착물이 가장 큰 값을 가짐을 알았다.

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세자리 Schiff base 몰리브데늄(Ⅴ) 착물들의 합성과 비수용매에서의 전기화학적 성질 (Synthesis of Tridentate Schiff base Molybdenum(Ⅴ) Complexes and Their Electrochemical Properties in Aprotic Solvents)

  • 최용국;송미숙;임채평;조기형
    • 대한화학회지
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    • 제39권1호
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    • pp.47-56
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    • 1995
  • 세자리 Schiff base의 몰리브네늄(V) 착물로써 $[Mo(Ⅴ)_2O(SOHB)_4],\; [Mo(Ⅴ)_2O_3(SOIP)_2(NCS)_2]$$ [Mo(Ⅴ)_2O_3(SOTB)_2(H_20)_2]$ (SOHB: Salicylidene-o-imino hydroxybenzene, SOIP; Salicylidene-o-imino pyridine, SOTB; Salicylidene-o-imino thiolbenzene)들을 합성하였다. 이들 착물들의 원소분석과 금속정량, IR, UV-visible spectrum 및 열무게분석(TGA)으로부터 금속과 리간드의 몰비가 1:1 및 1:2 착물임을 확인하였다. 0.1 M tetraethylammonium perchlorate (TEAP) 지지전해질을 포함한 비수용매에서 순환 전압-전류법과 시차펄스 폴라로그래피에 의한 전기화학적 측정으로부터 이들 착물들은 일전자 전이의 확산지배적인 환원과정이 다음과 같이 진행됨을 알았다. Mo(Ⅴ)Mo(Ⅴ)e-→ Mo(Ⅴ)Mo(Ⅳ)e-→Mo(Ⅳ)Mo(Ⅳ)e-→Mo(Ⅳ)Mo(Ⅲ).

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DNA Ligand - Redox Active Molecule Conjugates as an Electrochemical DNA Probe

  • Ihara, Toshihiro;Maruo, Voshiyuki;Uto, Yoshihiro;Takenaka, Shigeori;Takagi, Makoto
    • 분석과학
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    • 제8권4호
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    • pp.887-894
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    • 1995
  • Toward the development of universal, sensitive, and convenient method of DNA (or RNA) detection, two kinds of electrochemically active DNA ligands. acridine - viologen and oligonucleotide - ferrocene conjugate, were prepared. Thermodynamic and electrochemical study revealed that these probes bound strongly to DNA, and showed a typical cyclic voltammograms, indicating a potential for use as a reversible electrochemical labelling agent for DNA. Especially, using the electrochemically active oligonucleotide, we have been able to demonstrate the detection of DNA at femtomole levels by HPLC equipped with ordinary electrochemical detector (ECD). These results lead to the conclusion that the redox-active probes are very useful for the microanalysis of nucleic acid due to the stabilily of the complexes, high detection sensitivity, and wide applicability to the target structures (single- and double strands) and sequences.

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