• 제목/요약/키워드: Nickel(II)

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Polyelectrolyte-Metal(II) 이온의 착물화 (제 3 보). Iron(II), Cobalt(II) Nickel(II) 및 Copper(II)와 Branched Poly(ethylene imine) (BPEI)간의 착물생성 (Complexation of Polyelectroyte-Metal(II) Ion. III. The Complex Formation of Iron(II), Cobalt(II), Nickel(II) and Copper(II) with Branched Poly(ethylene imine) (BPEI) in Aqueous Solution)

  • 김동수;조태섭
    • 대한화학회지
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    • 제30권5호
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    • pp.456-464
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    • 1986
  • branched poly(ethylene imine) (BPEI)와 2가 전이금속인 Fe(II), Co(II), Ni(II) 및 Cu(II)간의 착물생성을 가시선 흡수 및 30${\circ}$, 0.1M KCl수용액 중에서 pH적정법으로 연구하였다. M(II)-BPEI착물의 안정도 상수는 M(II)-BPEI착물의 안정도 상수는 Gergor등에 의해 수정된 Bjerrum법으로 계산하였다. M(II)-BPEI착물의 생성 곡선으로 부터 ethylene imine group이 Fe(II)이온에 네자리, Co(II), Ni(II) 및 Cu(II) 이온에 각각 두 자리 배위된 착물이 생성됨을 알 수 있었다. Cu(II)-BPEI착물의 경우 pH 3.4~3.8을 기준으로 산성도가 감소 또는 증가함에 따라 최대 흡광도(${\lambda}_{max}$)는 장파장 쪽으로 이동하고, 흡광도는 pH증가에 따라 감소하였다. 총괄 안정도 상수(log $K_2$)는 Co(II) < Cu(II) < Ni(II) < Fe(II)순으로 증가하였다.

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Structural, Electrochemical, DNA Binding and Cleavage Properties of Nickel(II) Complex [Ni(H2biim)2(H2O)2]2+ of 2,2'-Biimidazole

  • Jayamani, Arumugam;Thamilarasan, Vijayan;Ganesan, Venketasan;Sengottuvelan, Nallathambi
    • Bulletin of the Korean Chemical Society
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    • 제34권12호
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    • pp.3695-3702
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    • 2013
  • A nickel(II) complex $[Ni(H_2biim)_2(H_2O)_2](ClO_4)_2{\cdot}H_2O$ (1) of biimidazole ligand has been synthesized and characterized (Where $H_2biim$ = 2,2'-biimidazole). The single crystal X-ray diffraction of the complex shows a dimeric structure with six coordinated psudo-octahedral geometry. The cyclic voltammograms of complex exhibited one quasireversible reduction wave ($E_{pc}=-0.61V$) and an irreversible oxidation wave ($E_{pa}=1.28V$) in DMF solution. The interaction of the complex with Calf-Thymus DNA (CT-DNA) has been investigated by absorption and fluorescence spectroscopy. The complex is an avid DNA binder with a binding constant value of $1.03{\times}10^5M^{-1}$. The results suggest that the nickel(II) complex bind to CT-DNA via intercalative mode and can quench the fluorescence intensity of EB bind to CT-DNA with $K_{app}$ value of $3.2{\times}10^5M^{-1}$. The complex also shown efficient oxidative cleavage of supercoiled pBR322 DNA in the presence of hydrogen peroxide as oxidizing agent. The DNA cleavage by complex in presence of quenchers; viz. DMSO, KI, $NaN_3$ and EDTA reveals that hydroxyl radical or singlet oxygen mechanism is involved. The complex showed invitro antimicrobial activity against four bacteria and two fungi. The antimicrobial activity was nearer to that of standard drugs and greater than that of the free ligand.

Selective Oxidation of Olefins Catalyzed by Polymer-anchored Nickel(II) Complex in Water Medium

  • Islam, Manirul;Hossain, Dildar;Mondal, Paramita;Roy, Anupam Singha;Mondal, Sanchita;Mobarak, Manir
    • Bulletin of the Korean Chemical Society
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    • 제31권12호
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    • pp.3765-3770
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    • 2010
  • Selective oxidation of olefins has been carried out in water medium with tert-butylhydroperoxide (TBHP, 70% aqueous) as an oxidant using polymer-anchored Ni(II) complex as a catalyst. Several parameters were varied to optimize the reaction conditions. Under the optimized reaction conditions olefins gave selectively allylic oxidation products. The present polymer anchored Ni(II) complex can be recycled five times without any appreciable loss in catalytic activity.

Template Synthesis and Properties of Square Planar Nickel(II) and Copper(II) Complexes of 14-Membered Hexaaza Macrocyclic Ligands with Various Alkyl Pendant Arms at the Uncoordinated Nitrogens

  • Jung, Soo-Kyung;Kang, Shin-Geol;Suh, Myung-Hyun
    • Bulletin of the Korean Chemical Society
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    • 제10권4호
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    • pp.362-366
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    • 1989
  • Square planar nickel(II) and copper(II) complexes of 14-membered macrocyclic ligands containing various alkyl pendant arms at the uncoordinated nitrogen atoms, 1,8-dipropyl, 1,8-dibutyl, 1,8-bis(2-methylpropyl), 1,8-bis(2-ethylhexyl), and 1,8-dibenzyl-1,3,6,8,10,13-hexaazacyclotetradecane have been prepared from the template condensation of ethylenediamine, formaldehyde, and appropriate primary amines in the presence of the metal ion. The spectroscopic and electrochemical properties of these complexes are similar to those of tetraaza macrocyclic complexes and are not affected significantly by the nature of the alkyl groups.

Nickel Complexes of Alanine Having a Preference for One Chiral Form over Another upon Crystallization

  • Khatib, Awni;Aqra, Fathi
    • Bulletin of the Korean Chemical Society
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    • 제30권9호
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    • pp.2017-2020
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    • 2009
  • Three complexes, [bis(L-, D- and DL-alaninato)(diaqua)]nickel(II) di-hydrate, were prepared and characterized by X-ray crystallography, gas chromatography, UV-Visible spectroscopy and isothermal calorimetry. Small deviations from the 50:50 distribution of the enantiomers assigned to chiral preferences of the ligands in the complexes were observed. The surprising and unexpected results indicate that complexing alanine with nickel(II) ion alters the racemization rates of D and L isomers of the amino acid. The precipitated complex due to change in pH resulted in preferential precipitation of one isomer with respect to the other. It has been observed that this alternation is ogmented by the long time span which would result in preferential protein forming from the L-isomer. Although the results are bizarre and perplexing, they are fascinating and sound scientifically.

Polymerization of Methyl Methacrylate with Nickel $\alpha$-Diimine Catalysts: Effect of the Methyl Position in the Ligand

  • Kim, Il;Kim, Jae-Sung;Han, Byeong-Heui;Ha, Chang-Sik
    • Macromolecular Research
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    • 제11권6호
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    • pp.514-517
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    • 2003
  • In the solution polymerizations of methyl methacrylate with (${\alpha}$-diimine)nickel(II)/methylaluminoxane (MAO), we observed effects of the position of two methyl substituents in the ligand on both the activities of the catalysts and the polymer microstructure. ${\alpha}$-Diimine nickel(II) catalysts gave syndiotactic-rich poly(methyl methacrylate) with high molecular weight and narrow molecular weight distribution.

Diaquabis(ethylenediamine)nickel(II) Bis(p-toluenesulfonate) Monohydrate 층상 화합물의 합성과 구조 분석 (Synthesis and Structural Analysis of the Diaquabis(ethylenediamine)nickel(II) Bis(p-toluenesulfonate) Monohydrate)

  • 김종혁;이석근
    • 분석과학
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    • 제15권3호
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    • pp.317-320
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    • 2002
  • The layer structure of the title compound, $[Ni(en)_2(H_2O)_2](CH_3C_6H_4SO_3)_2(H_2O)$ (en = ethylenediamine), consists of discrete cations, anions, and solvate water molecules linked by a hydrogen bonding network. The central Ni atom of the cation layer has a slightly distorted octahedral coordination geometry with the ethylenediamine ligands functioning as a N,N'-bidentate and the water ligands bonding through oxygen in a trans arrangement. The p-toluenesulfonate of the anion layer has an alternate sulfonate group directed toward opposite side of the cation layer. This layer structure is stabilized by a hydrogen bond involving the O atoms of the sulfonate, the water ligand, solvate water molecule, and the N atoms of the ethylenediamine.

Macrocyclic Tetraamine Bis(isocyanato-N)nickel (II) Complex

  • Park, Ki-Young;Kim, Moon-Jib;Lee, Chang-Hee;Seong, Baek-Seok;Lee, Jin-Ho;Suh, Il-Hwan
    • 한국결정학회지
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    • 제9권2호
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    • pp.92-95
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    • 1998
  • The structure of bis(isocyanto-N)nickel (II) complex, [Ni(L)(NCO)2] (L: 2,5,9,12-tetramethyl-1,4,8,11-tetraazacyclotetradecane), is centrosymmetric and the central nickel has an axially elongated octahedral geometry with two nitrogen atoms of the isocyanate ligand.

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Synthesis and Structure Analysis of α and β Forms of [12] Metallacrown-6 Nickel(II) Complex: [Ni6(SCH2CH2CH3)12]

  • Xiao, Hai Lian;Jian, Fang Fang;Zhang, Ke Jie
    • Bulletin of the Korean Chemical Society
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    • 제30권4호
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    • pp.846-848
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    • 2009
  • Two modifications of the ${\alpha}\;and\;{\beta}$ forms of propyl mercaptan nickel(II) cluster, [$Ni_6(SCH_2CH_2CH_3)_{12}$], have been synthesized and their crystal structures have been determined by single-crystal X-ray diffraction. The alkyl groups are away from $Ni_6$ ring in $\alpha$ form whereas they are near to the Ni atom in $\beta$ form. The distance of Ni-H in $\beta$ form [2.576(5) $\AA$] is much shorter than that in $\alpha$ form [3.101(2) $\AA$]. In the crystal lattice of $\beta$ form, the whole structure forms a flower shape.