• 제목/요약/키워드: Macrocyclic complexes

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Synthesis and Characterization of New Mono-N-functionalized Tetraaza Macrocyclic Nickel(II) and Copper(II) Complexes

  • Kim, Hyun-Ja;Kang, Shin-Geol
    • Bulletin of the Korean Chemical Society
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    • 제32권8호
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    • pp.2565-2570
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    • 2011
  • The reaction of bromoacetonitrile with 3,14-dimethyl-2,6,13,17-tetraazatetracyclo[$16.4.1^{2.6}.0^{1.18}.0^{7.12}$]tricosane ($L^{10}$) containing a N-$CH_2$-N linkage produces 17-cyanomethyl-3,14-dimethyl-2,6,13,17-tetraazatetracyclo-[$16.4.1^{2.6}.0^{1.18}.0^{7.12}$]tricosane ($L^{11}$). The mono-N-functionalized macrocyclic complexes $[ML^2]^{2+}$ (M = Ni(II) or Cu(II); $L^2$ = 2-cyanomethyl-5,16-dimethyl-2,6,13,17-tetraazatricyclo[$16.4.0.0^{7.12}$]docosane) can be prepared by the reaction of $L^{11}$ with nickel(II) or copper(II) ion in acetonitrile. The N-$CH_2CN$ group attached to $[ML^2]^{2+}$ readily reacts with water or methanol to yield the corresponding complexes of $HL^3$ bearing one N-$CH_2CONH_2$ pendant arm or $L^4$ bearing one $N-CH_2C(=NH)OCH_3$ group. The $N-CH_2CONH_2$ or $N-CH_2C(=NH)OCH_3$ group of each complex is coordinated to the central metal ion. Both $[NiL^4(H_2O)]^{2+}$ and $[CuL^4]^{2+}$ are quite stable in acidic aqueous solutions, but undergo hydrolysis to yield $[Ni(HL^3)(H_2O)]^{2+}$ or $[Cu(HL^3)]^{2+}$ in basic aqueous solutions. In contrast to $[Cu(HL^3)]^{2+}$, $[Ni(HL^3) (H_2O)]^{2+}$ is readily deprotonated to form $[NiL^3 (H_2O)]^+$ ($L^3$ = a deprotonated form of $HL^3$) in basic aqueous solutions.

Studies on Reactions of a Nickel Complex of a New Completely Conjugated Macrocyclic Ligand

  • Park, Young-Ae W.;Oh, Soon-Song
    • Bulletin of the Korean Chemical Society
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    • 제8권6호
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    • pp.476-479
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    • 1987
  • The macrocyclic nickel complex of the molecular formula[Ni($C_{32}H_{26}N_4$)] has been synthesized from the template condensation reaction between 1-benzoylacetone and o-phenylenediamine in the presence of nickel acetate. Protonation and deuterium exchange reactions of the demetallated macrocyclic ligand and the nickel complex have been carried out. The infrared, electronic and proton magnetic resonance spectral data of both compounds are compared and discussed; protonation of the macrocyclic ligand take place at the nitrogen atoms and all the amine protons undergo very rapid deuterium exchange while the methine protons undergo very slow exchange. On the other hand, protonation of the nickel complex occurs at the nitrogen atoms and only amine protons undergo rapid deuterium exchange. Protonation and deprotonation of the nickel complexes proceed reversibly.

Cr(III)-Tetraaza Macrocyclic Complexes Containing Auxiliary Ligands (Part I); Synthesis and Characterization of Cr(III)-Benzoato and Chlorobenzoato Macrocyclic Complexes

  • Byun, Jong-Chul;Kim, Goo-Cheul;Han, Chung-Hun
    • Bulletin of the Korean Chemical Society
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    • 제25권7호
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    • pp.977-982
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    • 2004
  • The reaction of $cis-[Cr([14]-decane)(OH_2)_2]^+$ ([14]-decane = rac-5,5,7,12,12,14-hexamethyl-1,4,8,11-teraazacyclotetradecane) with auxiliary ligands {$L_a$ = benzoate(bz) or chlorobenzoate(cbz)} leads to a new compound $[Cr([14]-decane)(bz)_2]ClO_4$ or $[Cr([14]-decane)(cbz)_2]ClO_4$. These complexes have been characterized by a combination of elemental analysis, conductivity, IR and Vis spectroscopy, mass spectrometry, and X-ray crystallography. The crystal structure of $[Cr([14]-decane)(cbz)_2]^+$ was determined. The complex shows a distorted octahedral coordination environment with the macrocycle adopting a folded cis-V conformation. The angle $N_{axial}-Cr-N_{axial}$ deviates by $14.5^{\circ}$ from the ideal value of $180^{\circ}$for a perfect octahedron. The bond angle cis-O-Cr-O between the Cr(III) ion and the two carboxylate oxygen atoms of the monodentate p-chlorobenzoate ligands is close to 90$^{\circ}$. The FAB mass spectra of the $cis-[Cr([14]-decane)(La)_2]ClO_4$ display peaks due to the molecular ions $[Cr([14]-decane)(bz)_2-H]^\;,\;[Cr([14]-decane)(cbz)_2-2H]^$ at m/z 578, 646, respectively.

디메틸술폭시드 용매중에서 거대고리리간드를 포함한 우라늄(VI)과 희토류(III) 금속 착물의 폴라로그램 (Polarograms of Uranium(VI) and Rare Earth(III) Metal Complexes with Macrocyclic Ligands in Dimethylsulfoxide Solvent)

  • 정학진;정오진;최칠남
    • 대한화학회지
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    • 제32권3호
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    • pp.233-242
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    • 1988
  • 디메틸술폭시드 용매 중에서 아직 밝혀진 바 없는 불포화계 $N_2O_2$형 거대고리 리간드들을 포함한 우라늄(VI)과 네오디움(III)착물, 그리고 cryptand 222와 DBC 거대고리 리간드를 가지는 네오디움(III)과 우라늄(VI)착물에 대한 직류폴라로그래프적 거동을 조사하였다. 직류폴라로그래피에 의하여 리간드와 착물의 산화 환원성, 가역성, 환원과정에 관여하는 전자수 및 산첨가에 따른 영향 및 산화-환원전극반응의 메카니즘을 알아 보았다. 그리고 착물들의 안정도 상수와 조성비를 알아보았다. immine계 거대고리 리간드를 가지는 네오디움(III)착물의 환원파는 나타나지 않았으나, 우라늄(VI)착물은 6전자 3단계 환원파를 DBC를 가지는 우라늄(VI)착물은 2전자 2단계 환원파를, 그리고 cryptand 222와 DBC를 가지는 네오디움(III)착물은 1전자 1단계 환원파를 각각 나타내었으며 이들 착물들은 확산지배적이며 가역성은 비교적 좋았다. uranyl(II)금속 착이온의 제 1,2단계 환원파는 1전자 환원반응이며 제 3단계 환원파에서는 4전자 환원반응, 그리고 neodymium(III)착물은 1전자 1단계 환원과정을 가진다. DBC와 imine계 거대고리 리간드를 가지는 우라늄(VI)착물은 pH=7.0이상에서, cryptand 222와 DBC를 리간드로 하는 네오디움(III)착물은 pH=4.0 이상에서 안정한 착물을 형성한다. imine계 거대고리 리간드를 가지는 $UO_2\;^{2+}$착물의 안정도 상수값은 $7.008{\sim}7.273$이라는 새로운 안정도 상수값들을 얻었고 이 값들은 Odien-Ntn > Trans Otn-Ntn = Cis Otn-Ntn > Oen-Ntn 순이었다. 그리고 $UO_2(II)$-cryptand 222 및 Nd(III)-DBC 착물의 안정도 상수값은 7.614, 12.669, 4.223이었고 DBC리간드 착물에서는 $UO_2\;^{2+}$착물의 안정도 상수값이 $Nd^{3+}$의 그것보다 크며 $Nd^{3+}-cryptand\;222$ 착물의 안정도 상수가 가장 크다.

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Spectroscopic characterization of N,N'-bis(salicylidene)pentane-1,3-diamine nickel(II) complex

  • Kim, Gilhoon;Won, Hoshik
    • 한국자기공명학회논문지
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    • 제18권2호
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    • pp.74-81
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    • 2014
  • The $N_2O_2$ tetradentate Schiff base ligand, N,N'-bis(salicylidene)pentane-1,3-diamine (Salpn), coupled with 1:2 concentration ratio of 1,3-diaminopentane and salicylaldehyde was used to produce a series of macrocyclic Nikel(II) complexes. In the metal complexation, it was observed that Salpn macrocyclic ligand can adopt more than a metal ion giving an unique multinuclear metal complexes including Ni(II)Salpn and $Ni(II)_3(Salpn)_2$. Characteristic IR ${\upsilon}(M-O)$ peaks for Ni(II)Salpn and $Ni(II)_3(Salpn)_2$ were observed to be $1028cm^{-1}$ and $1024cm^{-1}$, respectively. Characteristic UV-Vis absorption ${\lambda}_{max}$ peaks for $Ni(II)_3(Salpn)_2$ were observed to be 241nm and 401 nm. Structural characterization of $Ni(II)_3(Salpn)_2$ by NMR exhibits that the salicylidene ring moiety has two different resonance signals originated from the magnetically asymmetric diligand and trinuclear bis complex. Complete NMR signal assignments and characterizations elucidating structural features of $Ni(II)_3(Salpn)_2$ were described in detail.