• 제목/요약/키워드: macrocycle L

검색결과 38건 처리시간 0.027초

Synthesis and Characterization of Nickel(II) Tetraaza Macrocyclic Complex with 1,1-Cyclohexanediacetate Ligand

  • Lim, In-Taek;Kim, Chong-Hyeak;Choi, Ki-Young
    • 대한화학회지
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    • 제62권6호
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    • pp.427-432
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    • 2018
  • The reaction of [$[Ni(L)]Cl_2{\cdot}2H_2O$ (L = 3,14-dimethyl-2,6,13,17-tetraazatricyclo[$14,4,0^{1.18},0^{7.12}$]docosane) with 1,1-cyclohexanediacetic acid ($H_2cda$) yields mononuclear nickel(II) complex, [$Ni(L)(Hcda^-)_2$] (1). This complex has been characterized by X-ray crystallography, electronic absorption, cyclic voltammetry and thermogravimetric analyzer. The crystal structure of 1 exhibits a distorted octahedral geometry with four nitrogen atoms of the macrocycle and two 1,1-cyclohexanediacetate ligands. It crystallizes in the triclinic system P-1 with a = 11.3918(7), b = 12.6196(8), $c=12.8700(8){\AA}$, $V=1579.9(2){\AA}^3$, Z = 2. Electronic spectrum of 1 also reveals a high-spin octahedral environment. Cyclic voltammetry of 1 undergoes one wave of a one-electron transfer corresponding to $Ni^{II}/Ni^{III}$ process. TGA curve for 1 shows three-step weight loss. The electronic spectra, electrochemical and TGA behavior of the complex are significantly affected by the nature of the axial $Hcda^-$ ligand.

Geometrical Characteristics and Atomic Charge Variations of Pd(II) Complexes [Pd(L)Cl2] with an Axial (Pd·O) Interaction

  • Park, Jong-Keun;Cho, Yong-Guk;Lee, Shim-Sung;Kim, Bong-Gon
    • Bulletin of the Korean Chemical Society
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    • 제25권1호
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    • pp.85-89
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    • 2004
  • Geometrical structures of [Pd(L)$Cl_2$] with oxathia macrocycles have been calculated using ab initio secondorder Moller-Plesset (MP2) and Density Functional Theory (DFT) methods with triple zeta plus polarization (TZP) basis set level. In optimized Pd(L)$Cl_2$ complexes, Pd(II) locates at the center surrounded by a square planar array of two sulfurs on an oxathia macrocycle and two chlorides. The endo-Pd(II) complexes with an axial (Pd${\cdots}$O) interaction are more stable than the exo-Pd(II) complexes without the interaction. In the endo-Pd(II) complexes, the atomic charge of the oxygen atom moves to Pd(II) via the axial ($Pd{\cdots}$O) interaction and then, the charge transfer from Pd(II) to the S-atoms occurs stepwise via ${\pi}$-acceptors of the empty d-orbitals.

Anion-Dependent Exocyclic Mercury(II) Coordination Polymers of Bis-dithiamacrocycle

  • Siewe, Arlette Deukam;Kim, Seulgi;Choi, Kyu Seong;Lee, Shim Sung
    • Bulletin of the Korean Chemical Society
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    • 제35권12호
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    • pp.3459-3464
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    • 2014
  • Synthesis and structural characterization of mercury(II) halides and perchlorate complexes (1-4) of bis-$OS_2$-macrocycle (L) are reported. L reacts with mercury(II) chloride and bromide to yield an isostructural 2D coordination polymers with type $[Hg(L)X_2]_n$ (1: X = Cl and 2: X = Br). In 1, each Hg atom which lies outside the cavity is six-coordinate with a distorted octahedral geometry, being bound to four adjacent ligands via monodentate Hg-S bonds and two remaining sites are occupied by two terminal chlorido ligands to form a fishnet-like 2D structure. When reacting with mercury(II) iodide, L afforded a 1D coordination polymer $\{[Hg_2(L)I_4]{\cdot}CHCl_3\}_n$ (3) in which each exocyclic Hg atom is four-coordinate, being bound to two sulfur donors from different ligands doubly bridging the ligand molecules in a head-to-tail mode. The coordination sphere in 3 is completed by two iodo terminal ligands, adopting a distorted tetrahedral geometry. On reacting with mercury(II) perchlorate, L forms solvent-coordinated 1D coordination polymer $\{[Hg_2(L)(DMF)_6](ClO_4)_4{\cdot}2DMF\}_n$ (4) instead of the anion-coordination. In 4, the Hg atom is five-coordinate, being bound to two sulfur donors from two different ligands doubly bridging the ligand molecules in a side-by-side mode to form a ribbon-like 1D structure. The three remaining coordination sites in 4 are completed by three DMF molecules in a monodentate manner. Consequently, the different structures and connectivity patterns for the observed exocyclic coordination polymers depending on the anions used are influenced not only by the coordination ability of the anions but also by anion sizes.

Synthesis and Characterization of Zinc(II) Tetraaza Macrocyclic Complexes with Aquo and Nitrate Ligands

  • Lim, In-Taek;Kim, Chong-Hyeak;Choi, Yoon-Mi;Park, Jong-Hoon;Choi, Ki-Young
    • 대한화학회지
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    • 제62권1호
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    • pp.14-18
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    • 2018
  • The complexes $[Zn(L)(H_2O)_2]{\cdot}2NO_2$ (1) and $[Zn(L)(NO_3)_2]$ (2) (L = 3,14-dimethyl-2,6,13,17-tetraazatricyclo $[14,4,0^{1.18},0^{7.12}]$docosane) have been synthesized and structurally characterized. The compound 1 crystallizes in the monoclinic system $P2_1/c$ with a = 8.74650(10), b = 18.6880(3), c = $7.96680(10){\AA}$, ${\beta}=109.1920(10)^{\circ}$, $V=1229.84(3){\AA}^3$, Z = 2. The compound 2 crystallizes in the monoclinic system P1 with a = 8.1292(5), b = 8.9244(5), c = $9.1398(5){\AA}$, ${\alpha}=68.035(2)$, ${\beta}=70.109(2)$, ${\gamma}=75.649(3)^{\circ}$, $V=572.70(6){\AA}^3$, Z = 1. The crystal structures of the compounds 1 and 2 show a distorted octahedral coordination geometry around the zinc(II) ion, with four secondary amines and two oxygen atoms of the two water and two nitrate ligands at the axial position. The TGA behaviors of the complexes are significantly affected by the nature of the tetraaza macrocycle and the axial ligands.

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.

거대고리 운반체에 의한 중금속이온의 에멀죤 액체막 수송 (Emulsion Liquid Membrane Transport of Heavy Metal Sons by Macrocyclic Carriers)

  • 정오진
    • 한국환경과학회지
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    • 제4권2호
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    • pp.223-232
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    • 1995
  • 액체막의 운반체로 사용할 새로운 2개의 거대고리화합물을 합성하였다. 이들 결과들은 이 시스템을 구성하는데 있어서 이론의 응용성을 증명하여 준다. source phase의 공존이온으로서 $SCN^-$,$I^-$$Cl^-$이온을 그리고 receicing phases에서 $S_2O_3^{2-}$$P_2O_7^{4-}$을 이용한 액세막계로서부터 중금속 이온들에 대한 선택적 수송효율을 검토하였다. source phase의 M(II)이 $Cd(SCN)_2$$(P[SCN^-]= 0.40M)$, $Hg(SCN)_2([SCN^-]=0.40M)$, Pd(CN)$([CN^-]= 0.40M)$일때 M(II)의 수송율은 최대값을 나타낸다. 각가의 경쟁 양이온에 대한 Cd(II)이나 Pd(II)은 source phase가 00.3M-$S_2O_3^{2-}$이나 0.3M-$P_2O_7^{4-}$ 일때 가장 잘 분리된다.이 연구의 결과에서, 이 액체막계에서 효과적인 거대고리-매질수송을 하기 위해서는 두개의 규칙이 반드시 필요하다. 첫째, tiluence중으로 $M^{n+}$이온이 효과적으로 추출되고, 즉 만일 $M^{n+}$ 거대고리화합물 상호작용에 대한 logK값과 $M^{n+}$-거대고리화합물($L_1$이나 $L_2$)의 상호작용에 대한 logK값의 비가 충분히 크다면 receiving phase와 toluene의 접촉면으로부터 쉽게 중금속이온($Cd^{2+}$,$Pb^{2+}$$Hg^{2+}$)들이 떨어져 나온다. $L_1$(3,5-benzo-10,13,18,21-tetraoxa-1,7-diazabicyclo(8,5,5)eicosnan)은 $Cd^{2+}$$Pb^{2+}$ 이온과 안정한 착물을 형성한다. 그리고 $L_1$은 수용액중에서 용해하기가 매우 어렵다. 그리고 $Cd^{2+}$$L_1$$Pb^{2+}$$L_1$착물은 $Cd^{2+}-{(S_2O_3)}_2^{2-}$$Pd^{2+}-P_2O_7^{4-}$착물보다 비교적 불안정하다. 다른 한편으로 $Hg^{2+}-L_1$착물의 안정도는 $Hg^2-{2+}-(S_2O_3)_2^{2-}$이나 $Pb^{2+}-P0_2O_7^{4-}$의 그것보다 그리고 $L_2$(5,8,15,18,23,26-hexaoxa-1,12-diazabicyclo(10,8,8)octacosan)의 tuluene에 대한 분배계수는 $L_1$의 그것보다 훨씬 작다. 따라서 $Hg^{2+}$-$L_1$이나 $M^{n+}$이나 $M^{n+}-L-2(M^{2+}=Cd^{2+}, Pb^{2+}$이나 $Hg^{2+})$의 안정도수상수가 매우 큼에도 불구하고 이들 양이온의 수송량은 매우 적다.

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Template Synthesis of New Nickel(Ⅱ) Comlexes of 14-Membered Pentaaza Macrocyclic Ligands: Effects of C-Alkyl and N-Hydroxyalkyl Pendant Arms on the Solution Behaviors of the Complexes

  • 강신걸;최장식;김성진
    • Bulletin of the Korean Chemical Society
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    • 제16권6호
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    • pp.518-523
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    • 1995
  • New square planar nickel(Ⅱ) complexes with various 1-alkyl (4a-4c) and 1-hydroxyalkyl (4d-4f) derivatives of the 14-membered pentaaza macrocycle 8-ethyl-8-nitro-1,3,6,10,13-pentaazacyclotetradecane have been synthesized by two-step metal template condensation reactions of ethylenediamine, nitroethane, formaldehyde, and appropriate primary amines. The nitro group and/or hydroxyl group of 4a-4f are not directly involved in the coordination. The nickel(Ⅱ) complexes exist in coordinating solvents such as MeCN, Me2SO, and H2O as equilibrium mixtures of the square planar [Ni(L)]2+(L=4a-4f) and octahedral species [Ni(L)S2]2+(S=solvent molecule). Although the ligand field strength and redox potentials of the complexes are not affected by the nature of the substituents, the formation of octahedral species for 4d-4f in MeCN is strongly restricted by the hydroxyl group. Synthesis, characterization, and solution behaviors of the nickel(Ⅱ) complexes are described.

$[Ni(L)](ClO_4)_2$(L: 2,13-bis(2-pyridylmethyl)-3,14-dimethyl-2,6,13,17-tetraazatricyclo[14,4,$0^{1.18},0^{7.12}$docosane) 착물의 결정구조 (Crystal Structure of $[Ni(L)](ClO_4)_2$ (L: 2,13-bis(2-pyridylmethyl)-3,14-dimethyl-2,6,13,17-tetraazatricyclo[14,4,$0^{1.18},0^{7.12}$]docosane))

  • Park, Ki-Young;Suh, Il-Hwan;Kim, Jing-Gyu;Park, Young-Soo
    • 한국결정학회지
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    • 제10권1호
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    • pp.88-93
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    • 1999
  • The complex [Ni(L)](ClO4)2 (1) (L=2,13-bis(2-pyridylmethyl)-3,14-dimethyl-2,6,13,17-tetraazatricyclo[14,4,01.1807.12]docosane) has been synthesized and characterized by X-ray crystallography. (1) crystallizes in the triclinic, space group P, with a=10.948(2), b=10.948(2), c=14.911(4) , α=93.73(2), β=93.77(2), γ=99.29(2)o, V=1754.8(7) 3, Z=2, R1(wR2) for 5217 observed reflections of [I>2σ(I)] was 0.048(0.099). The coordination environment around nickel(II) ion shows a distorted octahedron with four secondary and tertially amines of the macrocycle and two nitrogen atoms of pyridylmethyl groups.

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거대고리 Chlorotetraamine Zinc(II) 착물의 결정구조 (Crystal Structure of Macrocyclic Chlorotetraamine Zinc(II) Complex)

  • 최기영;박병빈;서일환;김진규;박영수
    • 한국결정학회지
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    • 제11권1호
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    • pp.42-45
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    • 2000
  • The complex [Zn(L)Cl](H₂O)(ClO₄) (1) (L=3,14-dimethyl-2,6,13,17-tetraazatricyclo[14,4,O/sup 1.18/,O/sup 7.12/]docosane) has been prepared and characterized by X-ray crystallography. 1 crystallizes in the monoclinic space group P2₁/c, with a=8.883(1), b=19.319(9), c=15.124(2)Å, β=101.65(1)°, V=2542.0(13) ų, Z=4, R₁(wR₂) for 4457 observed reflections of [I>2σ(I)] was 0.0640(0.1557). The coordination geometry around the zinc is a distorted square-pyramid with four nitrogen atoms of the macrocycle occupying the basal sites(Zn-N/sub av/=2.131(2)Å) and a chloride atom at the axial position with the Zn-Cl distance of 2.315(2)Å.

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