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1.
张锋  桑石云  张阳阳  张向东  李一志  陈慧兰  刘祁涛 《化学学报》2004,62(20):2055-2061,F009
合成了锌(Ⅱ)、镉(Ⅱ)与7-碘-8羟基喹啉-5-磺酸(IHQS)的两种单晶配合物[Zn(IHQS)(H2O)3]2·4H2O(1)和[Cd-(IHQS)(H2O)2]n·2nH2O(2),用X射线衍射法确定了结构.结果表明,1和2均由一对对映体配合物构成1中两个[Zn-(IHQS)(H2O)3]对映体通过磺酸基-锌(Ⅱ)八面体轴向互补配位形成中心对称双分子聚合体,该聚合体通过分子间磺酸基氧-配位水氢键形成独特的二维层状结构;2的两个[Cd(IHQS)(H2O)2]对映体通过镉(Ⅱ)-磺酸基-镉(Ⅱ)双向互补配位形成一维直线型聚合配位结构.芳香碘基呈现新颖的碘-芳环氢和碘-磺酸基氧等弱相互作用模式,并对上述结构的支撑稳定发挥重要的结构辅助作用.本文展示了芳香碘基、磺酸基和喹啉环三种弱相互作用基团在配位超分子自组装中的形状、空间匹配和协同促进模式.结晶学参数配合物1单斜晶系,C2/c空间群,a=2.2243(7)nm,b=1.0053(3)nm,c=1.3468(4)nm,β=102.267(5)°,V=2.9428(16)nm3和Z=4.配合物2三斜晶系,P1空间群,a=0.6949(2)nm,b=1.0183(3)nm,c=1.0989(3)nm,α=76.069(5)°,β=75.294(5)°,γ=84.747(5)°,V=0.7295(4)nm3和Z=2.  相似文献   

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合成了双核铜配合物 [Cu(TSSB) (H2 O) ] 2 ·2H2 O (TSSB =牛磺酸缩水杨醛席夫碱 ) ,通过元素分析、红外光谱对配合物进行了表征 ,并利用X射线法测定其结构 .晶体属三斜晶系 ,空间群P1- ,其晶胞参数为 :a =0 .69613 ( 19)nm ,b =0 .93 0 7( 3 )nm ,c=1.0 43 9( 3 )nm ;α =10 8.796( 5 )° ,β =10 1.2 71( 5 )° ,γ =10 5 .617( 5 )° ,V =0 .5 869( 3 )nm3 ,Z =1,Dcald=1.849g/cm3 ,μ =2 .0 5 8mm-1,F( 0 0 0 ) =3 3 4,Gof =1.0 79,Δρ =3 79~ -4 0 6e·nm-3 .两个铜原子配位数各为五 ,处于变形四方锥的配位环境中 .并对配合物进行了的生物活性试验 ,结果表明 ,配合物抗菌活性与青霉素接近 ,肿瘤抑制率达 63 .5 % .半数致死量为 10 0 0mg/kg .有可能成为一种新的抗菌、抗肿瘤药物  相似文献   

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摘要 在水和甲醇混合溶液中合成了3个配合物[Zn(DNBC)2(Im)2](1), [Cu(DNBC)2(Im)(H2O)](2) [Co1.5(DNBC)4(Im)(CH3OH)(H2O)2](3) (DNBC = 3,5-二硝基苯甲酸, Im = 咪唑), 并进行了常规表征,单晶X-射线衍射测定了3个配合物的晶体结构。结果表明,配合物1采用四配位,且形成扭曲的四面体形式,通过分子间氢键及范德华力形成了三维网状的超分子框架结构。配合物2中金属铜原子采用五配位,分别与四个氧原子和一个咪唑氮原子配位,形成一个扭曲的四方锥体,而且通过羧基和硝基与金属铜连接形成一个一维Z字链的超分子链状结构。配合物3的空间群为p2(1)/n, a = 1.20876(7)nm, b = 2.63287(16)nm, c = 1.36466(9)nm, V = 4.3045(5)nm3, Z = 4, F(000) = 2166, Co…Co原子之间的距离为0.3587nm。在配合物3中,由八面体配位的Co(II)离子与μ-OH2组成的三核金属钴通过氢键与相邻的三核金属钴连接,Co(II)离子与μ-OH2形成一维Z字链,并且配合物的空腔中包含未配位的咪唑和甲醇分子。配合物3的磁学性质测试表明,三核金属Co(II)之间存在着很好的反铁磁交换作用。  相似文献   

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利用 2 -甲氧羰基乙基三氯化锡与硫代水杨醛缩邻氨基苯酚 (H2 L)进行反应合成了标题配合物 [2 -(2 -羟基苯基 )亚氨甲基苯硫酚根 (2 -) -N,O,S](2 -甲氧羰基乙基 -C,O)氯化锡 CH3OCOCH2 CH2 Sn Cl L(L=2 -SC6 H4 CH NC6 H4 O-2 ) ,该配合物与二甲基亚砜 (DMSO)、六甲基磷酰胺 (HMPA)等单齿配体反应生成混配配合物 CH3OCOCH2 CH2 Sn Cl LL′(L′=DMSO,HMPA) ,与醇 (ROH)反应生成相应的 2 -烷氧羰基乙基锡配合物 ROCOCH2 CH2 Sn Cl L.通过元素分析、红外光谱、核磁共振谱等对配合物的结构进行了表征 .用 X射线单晶衍射测定了标题配合物的晶体结构 ,晶体属三斜晶系 ,P1空间群 ,Z=2 ,晶胞参数 a=0 .870 4(2 )nm,b=0 .93 93 (3 ) nm,c=1 .45 1 1 (3 ) nm,α=98.0 5 (3 )°,β=1 0 3 .0 3 (3 )°,γ=96.99(3 )°.该配合物具有分子内羰基氧原子和配体 L的硫、氮、氧原子对锡原子配位的畸变八面体结构 .  相似文献   

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合成和表征了三个异核配合物: [Cu(oxpn)Zn(bpy)2](ClO4)2·1/2H2O(1),[Cu(oxpn)Zn-(phen)2](ClO4)2·2H2O(2), [Cu(oxpn)Zn(NO2-phen)2](ClO4)2·2H2O(3)[bpy=2,2'-联吡啶、phen=1,10-菲咯啉、NO2-phen=5-硝基-1,10-菲咯啉、oxpn=N,N'-二(3-氨丙基)草酰胺阴离子], 2的晶体属单斜晶系, P2/n空间群, 晶胞参数: a=1.5061(3), b=1.2924(3), c=2.2802(3)nm, β=108.42(2)°, V=4.1869nm^3,Z=4, Dm=1.409g/cm^3, μ=12.812cm^-^1, F(000)=1812, 最终的偏离因子R=0.093,Rw=0.099。结构分析证实, 配合物具有扩充的草酰胺桥联结构, Cu(II)及Zn(II)的配位环境分别为平面四边形和畸变的八面体构型, 阳离子的对称性近似为C2v。此外, 本文还指派了配合物的电子光谱, 并对EPR、有效磁矩等数据进行了讨论。  相似文献   

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合成和表征了三个异核配合物: [Cu(oxpn)Zn(bpy)2](ClO4)2·1/2H2O(1),[Cu(oxpn)Zn-(phen)2](ClO4)2·2H2O(2), [Cu(oxpn)Zn(NO2-phen)2](ClO4)2·2H2O(3)[bpy=2,2'-联吡啶、phen=1,10-菲咯啉、NO2-phen=5-硝基-1,10-菲咯啉、oxpn=N,N'-二(3-氨丙基)草酰胺阴离子], 2的晶体属单斜晶系, P2/n空间群, 晶胞参数: a=1.5061(3), b=1.2924(3), c=2.2802(3)nm, β=108.42(2)°, V=4.1869nm^3,Z=4, Dm=1.409g/cm^3, μ=12.812cm^-^1, F(000)=1812, 最终的偏离因子R=0.093,Rw=0.099。结构分析证实, 配合物具有扩充的草酰胺桥联结构, Cu(II)及Zn(II)的配位环境分别为平面四边形和畸变的八面体构型, 阳离子的对称性近似为C2v。此外, 本文还指派了配合物的电子光谱, 并对EPR、有效磁矩等数据进行了讨论。  相似文献   

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利用5-甲基-3-吡唑甲酸,分别与CoCl2·6H2O和Ni(NO3)2·6H2O反应,得到了配合物[M(MPA)2(H2O)2](1:M=Co;2:M=Ni)(HMPA=5-甲基-3-吡唑甲酸)。用元素分析、红外光谱、X-单晶衍射结构分析对其进行了表征。配合物1和2的晶体结构参数如下:配合物1和2的晶体都属于六方晶系,空间群为R3c。配合物1的晶胞参数为a=1.483 94(4)nm,b=1.483 94(4)nm,c=3.207 66(6)nm,V=6.117 2(3)nm3,Z=18;配合物2的晶胞参数为a=1.466 53(14)nm,b=1.466 53(14)nm,c=3.243 0(6)nm,V=6.04 03(14)nm3,Z=18。金属离子与来自2个5-甲基-3-吡唑甲酸配体中的2个氮原子及2个氧原子,2个水分子中的2个氧原子配位,形成八面体配位构型。配合物中的独立结构单元[M(MPA)2(H2O)2]通过分子间氢键形成具有六方孔道的三维结构。热重分析表明配合物1和2具有较高的热稳定性。此外,考察了配合物1和2的荧光和电化学性质。CCDC:900677,1;900678,2。  相似文献   

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利用5-甲基-3-吡唑甲酸、咪唑和相应醋酸盐在乙醇和水混合溶剂中反应,得到了配合物[M(MPA)2(Im)2].2H2O(1:M=Co;2:M=Ni)(HMPA=5-甲基-3-吡唑甲酸,Im=咪唑)。用元素分析、红外光谱、X-单晶衍射结构分析、热重分析、循环伏安等对其进行了表征。配合物1和2的晶体结构参数如下:配合物1和2的晶体都属于单斜晶系,空间群为P21/n。配合物1的晶胞参数为a=0.847 02(16)nm,b=1.461 5(3)nm,c=0.899 67(17)nm,β=101.759(6)°,V=1.090 3(4)nm3,Z=2;配合物2的晶胞参数为a=0.853 59(6)nm,b=1.451 77(9)nm,c=0.889 83(6)nm,β=102.382 0(10)°,V=1.077 04(12)nm3,Z=2。金属离子与来自2个5-甲基-3-吡唑甲酸配体中的2个氮原子及2个氧原子,2个咪唑分子中的2个氮原子配位,形成八面体配位构型。配合物中的独立结构单元[M(MPA)2(Im)2].2H2O通过2种分子间氢键(N-H…O和C-H…O)形成三维超分子。循环伏安性质测试表明配合物1和2的电解过程均为准可逆过程。  相似文献   

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在水乙醇混合体系中 ,首次得到 2 羰基丙酸水杨酰腙 (C10 H10 N2 O4) ,1,10 菲啉 (C12 H8N2 ,简写作phen)与Dy(NO3 ) 3 ·3H2 O的配合物 [Dy(C10 H8N2 O4) (phen) (NO3 ) (H2 O) 2 ]·H2 O .该配合物属单斜晶系 ,空间群为P2 1/c,晶胞参数a =1 5 2 4( 3 )nm ,b =1 10 18( 19)nm ,c =1 468( 3 )nm ,β =92 2 8( 2 )° ,V =2 4 63 ( 7)nm3 ,Z =4,μ =3 10 0mm-1,Dc=1 83 1g/cm3 ,F( 0 0 0 ) =13 40 ,R =0 0 3 14 ,wR =0 0 660 ,GOF =0 966.测试结果表明 ,该单晶结构为镝的 9配位配合物 ,其中一个 2 羰基丙酸水杨酰腙分子以羧基氧、酰胺基中的羰基氧和CN中的氮与Dy3 + 三齿配位 ,形成两个稳定的共边五元环 ,一个 1,10 菲啉分子以二齿方式配位、一个硝酸根和两个水分子也同时参与配位 ,在空间呈扭曲的单帽四方反棱柱 ,而在配合物周围还有一个游离的水分子 .发光性能测试表明配合物具有很好的荧光性能  相似文献   

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合成了新型2-(1,3-二噻烷-2-亚基)丙二酸镉(Ⅱ)配合物[Cd(dyma)2(phen).H2O][dyma=2-(1,3-二噻烷-2-亚基)丙二酸,phen=1,10-菲啰啉],并通过元素分析和X-射线单晶衍射等手段对其进行了结构表征.结果表明:[Cd(dyma)2(phen).H2O]属于三斜晶系,空间群Pī;晶胞参数a=0.905 17(14)nm,b=1.221 94(19)nm,c=1.338 1(2)nm,α=69.761(2)°,β=72.313(2)°,γ=83.650(3)°,V=1.323 0(4)nm-3,Z=2,Dc=1.810 g.cm-3,μ=1.199 mm-1,F(000)=724,R1=0.037 5,wR2=0.085 7.中心Cd原子为七配位,分别与1,10-菲咯啉2个N原子、2个2-(1,3-二噻烷-2-亚基)丙二酸的羧基4个O原子和1个水分子配位.配位水分子与2个不同Cd(dyma)2(phen)分子中没有配位的羧基O原子形成分子间氢键,构筑成三维网状超分子配位聚合物.  相似文献   

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In the title complex, [Hg(CH4N2S)4][Mn(NCS)4], the Hg and Mn atoms sit at special positions with symmetry and are tetrahedrally coordinated to four thio­urea (TU) S and four thio­cyanate (SCN) N atoms, respectively. The structure consists of discrete cationic and anionic [Hg(TU)4]2+ and [Mn(SCN)4]2− complexes, and weak NTU—H⃛SSCN hydrogen-bond bridges exist between these complexes.  相似文献   

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The crystal structure of ethylenediaminecadmium(II) tetracyanocadmate(II)-benzene(1/2),I, has been redetermined based on 1632 reflections collected anew for the crystal coated with epoxy resin, with a final conventionalR=0.038;I crystallizes in space groupP4222, witha=b=8.265(1) andc=15.512(3) Å, andZ=2. Ethylenediaminecadmium(II) tetracyanocadmate(II),II, is concluded to be identical with the residual metal complex host ofI, remaining after the liberation of the guest benzene molecules;II crystallizes from an aqueous solution containing bis- or tris-ethylenediaminecadmium(II) tetracyanocadmate(II) in space groupI41/acd, witha=b=14.366(1) andc=23.771(4) Å, andZ=16; refinement led to a conventionalR=0.043 for 1181 reflections. The bridging ethylenediamine ligand inI turns to a chelating one inII; dissociation and recombination should occur in the coordination sphere of the six-coordinate cadmium atom, whenII is derived fromI by the liberation of the guest molecules. Supplementary Data relating to this article are deposited with the British Library as Supplementary Publication No. SUP 82018 (30 pages).Dedicated to Professor H. M. Powell.  相似文献   

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Synthesis of amorphous and crystalline double hydrated cobalt copper and nickel copper ammine diphosphates with a coordination structure is described.__________Translated from Zhurnal Prikladnoi Khimii, Vol. 78, No. 3, 2005, pp. 369–372.Original Russian Text Copyright © 2005 by Voitenko, Zhilyak, Kopilevich.  相似文献   

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Metallatriazadiphosphorine complexes corresponding to [{N(PPh2NR)2}M(OAc)] and [{N(PPh2NR)2}2M], (R = Ph or SiMe3; M = Zn, Cd or Hg) have been synthesized under strictly anhydrous and inert conditions by the reaction of the acyclic bis-silylated phosphazene ligand, [HN(PPh2NSiMe3)2], or the bis-phenylated phosphazene ligand, [HN(PPh2NPh)2], with Zn, Cd and Hg acetate in 1:1 and 2:1 molar ratios. These complexes are highly soluble in common organic solvents, but unstable hydrolytically as well as thermally, even under reduced pressure. Molecular weight determinations in benzene indicated the monomeric nature of these complexes. Further, they have been characterized on the basis of elemental analysis and spectral studies: i.r. and n.m.r. (1H, 13C and 31P) that plausibly reveal a trigonal planar and tetrahedral geometry around the metal atom in the complexes.  相似文献   

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Three new compounds, [Cd(μ 3 -Hpdh)(μ2-Cl)] n (1), Mn(Hpdh)2(H2O)2 (2) and Zn(Hpdh)2 (H2O)2 (3) (H2pdh =?pyridine-2,3-dicarbo-2,3-hydrazide), have been synthesized and characterized by elemental analysis, IR spectra, TG and single-crystal X-ray diffraction. Under hydrothermal conditions, H2pdh is generated by an in situ acylation of H2pda (H2pda =?pyridine-2,3-dicarboxylic acid) with hydrazine hydrate. Complex 1 features a 2D layer structure constructed by a dinuclear Cd(II) building block. In complexes 2 and 3, hydrogen bonding interactions connect mononuclear structures into 3D supramolecular frameworks.  相似文献   

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Magnetic, spectroscopic and superoxide dismutase activity of imidazolate bridged [(Salala)Cu-Im-Cu(Salala)]Na, [(Salala)Cu-Im-Zn(Salala)]Na and [(Salala)Cu-Im-Ni(Salala)]Na (Salala=Salicyledenealiniate, Im=Imdiazolate) are described. The epr and electronic spectra of related mononuclear complexes, viz., [(Salala)Cu-OH(2)] and [(Salala)Cu-ImH] also described. Appearance of a half-field signal in polycrystalline and decrease in mu(eff) per copper(II) ion indicate super exchange coupling between copper(II) ion in [(Salala)Cu-Im-Cu(Salala)]Na binuclear complex. A pH-dependent epr and UV-vis study of 50% aqueous DMSO solution of binuclear complexes suggest that the complexes are stable in narrow pH range.  相似文献   

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The title compounds, hexa­aqua­cobalt(II) bis­(hypophosphite), [Co(H2O)6](H2­PO2)2, and hexa­aqua­cobalt(II)/nickel(II) bis(hypophosphite), [Co0.5Ni0.5(H2O)6](H2PO2)2, are shown to adopt the same structure as hexa­aqua­magnesium(II) bis­(hypophosphite). The packing of the Co(Ni) and P atoms is the same as in the structure of CaF2. The CoII(NiII) atoms have a pseudo‐face‐centred cubic cell, with a = b~ 10.3 Å, and the P atoms occupy the tetrahedral cavities. The central metal cation has a slightly distorted octahedral coordination sphere. The geometry of the hypophosphite anion in the structure is very close to ideal, with point symmetry mm2. Each O atom of the hypophosphite anion is hydrogen bonded to three water mol­ecules from different cation complexes, and each H atom of the hypophosphite anion is surrounded by three water mol­ecules from further different cation complexes.  相似文献   

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