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1.
本文合成了1,1'-二(N-水杨酰腙乙基)二茂铁及其过渡金属配合物,ML.nH~2O[M=Mn(II)、Co(II)、Ni(II)、Cu(II)、Zn(II)和Cd(II)],并用元素分析、UV、IR、^1HNMR、TG-DTA和摩尔电导进行了表征.配体以烯醇式以通过亚胺基氮原子和酰胺基氧负离子与金属离子配位,按摩尔比1:1结合.Ni(II)配合物有一分子DMF配位.大部分配合物比配体热稳定性高.  相似文献   

2.
本文合成了1,1'-二(N-水杨酰腙乙基)二茂铁及其过渡金属配合物,ML·nH_2O[M=Mn(Ⅱ)、Co(Ⅱ)、Ni(Ⅱ)、Cu(Ⅱ)、Zn(Ⅱ)和Cd(Ⅱ)],并用元素分析、UV、IR、~1H NMR、TG-DTA和摩尔电导进行了表征.配体以烯醇式通过亚胺基氮原子和酰胺基氧负离子与金属离子配位,按摩尔比1:1结合.Ni(Ⅱ)配合物有一分子DMF配位.大部分配合物都比配体热稳定性高.  相似文献   

3.
维生素B1—金属配合物的制备及其分子结构   总被引:1,自引:0,他引:1  
制得了M(th)Cl_3 (M=Zn(Ⅱ)、Cd(Ⅱ)、Mn(Ⅱ)、Co(Ⅱ))、Cu(thH)Cl_4和Hg_3(C_(12)H_(16)N_4OS)Cl_8三种类型的维生素B_1-金属配合物。结构表征表明,Zn、Cd、Mn、Co配合物属M—N配位型,Cu配合物属离子型,Hg配合物既有M—O键合,又有离子键存在。  相似文献   

4.
Cu(II)-氨基酸-核苷酸三元配合物的合成和表征   总被引:4,自引:0,他引:4  
邵昌平  张凡  郭和夫 《化学学报》1993,51(10):973-977
合成和表征Na~2[Cu(L-Ala)~2(5'-GMP)].2H~2O、Na~2[Cu(L-Ala)~2(5'-IMP)].6H~2O、Na~2[Cu(L-His)(5'-GMP)Cl~2^2.2H~2O和Na~2[Cu(L-His)(5'-IMP)Cl~2].H~2O四个新的三元配合物, 其中两个L-Ala分子通过羧基O和α-氨基N与Cu(II)成反式配位, 一个L-His分子通过羧基O和咪唑环上的N与Cu(II)配位; 一个5'-GMP或5'-IMP分子嘌呤环上的N(7)与Cu(II)配位; 5'-GMP的磷酸根上可能存在强氢键, 而5'-IMP的磷酸根上不存在强氢键; 在含L-Ala三元配合物中, 5'-GMP的C(6)=0可能参与配位或形成强氢键, 而5'-IMP的C(6)=0不参与配位或形成配位或形成强氢键; 在含L-His三元配合物中, 5'-IMP的C(6)=0的表现则相反。  相似文献   

5.
合成和表征Na~2[Cu(L-Ala)~2(5'-GMP)].2H~2O、Na~2[Cu(L-Ala)~2(5'-IMP)].6H~2O、Na~2[Cu(L-His)(5'-GMP)Cl~2^2.2H~2O和Na~2[Cu(L-His)(5'-IMP)Cl~2].H~2O四个新的三元配合物, 其中两个L-Ala分子通过羧基O和α-氨基N与Cu(II)成反式配位, 一个L-His分子通过羧基O和咪唑环上的N与Cu(II)配位; 一个5'-GMP或5'-IMP分子嘌呤环上的N(7)与Cu(II)配位; 5'-GMP的磷酸根上可能存在强氢键, 而5'-IMP的磷酸根上不存在强氢键; 在含L-Ala三元配合物中, 5'-GMP的C(6)=0可能参与配位或形成强氢键, 而5'-IMP的C(6)=0不参与配位或形成配位或形成强氢键; 在含L-His三元配合物中, 5'-IMP的C(6)=0的表现则相反。  相似文献   

6.
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) (H2 O) 3 ] 2 ·4H2 O ( 1)和 [Cd (IHQS) (H2 O) 2 ] n·2nH2 O ( 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) (H2 O) 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) (H2 O) 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 2 2 43 ( 7)nm ,b =1 0 0 5 3 ( 3 )nm ,c =1 3 468( 4 )nm ,β =10 2 2 67( 5 )° ,V =2 942 8( 16)nm3 和Z =4.配合物 2 :三斜晶系 ,P1- 空间群 ,a =0 6949( 2 )nm ,b =1 0 183 ( 3 )nm ,c =1 0 989( 3 )nm ,α =76 0 69( 5 )° ,β =75 2 94( 5 )° ,γ =84 747( 5 )° ,V =0 72 95 ( 4 )nm3 和Z =2 .  相似文献   

7.
采用后合成修饰技术将水杨醛锚装在金属-有机骨架化合物UMCM-1-NH2上,得到一种席夫碱功能化的多孔化合物UMCM-1-Sal,利用其孔道内的N,O原子易与金属离子配位的特点,捕获了一系列金属离子[Mg(Ⅱ),Zn(Ⅱ),Co(Ⅱ),Ni(Ⅱ),Cd(Ⅱ),Fe(Ⅲ),Cu(Ⅱ)],并对比研究了它们的光致发光行为.结果表明,与UMCM-1-NH2相比,UMCM-1-Sal的荧光发射峰红移,荧光强度降低,捕获金属离子后其荧光强度又有所增强,其中捕获镁后的荧光增强最明显.  相似文献   

8.
氯化稀土与丙氨酸配合行为的研究   总被引:10,自引:0,他引:10  
用半微量相平衡方法研究了SmCl~3-Ala-H~2O三元体系在25℃时的溶解度。结果表明体系中形成了两种配合物: Sm(Ala)~2Cl~3.3H~2O和Sm(Ala)~3Cl~3.3H~2O,合成了RE(Ala)~3Cl~3.3H~2O(RE=La, Ce, Pr, Nd, Sm, Eu, Gd, Tb, Dy),RE(Ala)~2Cl~3.nH~2O(RE=La, Ce, Pr, Nd, Sm, n=3; RE=Ho, Yb,Y, n=4)与RE(AlA)Cl~3.6H~2O(RE=Eu, Gd,Tb, Dy, Ho, Yb, Y)二十四种固体配合物, 用化学分析、IR、UV、X射线分析及TG-DTG对配合物进行了表征, 发现了RECl~3与Ala形成配合物的规律性。  相似文献   

9.
本文合成了两个新的异双核咪唑桥联配合物[(NH3)5CoimM(tren)](ClO4)4·2H2O[M=Cu(II), Zn(II); im=咪唑基], 用热重差热、反射光谱、ESR等手段进行表征, 证实咪唑桥的存在, 用PH法结合计算机拟合, 定量地模拟了异双核配合物中咪唑桥的断裂过程, 表明在水溶液中, 金属-咪唑键首先从非钴(III)端断裂。  相似文献   

10.
本文合成了两个新的异双核咪唑桥联配合物[(NH3)5CoimM(tren)](ClO4)4·2H2O[M=Cu(II), Zn(II); im=咪唑基], 用热重差热、反射光谱、ESR等手段进行表征, 证实咪唑桥的存在, 用PH法结合计算机拟合, 定量地模拟了异双核配合物中咪唑桥的断裂过程, 表明在水溶液中, 金属-咪唑键首先从非钴(III)端断裂。  相似文献   

11.
Bis(3-cyano-pentane-2,4-dionato) (CNacac) metal complex, [M(CNacac)(2)], which acts as both a metal-ion-like and a ligand-like building unit, forms supramolecular structures by self-assembly. Co-grinding of the metal acetates of Mn(II), Co(II), Ni(II), Cu(II) and Zn(II) with CNacacH formed a CNacac complex in all cases: mononuclear complex was formed in the cases of Mn(II), Cu(II) and Zn(II), whereas polymeric ones were formed in the cases of Fe(II), Co(II) and Ni(II). Subsequent annealing converted the mononuclear complexes of Mn(II), Cu(II) and Zn(II) to their corresponding polymers as a result of dehydration of the mononuclear complexes. The resultant Mn(II), Fe(II), Co(II), Ni(II) and Zn(II) polymeric complexes had a common 3 D structure with high thermal stability. In the case of Cu(II), a 1 D polymer was obtained. The Mn(II), Cu(II) and Zn(II) polymeric complexes returned to their original mononuclear complexes on exposure to water vapour but they reverted to the polymeric complexes by re-annealing. Co-grinding of metal chlorides with CNacacH and annealing of the mononuclear CNacac complexes prepared from solution reactions were also examined for comparison. [Mn(CNacac)(2)(H(2)O)(2)], [M(CNacac)(2)(H(2)O)] (M=Cu(II) and Zn(II)) and [M(CNacac)(2)](infinity) (M=Mn(II), Fe(II) and Zn(II)) are new compounds, which clearly indicated the power of the combined mechanochemical/annealing method for the synthesis of varied metal coordination complexes.  相似文献   

12.
The non-symmetric imide ligand Hpypzca (N-(2-pyrazylcarbonyl)-2-pyridinecarboxamide) has been deliberately synthesised and used to produce nine first row transition metal complexes: [M(II)(pypzca)(2)], M = Zn, Cu, Ni, Co, Fe; [M(III)(pypzca)(2)]Y, M = Co and Y = BF(4), M = Fe and Y = ClO(4); [Cu(II)(pypzca)(H(2)O)(2)]BF(4), [Mn(II)(pypzca)(Cl)(2)]HNEt(3). These are the first deliberately prepared complexes of a non-symmetric imide ligand. X-ray crystal structures of [Cu(II)(pypzca)(2)]·H(2)O, [Co(II)(pypzca)(2)], [Co(III)(pypzca)(2)]BF(4), [Cu(II)(pypzca)(H(2)O)(2)]BF(4)·H(2)O and [Mn(II)(pypzca)Cl(2)]HNEt(3) show that each of the (pypzca)(-) ligands binds in a meridional fashion via the N(3) donors. In the first three complexes, two such ligands are bound such that the 'spare' pyrazine nitrogen atoms are positioned approximately orthogonally to one another and also to the imide oxygen atoms. In MeCN the [M(II/III)(pypzca)(2)](0/+) complexes, where M = Ni, Co or Fe, exhibit one reversible metal based M(II/III) process and two distinct, quasi-reversible ligand based reduction processes, the latter also observed for M(II) = Zn. [Mn(II)(pypzca)Cl(2)]HNEt(3) displays a quasi-reversible oxidation process in MeCN, along with several irreversible processes. Both copper(II) complexes show only irreversible processes. Variable temperature magnetic measurements show that [Fe(III)(pypzca)(2)]ClO(4) undergoes a gradual spin crossover from partially high spin at 298 K (3.00 BM) to fully low spin at 2 K (1.96 BM), and that [Co(II)(pypzca)(2)] remains high spin from 298 to 4 K. All of the complexes are weakly coloured, other than [Fe(II)(pypzca)(2)] which is dark purple and absorbs strongly in the visible region.  相似文献   

13.
三取代过渡金属钨镓杂多配合物的磁性及导电性能研究   总被引:16,自引:0,他引:16  
合成了过渡金属三取代的钨镓杂多配合物:α-Na~nH~m[GaW~9O~3~7M~3(H~2O)~3]·xH~2O[M=Fe(Ⅲ), Cu(Ⅱ), Co(Ⅱ)]。通过元素分析、红外、紫外、^1^8^3W NMR以及热分析等手段进行了表征, 变温磁化率数据显示了配合物具有反铁磁特征。电导率测定结果表明所合成的配合物是迄今未见文献报道的过渡金属三取代杂多配合物高质子导体, 室温下GaW~9Fe~3的σ值可达10^-^3S·cm^-^1, 其特点是热稳定范围宽, 不易失水, 可望成为能实用化的杂多酸型固体电解质。  相似文献   

14.
Complexes with chemical compositions VO(Hatth)2SO4, VO(Hatth)2SO4·py, [M(Hatth)2Cl·H2O]Cl [M = Mn(II), Co(II) and Ni(II)], [Cu(Hatth)2Cl]2Cl2, [Cu(Hatth)2· Cl·py]Cl, [Cd(Hatth)2Cl]Cl, M(Hatth)2Cl2 [M = Zn(II) and Hg(II)], VO(atth)2, VO(atth)2py, M(atth)2(py)2 [M = Mn(II) and Cu(II)], M(atth)2(H2O)2 [M = Mn(II), Co(II), Ni(II), Cu(II) and Zn(II)], Hatth = 2-acetylthiophene-2-thenoylhydrazone, and atth, its deprotonated form, have been prepared and characterized by analytical data, molar conductance, magnetic susceptibility, electronic and photoacoustic, ESR, IR and NMR spectral studies. X-ray diffraction study has been used to determine the shape and the dimensions of the unit lattice of copper(II) complexes.  相似文献   

15.
[Cu(C~1~2H~8N~2)(H~2O)(C~4H~4O~4)]·2H~2O的合成和晶 体结构   总被引:12,自引:0,他引:12  
郑岳青  孙杰  林建利 《化学学报》2000,58(9):1131-1135
将适量邻菲啰啉、丁二酸和CuCl~2·2H~2o(摩尔比=1:1)溶于水和甲醇的混合溶剂[V(水):V(甲醇)=1:1]后,滴加NaOH溶液至pH=4.8。滤去沉淀物后,滤液于室温下缓慢蒸发得蓝色细长[Cu(C~1~2H~8N~2)(H~2O)(C~4H~4O~4)]·2H~2O晶体。晶体属三斜晶系,P1(No.2)空间群。晶胞参数a=0.7462(1)nm,b=(0.9959)1nm,c=1.2266(1)nm,α=75.02(1)°,β=82.38(1)°,γ=74.76(1)°,V=0.8475(2)nm^3,Z=2,D~c=1.622g·cm^3,F(000)=426.3882个独立衍射点中,2789个可观测点满足F~0^2≥2σ(F~0^2),R=0.0450,wR^2=0.0951。配合物内每个Cu与邻菲啰啉螯合配体中的2个N原子、来自不同羧酸根的2个羧基O和1个水分子O原子配位,形成扭曲的四方锥体,其中一羧基O位于锥顶[d(Cu-N)=0.2006(3),0.2032(3)nm;赤道d(Cu-O)=0.1972(2),0.1973(2)nm;轴向d(Cu-O)=0.2210(2)nm]。双齿桥联丁二酸根连接Cu原子形成平行于[100]方向的多聚超分子链^1~∞[Cu(phen)~2(H~2O)·(C~4H~4O~4)~2~/~2]~2。芳环堆积间距交替为0.366nm和0.380nm。未配位的H~2O分子位于超分子双链之间。  相似文献   

16.
The synthesis and characterization of Mn(II), Fe(III), Co(II), Ni(II), Cu(II), Zn(II), Cd(II), Pd(II) and UO2(II) chelates of 1-(2-thiazolylazo)-2-naphthalenol (TAN) were reported. The dissociation constants of the ligand and the stability constants of the metal complexes were calculated pH-metrically at 25 degrees C and 0.1 M ionic strength. The solid complexes were characterized by elemental and thermal analyses, molar conductance, IR, magnetic and diffuse reflectance spectra. The complexes were found to have the formulae [M(L)2] for M = Mn(II), Co(II), Ni(II), Zn(II) and Cd(II); [M(L)X].nH2O for M = Cu(II) (X = AcO, n = 3), Pd(II) (X = Cl, n = 0) and UO2(II) (X = NO3, n = 0), and [Fe(L)Cl2(H2O)].2H2O. The molar conductance data reveal that the chelates are non-electrolytes. IR spectra show that the ligand is coordinated to the metal ions in a terdentate manner with ONN donor sites of the naphthyl OH, azo N and thiazole N. An octahedral structure is proposed for Mn(II), Fe(III), Co(II), Ni(II), Zn(II), Cd(II) and UO2(II) complexes and a square planar structure for Cu(II) and Pd(II) complexes. The thermal behaviour of these chelates shows that water molecules (coordinated and hydrated) and anions are removed in two successive steps followed immediately by decomposition of the ligand molecule in the subsequent steps. The relative thermal stability of the chelates is evaluated. The final decomposition products are found to be the corresponding metal oxides. The thermodynamic activation parameters, such as E*, delta H*, delta S* and delta G* are calculated from the TG curves.  相似文献   

17.
Complexes of the type [M(gssdh)]Cl and [M(gspdh)]Cl, where M?=?Co(II), Ni(II), Cu(II), Zn(II) and Cd(II), Hgssdh?=?glyoxal salicylaldehyde succinic acid dihydrazone and Hgspdh?=?glyoxal salicylaldehyde phthalic acid dihydrazone, have been synthesized and characterized by elemental analyses, molar conductance, magnetic moments, electronic, ESR and IR spectra and X-ray powder diffraction studies. The metal complexes are insoluble in common organic solvents and are 1?:?1 electrolytes. The magnetic moment values and electronic spectra indicate a spin–free octahedral geometry for all Co(II), Ni(II) and Cu(II) complexes. ESR spectral parameters of Cu(II) complexes suggest an elongated tetragonally–distorted octahedral stereochemistry around copper. Both ligands are monobasic hexadentate ligands coordinating through three >C=O, two >C=N– and a deprotonated phenolate group to the metal. X-ray powder diffraction parameters for three of the complexes correspond to an orthorhombic crystal lattice. The complexes show appreciable activity against various fungi and bacteria.  相似文献   

18.
The new phenol-imidazole pro-ligands (R)LH react with Co(BF(4))(2).6H(2)O in the presence of Et(3)N to form the corresponding [Co(II)((R)L)(2)] compound (R = Ph (1), PhOMe (2), or Bz (3)). Also, (Bz)LH, reacts with Co(ii) in the presence of Et(3)N and H(2)O(2) to form [Co(III)((Bz)L)(3)](4). The structures of 1.2.5MeCN, 2.2DMF, 3.4MeOH, and 4.4DMF have been determined by X-ray crystallography. 1, 2, and 3 each involve Co(II) bound to two N,O-bidentate ligands with a distorted tetrahedral coordination sphere; 4 involves Co(III) bound to three N,O-bidentate ligands in a mer-N(3)O(3) distorted octahedral geometry. [Co(II)((R)L)(2)](R = Ph or PhOMe) undergo two, one-electron, oxidations. The products of the first oxidation, [1](+) and [2](+), have been synthesised by the chemical oxidation of 1 and 2, respectively; these cations, formulated as [Co(II)((R)L*)((R)L)(2)](+), comprise one phenoxyl radical and one phenolate ligand bound to Co(II) and are the first phenoxyl radical ligand complexes of tetra-coordinated Co(II). 4 undergoes two, one-electron, ligand-based oxidations, the first of which produces [4](+), [Co(III)((Bz)L*)((Bz)L)(2)](+). Unlike [1](+) and [2](+), product of the one-electron oxidation of [Co(II)((Bz)L)(2)], [3](+), is unstable and decomposes to produce [4](+). These studies have demonstrated that the chemical properties of [M(II)((R)L*)((R)L)(2)](+)(M = Co, Cu, Zn) are highly dependent on the nature of both the ligand and the metal centre.  相似文献   

19.
The reaction of M(S2O6) (M = Cu(II), Ni(II), and Co(II)) with 4,4'-bipyridine-N,N'-dioxide (bpdo) results in the formation of novel 3D, 2D, and mononuclear complexes. Complex 1, {[Cu(H2O)(bpdo)2](S2O6)(H2O)}n, is a 2-D wavelike polymer with the Cu(II) ion located on a 2-fold axis and having a distorted square-pyramidal coordination sphere. With Co(II) and Ni(II), 3-D complexes, {[M(bpdo)3](S2O6)(C2H5OH)7}n [M = Co(II) (2), Ni(II) (3)], were obtained. The metal atoms are situated on centers of symmetry and have octahedral environments coordinated to six bpdo molecules. The same reaction in aqueous solution with a metal/ligand ratio of 1:1 results in the formation of mononuclear complexes, {[M(bpdo)(H2O)5](SO4)(H2O)2} [M = Co(II) (4), Ni(II) (5)], accompanied by the decomposition of the dithionate anions S2O6(2-) to sulfate anions SO4(2-).  相似文献   

20.
Monosulfonyl derivatives of simple 1,2- and 1,3-diamines (R2HN-R-NHSO2R1 = L) have been shown to be easily deprotonated to give neutral 2:1 complexes, [M(L - H)(2)], with Co(II), Ni(II), Cu(II) or Zn(II). The Ni(II) and Cu(II) complexes with deprotonated N-tosyl-1,2-diaminoethane have a planar N4(2-) donor set and a 14-membered pseudo-macrocyclic structure based on head-to-tail S=O...H-N((amine)) bonding between the two bidentate ligands. In the related tetrahedral Zn(II) complex the ends of the mutually perpendicular bidentate N2- units are too far apart to form a cyclic H-bonded system. X-Ray structure determinations on five free ligands provide evidence for extensive inter-molecular H-bonding, which in the case of N-tosyl-1,3-diaminopropane and its N'-tert-butyl derivative involves formation of dimeric 16-membered pseudo-macrocycles. Despite favourable inter-ligand H-bonding in the neutral 2:1 complexes, these ligands are relatively weak extractants, showing >50% loading of Cu(II) in "pH-swing" equilibria, 2L(org)+ M2+ = [M(L - H)2](org)+ 2 H+, only when the pH of the aqueous phase is raised above 4.  相似文献   

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