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1.
由4-甲基-1,2,3-噻二唑-5-甲酸(HMTC,C4H4N2O2S)分别和1,3-双(4-吡啶基)-丙烷(bpp)、菲咯啉(phen)合成了2个锌配合物[Zn(MTC)2(bpp)]n1)和[Zn(MTC)(phen)(H2O)2](MTC)(2)。用元素分析、红外光谱、粉末X射线衍射、热重分析对配合物进行了表征,并通过单晶X射线衍射测定了配合物的晶体结构。结果表明:配合物1是二维网状结构,属于单斜晶系,P21/c空间群,中心金属锌(Ⅱ)离子的配位构型是扭曲的四面体结构。配合物2是二维层状结构,属于三斜晶系,P1空间群,中心金属锌(Ⅱ)离子的配位构型是变形的三角双锥结构。用溴化乙锭荧光探针法测定了配体和配合物对EB-DNA复合体系相互作用,实验结果显示无论配体还是配合物均能使EB-DNA复合体系发生不同程度的荧光猝灭,且配合物的作用强度远大于配体。  相似文献   

2.
由4-甲基-1,2,3-噻二唑-5-甲酸(HMTC,C4H4N2O2S)和菲咯啉(Phen)合成了2个铜配合物[Cu(MTC)2(H2O)2]n1),[Cu2(MTC)2(Phen)2(H2O)4](MTC)22)。用元素分析、红外光谱、热重分析、粉末X射线衍射进行表征,用单晶X射线衍射方法测定了配合物的晶体结构。结果表明,配合物1是一维链状结构,属于单斜晶系P21/c空间群,中心金属铜(Ⅱ)离子的配位构型是一个畸变的四方锥结构。配合物2属于三斜晶系,P1空间群,是一个双核结构,由2个配位水分子上的氧桥连2个铜(Ⅱ)离子形成六配位的扭曲八面体结构。用溴化乙锭荧光探针测定了配体和配合物与DNA的相互作用,结果显示无论是配体还是配合物均能使EB-DNA复合体系的荧光发生不同程度的猝灭,且配合物的作用强度大于配体,具有刚性平面辅助配体的配合物2的作用强度又大于不加辅助配体的配合物1。  相似文献   

3.
以2-甲基-4-噻唑甲酸(HMTZA,C5H5NO2S)为配体合成了3种新型过渡金属配合物[Co(MTZA)2(H2O)2]·3H2O(1),[Cu(MTZA)2(H2O)]·2H2O(2)和[Zn(MTZA)2(H2O)2]·3H2O(3)。对配合物进行了元素分析、红外光谱和热重分析表征,用单晶X射线衍射方法测定了配合物的晶体结构。结果表明,配合物1属于单斜晶系,空间群为P21/n,中心金属Co(Ⅱ)离子的配位数为6,配位构型为略为变形的八面体;配合物2属于三斜晶系,空间群为P1,Cu(Ⅱ)离子的配位构型是一个畸变的四方锥;配合物3属单斜晶系,空间群为P21/n,中心金属Zn(Ⅱ)离子的配位构型为畸变的八面体。用溴化乙锭荧光探针法测定了配体和配合物与DNA作用的荧光光谱,结果显示无论配体还是配合物均能使EB-DNA复合体系发生不同程度的荧光猝灭,且配合物的作用强度远大于配体。  相似文献   

4.
由4-甲基-1,2,3-噻二唑-5-甲酸(HMTC,C4H4N2O2S)和菲咯啉(Phen)合成了2个铜配合物[Cu(MTC)2(H2O)2]n(1),[Cu2(MTC)2(Phen)2(H2O)4](MTC)2(2)。用元素分析、红外光谱、热重分析、粉末X射线衍射进行表征,用单晶X射线衍射方法测定了配合物的晶体结构。结果表明,配合物1是一维链状结构,属于单斜晶系,P21/c空间群,中心金属铜(Ⅱ)离子的配位构型是一个畸变的四方锥结构。配合物2属于三斜晶系,P1空间群,是一个双核结构,由2个配位水分子上的氧桥连2个铜(Ⅱ)离子形成六配位的扭曲八面体结构。用溴化乙锭荧光探针测定了配体和配合物与DNA的相互作用,结果显示无论是配体还是配合物均能使EB-DNA复合体系的荧光发生不同程度的猝灭,且配合物的作用强度大于配体,具有刚性平面辅助配体的配合物2的作用强度又大于不加辅助配体的配合物1。  相似文献   

5.
由4-甲基-1,2,3-噻二唑-5-甲酸(HMTC,C_4H_4N_2O_2S)分别和1,3-双(4-吡啶基)-丙烷(bpp)、菲咯啉(phen)合成了2个锌配合物[Zn(MTC)_2(bpp)]_n(1)和[Zn(MTC)(phen)(H_2O)_2](MTC)(2)。用元素分析、红外光谱、粉末X射线衍射、热重分析对配合物进行了表征,并通过单晶X射线衍射测定了配合物的晶体结构。结果表明:配合物1是二维网状结构,属于单斜晶系,P2_1/c空间群,中心金属锌(Ⅱ)离子的配位构型是扭曲的四面体结构。配合物2是二维层状结构,属于三斜晶系,P1空间群,中心金属锌(Ⅱ)离子的配位构型是变形的三角双锥结构。用溴化乙锭荧光探针法测定了配体和配合物对EB-DNA复合体系相互作用,实验结果显示无论配体还是配合物均能使EB-DNA复合体系发生不同程度的荧光猝灭,且配合物的作用强度远大于配体。  相似文献   

6.
由联苯-2,4,4'',6-四甲酸(H4BPTC,C16H10O8)和2-4-(1H-咪唑-2-[4,5-f][1,10]菲啰啉基)苯氧乙酸(HPIMPHC,C21H14N4O3),水热合成了2种新型配位聚合物[Ag4(BPTC)]n1),[Cd(PIMPHC)2]n2)。用元素分析、红外光谱、热重分析和X射线单晶衍射对配合物进行了表征和结构分析。配合物1属三斜晶系,空间群为P1;Ag(Ⅰ)的配位数分别为4、3、2,配位构型为变形四面体、平面三角形和V型。配合物2属正交晶系,空间群为Pbcn;Cd(Ⅱ)的配位数为6,配位构型为变形的八面体,Cd(Ⅱ)离子间通过三齿配体PIMPHC-桥连,形成2D网状结构。用EtBr荧光探针法研究了配体及配合物与ct-DNA的相互作用。  相似文献   

7.
过渡金属离子与3-氟邻苯二甲酸(H2Fpht)、1,10-邻菲啰啉(phen)通过水热反应得到了5个配合物:[M(Fpht)(phen)(H2O)3]·H2O(M=Ni 1,Co 2),[Cu(Fpht)(phen)(H2O)]·H2O(3),[M(Fpht)(phen)(H2O)]·H2O(M=Zn 4,Cd 5)。通过X-射线单晶衍射分析、元素分析、红外分析、荧光分析以及差热-热重分析对配合物进行了表征。配合物12为单核分子,中心离子Ni(Ⅱ)和Co(Ⅱ)与3-氟邻苯二甲酸根的1个氧原子,1,10-邻菲啰啉的2个氮原子以及3个配位水分子的3个氧原子配位,形成六配位的扭曲八面体构型。配合物3为Z字形一维链状结构。中心Cu(Ⅱ)离子与2个3-氟邻苯二甲酸根的2个氧原子,1个1,10-邻菲啰啉的2个氮原子以及水分子的1个氧原子配位,形成四方锥构型。配合物45具有相似的一维螺旋结构,中心Zn(Ⅱ)和Cd(Ⅱ)离子与2个3-氟邻苯二甲酸根的3个氧原子、1,10-邻菲啰啉的2个氮原子以及水分子中的1个氧原子配位,形成扭曲的八面体构型。  相似文献   

8.
由联苯-2,4,4'',6-四甲酸(H4BPTC,C16H10O8)和2-4-(1H-咪唑-2-[4,5-f] [1,10]菲啰啉基)苯氧乙酸(HPIMPHC,C21H14N4O3),水热合成了2种新型配位聚合物[Ag4(BPTC)]n1),[Cd(PIMPHC)2]n2)。用元素分析、红外光谱、热重分析和X射线单晶衍射对配合物进行了表征和结构分析。配合物 1 属三斜晶系,空间群为P1;Ag(Ⅰ)的配位数分别为4、3、2,配位构型为变形四面体、平面三角形和V型。配合物2属正交晶系,空间群为Pbcn;Cd(Ⅱ)的配位数为6,配位构型为变形的八面体,Cd(Ⅱ)离子间通过三齿配体 PIMPHC-桥连,形成2D网状结构。用EtBr荧光探针法研究了配体及配合物与ct-DNA的相互作用。  相似文献   

9.
以2-(4''-羧基苯基)咪唑-4,5-二羧酸(H4CPhIDC,C12H8N2O6)为配体,用溶剂热合成了3种配位聚合物{[Cd2(CPhIDC)(bimb)]·H2O}n1)、{[Cd2(CPhIDC)(phen)2]·3H2O}n2)、{[Zn2(CPhIDC)(bpp)]·1.5H2O}n3)(bimp=1,4-双咪唑基-丁烷,phen=1,10-菲咯啉,bpp=1,3-双(4-吡啶基)-丙烷)。用元素分析、红外光谱、粉末X射线衍射和单晶X射线衍射对配合物进行了表征和结构分析。结构分析表明,主配体以完全去质子化CPhIDC4-的形式与中心金属离子形成以μ4μ5为配位模式的二维及三维聚合物。配合物13是三维网络结构,同时呈现(3,4,5)-连接的(5·6·7)(4·52·6·72)(4·52·6·74·82)拓扑结构,两者的不同之处是中心离子和辅助配体。配合物2是二维波纹状渔网结构,呈现44·62拓扑结构,在其空间填充上又类似于DNA双螺旋链的单螺旋结构。测定了产物的固体荧光光谱;用EtBr荧光探针法研究了配体及配合物与ct-DNA的相互作用。  相似文献   

10.
合成了2个锌配合物[Zn(mtyaa)2(H2O)4]·4H2O(1)和[Zn(bpe)(mtyaa)2(H2O)2]n2)(Hmtyaa=2-(5-甲基-1,3,4-噻二唑)-硫乙酸;bpe=1,2-双(4-吡啶基)乙烷),用X射线单晶衍射仪测定了配合物的单晶结构,并对它进行了元素分析、红外光谱、热重和粉末X射线衍射等表征。配合物12的晶体分别属于三斜晶系和单斜晶系,空间群分别为P1C2/cπ-π相互作用以及配位水和游离水分子与羧基氧之间的氢键作用将配合物1的单分子结构连成三维网状结构。配合物2中配位水与羧基氧以及配体中的氮原子之间的氢键作用将相邻链连接成二维平面结构。  相似文献   

11.
用普通溶液法合成了4个配合物:[Cu(Ts-p-aba)2(phen)(H2O)]n1)、[Zn(Ts-p-aba)2(phen)(H2O)]·H2O(2)、[Pb(Ts-p-aba)2(phen)]2(3)和{[Pb(Ts-p-aba)(phen)(NO3)](DMF)}n(4)(Ts-p-aba=N-对甲苯磺酰对氨基苯甲酸,phen=菲咯啉,DMF=N,N-二甲基甲酰胺)。X-射线单晶衍射结果表明:配合物12均为三斜晶系,P1空间群。配合物1的中心铜离子处于变形的八面体配位环境,并通过配体N-对甲苯磺酰对氨基苯甲酸扩展为一维直线链结构;配合物2是个单核分子,锌离子的配位多面体为四角锥体。配合物34均为单斜晶系,P21/c空间群。配合物3由配体N-对甲苯磺酰对氨基苯甲酸桥联成二聚体,铅离子处于变形的八面体配位环境;配合物4是具有一维链状结构的配位聚合物,铅离子处于变形的一面心八面体配位环境。另外,对4个配合物的热稳定性、电化学性能和荧光性质也进行了研究。  相似文献   

12.
用普通溶液法合成了4个配合物:[Cu(Ts-p-aba)2(phen)(H2O)]n(1)、[Zn(Ts-p-aba)2(phen)(H2O)]·H2O(2)、[Pb(Ts-p-aba)2(phen)]2(3)和{[Pb(Ts-p-aba)(phen)(NO3)](DMF)}n(4)(Ts-p-aba=N-对甲苯磺酰对氨基苯甲酸,phen=菲咯啉,DMF=N,N-二甲基甲酰胺)。X-射线单晶衍射结果表明:配合物1和2均为三斜晶系,P1空间群。配合物1的中心铜离子处于变形的八面体配位环境,并通过配体N-对甲苯磺酰对氨基苯甲酸扩展为一维直线链结构;配合物2是个单核分子,锌离子的配位多面体为四角锥体。配合物3和4均为单斜晶系,P21/c空间群。配合物3由配体N-对甲苯磺酰对氨基苯甲酸桥联成二聚体,铅离子处于变形的八面体配位环境;配合物4是具有一维链状结构的配位聚合物,铅离子处于变形的一面心八面体配位环境。另外,对4个配合物的热稳定性、电化学性能和荧光性质也进行了研究。  相似文献   

13.
The saccharinato complexes [Zn(phen)2(sac)(H2O)]sac (1) and [Zn(sac)(dmp)(H2O)](sac) (2), where phen = 1,10-phenanthroline, dmp = 2,9-dimethyl-1,10-phenanthroline, and sac =saccharinato ion/ligand, were synthesized by the reaction of [Zn(sac)2(H2O)4] · 2H2O with ligands and have been characterized by elemental analysis, IR, and 1H NMR spectroscopies. Conductivity of complexes was measured in DMSO. Compound 1 is characterized by single crystal X-ray diffraction and compared with some isomorphous zinc-saccharinate complexes reported previously. Complex 1 crystallizes in the triclinic system, space group P 1 , with Z = 2, and consists of alternating slightly distorted octahedral [Zn(phen)2(sac)(H2O)]+ and noncoordinated saccharinate. The zinc bound aqua is hydrogen bonded to an oxygen of carbonyl in the saccharinate ligand and the SO2 group in the saccharinate counter-ion from an adjacent molecule. Intermolecular and intramolecular hydrogen bonds and C–H ··· O and C–H ··· N short contacts lead to a 3-D network.  相似文献   

14.
Three Zn(II) complexes, [Zn2(bpp)2(FNA)2]·H2O (1), [Zn(bpp)(FNA)]·H2O (2), and Zn2(bpp)2(FNA)2 (3) (bpp = 1,3-bi(4-pyridyl)propane, H2FNA = 4-nitrobenzene-1,2-dicarboxylic acid), were synthesized and characterized by single-crystal and powder X-ray diffraction methods, IR spectroscopy, TG analyses, elemental analyses, and fluorescent analysis. In 1, the Zn(II) ions are linked by FNA anions and bpp into 2-D layers. The Zn(II) ions in 2 are bridged by FNA anions into chiral chains, which are interlinked by bpp into 3-D metal–organic framework with (65·8) CdS topology. Complex 3 features 1-D zigzag chains, which are interconnected by bpp ligands to give a 3-D framework with (6·74·8)(64·7·8) topology. Complexes 2 and 3 exhibit significant ferroelectric behavior (for 2 remnant polarization Pr = 0.050 μC cm?2, coercive field Ec = 1.13 kV cm?1, saturation of the spontaneous polarization Ps = 0.239 μC cm?2; for 3 Pr = 0.192 μC cm?2, Ec = 4.64 kV cm?1, Ps = 0.298 μC cm?2).  相似文献   

15.
The title compound, [Zn2(C5H6O4)2(C13H14N2)]n or [Zn2(glu)2(bpp)]n, is a novel zinc polymer based on mixed flexible glutarate (glu) and 1,3‐di‐4‐pyridylpropane (bpp) ligands. The ZnII center has a distorted tetra­hedral geometry and the central atom of the bpp ligand is located at a special site with a C2 axis passing through it. A layer is formed by Zn–glu bonding. Such layers are pillared by bpp ligands, forming a three‐dimensional framework with large channels. The inverted inter­penetration of two three‐dimensional frameworks completes the mol­ecular structure.  相似文献   

16.
This article systematically investigates the influence of the properties of inhomogeneous N‐auxiliary ligands and pH value on the helical structures of complexes based on C2‐symmetric ligand 1,3‐adamantanedicarboxylic acid (H2ADC). Five kinds of neutral ligands (phen=1,10‐phenanthroline, bipy=4,4′‐bipyridine, bpa=1,2‐bis(4‐pyridyl)ethane, bpe=1,2‐bis(4‐pyridyl)ethane, and bpp=1,3‐bis(4‐pyridyl)propane) were selected, and a series of new ZnII/CoII dicarboxylates have been synthesized by slow diffusion, namely, [Zn(phen)(ADC)(H2O)]2 ? CH3OH ( 1 ), {[Zn(ADC)(bpe)] ? H2O}n ( 2 ), {[Zn(ADC)(bipy)] ? 2 H2O}n ( 3 ), {[Zn(ADC)(bpa)]2 ? 5 H2O}n ( 4 ), {[Zn(ADC)(bpp)]2 ? CH3OH}n ( 5 ), {[Zn(ADC)(bpp)]}n ( 6 ), {[Co(ADC)(bpp)(CH3OH)(H2O)] ? CH3OH ? 2 H2O}n ( 7 ), and {[Co(ADC)(bpp)]}n ( 8 ). Single‐crystal X‐ray structural analysis shows that complex 1 forms a 0D dinuclear with closed‐loop unit. The complex 2 is a 2D layer framework. Compounds 3 and 4 are isomorphous with a small discrepancy and present one‐dimensional chainlike structures. It is interesting that the 2D organic–inorganic hybrid frameworks containing meso‐helical chains have been observed. Compound 5 is a 2D interpenetrated network with (4,4) topology, in which homochiral left‐handed helical chains are arranged in an ABAB sequence parallel to the plane defined by (a,c), and right‐handed helical chains running along the a axis are also observed in the solid state, resulting in a meso‐helical structure. Compounds 6 , 7 , and 8 crystallize in a chiral space group P212121. Highly dimensional 6 and 8 are essentially isostructural and present a threefold interpenetrated 3D diamondoid network containing three helical chains, whereas 7 exhibits a 2D grid layer with a left‐handed helical chain. Furthermore, thermal stability, X‐ray powder diffraction, and the luminescent properties of 1 , 2 , 3 , 4 , 5 , 6 are also discussed.  相似文献   

17.
Abstract

Mixed ligand copper(II) complexes of 2-(2-pyridylethyl)picolylamine (pepica) of [Cu(pepica)(pi-colinato)](ClO4)(H2O) and the [Cu(pepica)(L)](ClO4)2 type, where L stands for 2,2′-bipyridine (bipy), 1,10-phenanthroline, neocuproine, and ethylenediamine, and dipicolylamine(dipica) of the [Cu(dipica)(L)](ClO4)2(H2O) n type, where L for 2,2′-bipyridine (n = 0), 1,10-phenanthroline (phen, n = 0), and neocuproine (n = 1), have been synthesized and characterized by elemental analyses, and IR, electronic and EPR spectroscopic measurements. The molecular structures of [Cu(pepica)(bipy)](ClO4)2 (1) and [Cu(dipica)(phen)](ClO4)2 (2) have been determined using three dimensional X-ray diffraction data. Complex 1 consists of discrete distorted square pyramidal [Cu(pepica)(bipy)] cations, with a meridional pepica ligand and one of the pyridine rings of the bipy ligand forming a basal plane. The other pyridine nucleus of the bipy is bound at the apex having an elongated bond distance of 2.255 Å and tilted off the normal z axis by ~15°. Complex 2 comprises discrete distorted trigonal bipyramidal [Cu(dipica)(phen)] cations, with the two pyridine nuclei of the dipica ligand and one of the pyridine rings of the phen forming an equatorial trigonal plane and the remaining pyridine ring of the phen and the amine nitrogen of the dipica on the axial sites. The trigonal bipyramidal cation, distorted toward a square pyramidal structure, has an enlarged equatorial N(py)–Cu–N(py) angle of 132.4° and an elongated equatorial Cu–N(phen) bond of 2.156 Å. All of the complexes exhibit axial type EPR spectra. Gaussian resolved d-d spectra for these complexes, except the dipica-bipy and dipicaphen ones, yield an orbital sequence of dx 2- y 2dz 2 > dxy > dyz dxz . The bonding properties of the tridentate and the bidentate ligands are elucidated.  相似文献   

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