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1.
新型一维链状配位聚合物{[Cu2(dhbd)(bipy)2]·10H2O}n的研究   总被引:9,自引:1,他引:8  
李东升  王尧宇  刘萍  栾新军  周彩华  史启祯 《化学学报》2005,63(17):1633-1637,F0008
采用水热法合成了标题配位聚合物{[Cu2(dhbd)(bipy)2]·10H2O}n(H4dhbd=2,3-二羟基丁二酸,bipy=2,2'-联吡啶),通过元素分析、红外光谱、热分析、X射线单晶衍射等技术对其进行了表征.配合物属单斜晶系,空间群C2/c,a=2.1965(4)nm,b=1.0671(2)nm,c=1.3662(3)nm,β=93.50(3)°,Z=4,R=0.0388.晶体的基本构建基元包含10个结晶H2O分子和由两个Cu(Ⅱ)原子、一个采用双二齿螯合配位的2,3-二羟基丁二酸根、两个2,2'-联吡啶形成具有C2旋转轴的U形双核单元,相邻的两个方向相反的U形双核单元通过双羧基O桥联形成沿c轴延伸的一维链;链间籍C-H…O和O-H…O氢键扩展为三维结构.配合物中呈现了一种2,3-二羟基丁二酸与过渡金属配位的新方式.  相似文献   

2.
水热法合成得到2个配合物,{[Zn7(L)4(bpe)2(μ3-OH)2(H2O)8]·4H2O}n(1),和{[Cd3(L)2(bpy)2.5(H2O)]·5.5H2O}n(2)(H3L=3-(carboxymethoxy)benzene-1,2-dioic acid,bpe=1,2-bis(4-pyridyl)-ethene,bpy=4,4′-bipyridine),并采用元素分析、红外光谱、热重和X-射线单晶衍射对其结构进行表征。配合物1中,配体L3-和bpe连接[Zn5(μ3-OH)2]中心形成一维链,这样的链通过氢键连接成三维的超分子结构。配合物2呈现(3,3,6)连接的网状结构。此外,对配合物1和2的荧光性质进行了研究。  相似文献   

3.
合成了一个新颖的镧配位聚合物{[La(HPAA)3(H2O)2].2(bipy).H2O}n(1)(HHPAA=对羟基苯乙酸,bipy=4,4′-联吡啶)。并通过元素分析、红外光谱和热重分析对产物进行了表征,用单晶X-射线衍射方法测定了配合物的晶体结构。在配合物1中,La(Ⅲ)的配位构型为畸变的双帽反四棱柱多面体。配合物中每个La(Ⅲ)离子与对羟基苯乙酸根中的氧原子和水分子中的氧原子配位,形成了一维链状结构,而4,4′-联吡啶并未参与配位。此外,用荧光光谱研究了配合物与DNA之间的相互作用。  相似文献   

4.
采用水热法合成了2个化合物{[Cu2(Hpimdc)(4,4′-bpy)]·H2O}n(1)和[Mn3(pimdc)2·6H2O]n(2)(H3pimdc=2-丙基-4,5-咪唑二甲酸,4,4′-bpy=4,4′-联吡啶),并对2个化合物进行了红外、元素分析、晶体结构和热稳定性分析。晶体结构分析发现化合物1之中的H3pimdc和4,4′-bpy交替与铜(Ⅰ)配位形成一维链线性铜(Ⅰ)配合物。沿a轴和(100)面去观察,2个一维链分子通过游离水连接而形成1个"U"型拓扑结构。而化合物2通过2-丙基-4,5-咪唑二甲酸链与锰(Ⅱ)连接为三维的网状结构。沿b轴方向,三维结构中存在交替的左/右手螺旋状二维结构。  相似文献   

5.
以Cu(ClO4)2,H2L(N-苯胺叉二乙酸)和4,4′-bpy(4,4′-联吡啶)为原料,采用溶剂挥发的方法得到了1个新的一维梯状配位聚合物{[Cu2L2(H2O)(4,4′-bpy)].DMF.3H2O}n(1)。通过元素分析、红外光谱、热重分析和单晶X-射线衍射法对其组成和结构进行了表征。在配合物1中,每个N-苯胺叉二乙酸根离子(L2-)分别桥联2个铜(Ⅱ)离子形成一维锯齿形链状结构,一维链通过4,4′-联吡啶(4,4′-bpy)的2个氮原子连接形成一维梯状结构。配合物1的变温磁化率实验测试结果表明在相邻的铜离子间存在弱的反铁磁相互作用。  相似文献   

6.
曾凌 《无机化学学报》2013,29(6):1149-1156
合成了2个配位聚合物{[Cd(btaa)(phen)(CH3COO)].H2O}n(1)和{[Ag2(btaa)(4,4-bpy)2](NO3).2H2O}n(2)(Hbtaa=1H-苯并三氮唑-1-乙酸,phen=1,10-邻菲啰啉,4,4-bpy=4,4-联吡啶),采用单晶X-射线、红外光谱、元素分析和热重分析对配合物进行了表征。配合物1中的镉离子通过1H-苯并三氮唑-1-乙酸根桥连成一维螺旋链状结构。在配合物2中,银离子被4,4-联吡啶连接成一维链状结构,这些一维链通过1H-苯并三氮唑-1-乙酸根桥连以及Ag...Ag作用和π-π堆积连接成一维梯子状结构。此外,还研究了配合物1的荧光性质。  相似文献   

7.
在水热条件下,以N-氧化-2-吡啶膦酸(H2L)为主配体,4,4′-联吡啶(bpy)为桥联配体,合成了3个铜有机膦酸配合物:{[Cu(L)(bpy)0.5(H_2O)]·2H_2O}n(1),{[Cu(HL)2(bpy)]·4H_2O}n(2)和{[Cu2(L)2(bpy)]·3H_2O}n(3)。配合物1中,相邻的铜离子由2个膦酸根连成二聚体,二聚体之间通过bpy桥联成一维链。配合物2中,单核[Cu(HL)2]被bpy连接成一维链。配合物3中,四聚体[Cu2(L)2]2被bpy连接成"砖块状"结构的二维层。磁性研究表明,配合物1和3中铜离子之间存在反铁磁性耦合。  相似文献   

8.
采用水热合成的方法,在以5-(4-羟基吡啶基甲基)间苯二甲酸(H2L)作主配体、4,4′-联吡啶(4,4′-bpy)和1,2-二(4-吡啶基)乙烯(bpe)作辅配体的条件下,得到2种新颖的Zn(Ⅱ)配位聚合物{[Zn(L)(4,4′-bpy)0.5]·2H2O}n(1)和{[Zn(L)(bpe)0.5]·2H2O}n(2)。配合物通过单晶X射线衍射的方法进行了结构分析,并进一步通过红外光谱(IR)、元素分析、PXRD和热重分析(TG)的方法进行了表征。结构分析表明配合物1展现出的是一种三维三重互穿网络;聚合物2为二维双层结构,并进一步组合成了三重平行互穿的2D→3D的空间网络。此外,研究了配合物的荧光性质。  相似文献   

9.
采用水热法合成了{[Cu(phen)(H2O)(o-tpha)]·H2O}n(1), [Cu2Cl4(phen)2](2), [Cu4Cl4·(bipy)2](3)和[Cu2Cl2(phen)]n(4)(bipy=2,2'-bipyridyl, phen=1,10-phenanthroline, o-H2tpha=o-phthalic acid)4个铜配合物. X射线单晶衍射结果表明, 配合物1和4是具有一维无限结构的聚合物, 配合物2是双核Cu(Ⅱ) 配合物并由氢键连成超分子, 配合物3是四核Cu(Ⅰ) 簇合物. 常温下测定了4个配合物的表面光电压光谱(SPS)、场诱导表面光电压光谱(FISPS)、IR和UV-Vis-NIR光谱. SPS的测试结果显示, 4个化合物均在300~800 nm范围内存在光伏响应带, 但是它们呈现了不同的特性. 配合物1~3的表面光电压光谱呈现出正的表面光伏响应(SPV), 配合物4的SPS呈现出负的表面光伏响应. 4个配合物的表面光伏响应带的位置、数量以及强度均有明显不同.  相似文献   

10.
采用水热方法,用2种联苯四羧酸配体(2,4-H4bpta和3,5-H4bpta)和4,4'-联吡啶(4,4'-bipy)或2,2'-联吡啶(2,2'-bipy)分别与MnCl_2·4H_2O和CuCl_2·H_2O反应,合成了一个具有一维双螺旋链结构的配位聚合物[Mn(μ3-2,4-H2bpta)(4,4'-bipy)2]n(1)和一个二维层状配位聚合物{[Cu(μ4-3,5-bpta)0.5(2,2'-bipy)(H_2O)]·H_2O}n(2),并对其结构和磁性质进行了研究。结构分析结果表明2个配合物分别属于单斜晶系,P21/c和C2/c空间群。配合物1具有一维双螺旋链结构,而且这些一维链通过O-H…N氢键作用进一步形成了二维超分子网络。而配合物2具有二维层状结构。研究表明,配合物1中相邻锰离子间存在铁磁相互作用。  相似文献   

11.
Two novel metal‐organic coordination polymers, [Mn2(dpa)2(4,4′‐bipy)2(H2O)2]n ( 1 ) and [Mn(Hdpa)2(bpe)(H2O)2]n ( 2 ) (H2dpa = diphenic acid, 4,4′‐bipy = 4,4′‐dipyridine, bpe = 1,2‐bis(4‐pyridyl)ethene), have been hydrothermally synthesized. Single crystal X‐ray diffraction analyses reveal the two‐dimensional and three‐dimensional structures for complexes 1 and 2 , respectively. In 1 , the dpa ligands link metal ions with different modes into one‐dimensional chains, and the 4,4′‐bipy terminally coordinate to the metal ions extending the chains into a layer. Whereas in 2 , the flexible bpe ligands link the structure motifs into chains, and the hydrogen bonding interactions between the chains lead to the formation of cavity structure.  相似文献   

12.
Two coordination polymers, {[Zn2(L)(bpy)] · 2H2O}n ( 1 ) and [Zn2(L)(bpe)]n ( 2 ) [H4L = terphenyl‐2,2′,4,4′‐tetracarboxylic acid, bpy = 4,4′‐bipyridine, and bpe = 1,2‐bis(4‐pyridyl)ethane], were hydrothermally synthesized under similar conditions and characterized by elemental analysis, IR spectroscopy, TGA, and single‐crystal X‐ray diffraction analysis. Compound 1 has a 3D framework containing Zn–O–C–O–Zn 1D chains. Compound 2 exhibits a 3D framework, which features tubular channels. The channels are occupied by bpe molecules. The differences in the structures demonstrate that the auxiliary dipyridyl‐containing ligand has a significant effect on the construction of the final framework. Additionally, the fluorescent properties of the two compounds were also studied in the solid state at room temperature.  相似文献   

13.
Two cobalt(II) coordination polymers, {[Co(μ‐4,4′‐bipy)(4,4′‐bipy)2(H2O)2]·(OH)3·(Me4N)·4,4′‐bipy·4H2O}n ( 1 ) and {[Co(μ‐4,4′‐bipy)(H2O)4]·suc·4H2O}n ( 2 ) (4,4′‐bipy = 4,4′‐bipyridine, suc = succinate dianions), were hydrothermally synthesized and structurally characterized by X‐ray diffraction analysis, UV‐Vis‐NIR, and ICP. The main structure feature common to the both polymers is presence of the infinite linear chains, [Co(μ‐4,4′‐bipy)(4,4′‐bipy)2(H2O)2]n ( 1 ) and [Co(μ‐4,4′‐bipy)(H2O)4]n ( 2 ), respectively. In 1 , the chains are further linked by the hydrogen‐bond and π‐π stacking interaction, producing extended layer structure. The 4,4′‐bipy molecules in 1 play three different roles. In 2 , the chains are linked into three‐dimensional network structure via complicated hydrogen bonding system. The variable temperature (2.0~300 K) magnetic susceptibility of 1 indicates a tendency of spin‐transition in the temperature range of 110 K to 22 K, which attributes to the transition of high‐spin to low‐spin from Co2+(d7) ion. Also, the result of surface photovoltage spectroscopy (SPS) reveals that the polymer 1 has significant photoelectric conversion property in the region of 300‐800 nm.  相似文献   

14.
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   

15.
First examples of transition metal complexes with HpicOH [Cu(picOH)2(H2O)2] ( 1 ), [Cu(picO)(2,2′‐bpy)]·2H2O ( 2 ), [Cu(picO)(4,4′‐bpy)0.5(H2O)]n ( 3 ), and [Cu(picO)(bpe)0.5(H2O)]n ( 4 ) (HpicOH = 6‐hydroxy‐picolinic acid; 2,2′‐bpy = 2,2′‐bipyridine; 4,4′‐bpy = 4,4′‐bipyridine; bpe = 1,2‐bis(4‐pyridyl)ethane) have been synthesized and characterized by single‐crystal X‐ray diffraction. The results show that HpicOH ligand can be in the enol or ketonic form, and adopts different coordination modes under different pH value of the reaction mixture. In complex 1 , HpicOH ligand is in the enol form and adopts a bidentate mode. While in complexes 2 – 4 , as the pH rises, HpicOH ligand becomes in the ketonic form and adopts a tridentate mode. The coordination modes in complexes 1 – 4 have not been reported before. Because of the introduction of the terminal ligands 2,2′‐bpy, complex 2 is of binuclear species; whereas in complexes 3 and 4 , picO ligands together with bridging ligands 4,4′‐bpy and bpe connect CuII ions to form 2D nets with (123)2(12)3 topology.  相似文献   

16.
{[Cu2(L‐val)2(4,4′‐bipy)(H2O)2](NO3)2}n was synthesized and its crystal structure was determined by X‐ray diffraction. In the presence of 4,4′‐bipyridine, deprotoned L‐valine chelates CuII ions into coordination layers which were linked into a framework by hydrogen‐bonded chains resulting from nitrate anions and water molecules.  相似文献   

17.
Reaction of the flexible phenolic carboxylate ligand 2‐(3,5‐dicarboxylbenzyloxy)benzoic acid (H3L) with nickel salts in the presence of 1,2‐bis(pyridin‐4‐yl)ethylene (bpe) leads to the generation of a mixture of the two complexes under solvolthermal conditions, namely poly[[aqua[μ‐1,2‐bis(pyridin‐4‐yl)ethylene‐κ2N:N′]{μ‐5‐[(2‐carboxyphenoxy)methyl]benzene‐1,3‐dicarboxylato‐κ3O1,O1′:O3}nickel(II)] dimethylformamide hemisolvate monohydrate], {[Ni(C16H10O7)(C12H10N2)(H2O)]·0.5C3H7NO·H2O}n or {[Ni(HL)(bpe)(H2O)]·0.5DMF·H2O}n, 1 , and poly[[diaquatris[μ‐1,2‐bis(pyridin‐4‐yl)ethylene‐κ2N:N′]bis{μ‐5‐[(2‐carboxyphenoxy)methyl]benzene‐1,3‐dicarboxylato‐κ2O1:O5}nickel(II)] dimethylformamide disolvate hexahydrate], {[Ni2(C16H10O7)2(C12H10N2)3(H2O)2]·2C3H7NO·6H2O}n or {[Ni2(HL)2(bpe)3(H2O)2]·2DMF·6H2O}n, 2 . In complex 1 , the NiII centres are connected by the carboxylate and bpe ligands to form two‐dimensional (2D) 4‐connected (4,4) layers, which are extended into a 2D+2D→3D (3D is three‐dimensional) supramolecular framework. In complex 2 , bpe ligands connect to NiII centres to form 2D layers with Ni6(bpe)6 metallmacrocycles. Interestingly, 2D+2D→3D inclined polycatenation was observed between these layers. The final 5‐connected 3D self‐penetrating structure was generated through further connection of Ni–carboxylate chains with these inclined motifs. Both complexes were fully characterized by single‐crystal analysis, powder X‐ray diffraction analysis, FT–IR spectra, elemental analyses, thermal analysis and UV–Vis spectra. Notably, an interesting metal/ligand‐induced crystal‐to‐crystal transformation was observed between the two complexes.  相似文献   

18.
Two cadmium(II) coordination polymers {[Cd(btp)(NO2‐1,3‐bdc)(H2O)]·H2O}n ( 1 ) and {[Cd(btp)(1,2‐bdc)(H2O)]·H2O}n ( 2 ) were synthesized by the reaction of 1,3‐bis(1,2,4‐triazol‐1‐yl)propane (btp), 5‐nitroisophthalate (NO2‐1,3‐bdc), and 1,2‐benzenedicarboxylate (1,2‐bdc). 1 consists of undulated 2D (4,4) networks. Two identical undulated layers are parallel stacking to give a (2D→2D) polythreaded 2D network. A 3D supramolecular architectute is constructed through the hydrogen bond interactions. 2 has an unusual 2D (4,4) network with a thickness of ca. 10 Å. The btp ligands exhibit the anti‐gauche conformation in 1 and the anti‐anti conformation in 2 . The flexible btp ligand exhibits the key role in the assembly of the topologies of 1 and 2 . The luminescence and thermal stability were investigated.  相似文献   

19.
A mixed ligand approach was exploited to synthesize a new series of MnII‐based coordination polymers (CPs), namely, CP1 {[Mn(μ‐dpa)(μ‐4,4′‐bp)]?MeOH}, CP2 {[Mn3(μ‐dpa)3(2,2′‐bp)2]}, CP3 {[Mn3(μ‐dpa)3(1,10‐phen)2]?2 H2O}, CP4 {[Mn(μ‐dpa)(μ‐4,4′‐bpe)1.5]?H2O}, CP5 {[Mn2(μ‐dpa)2(μ‐4,4′‐bpe)2]? DEF}, and CP6 {[Mn(μ‐dpa)(μ‐4,4′‐bpe)1.5]? DMA} (dpa=3,5‐dicarboxyphenyl azide, 2,2′‐bp=2,2′‐bipyridine, 1,10‐phen=1,10‐phenanthroline, 4,4′‐bpe=1,2‐bis(4‐pyridyl)ethylene, 4,4′‐bp=4,4′‐bipyridine, DEF=N,N‐diethylformamide, DMA=N,N‐dimethylacetamide), to develop multifunctional CPs. Various techniques, such as single‐crystal X‐ray diffraction (SXRD), FTIR spectroscopy, elemental analysis, and thermogravimetric analysis, were employed to fully characterize these CPs. The majority of the CPs displayed a four‐connected sql topology, whereas CP4 and CP6 exhibited a two‐dimensional SnS network architecture, which was further entangled in a polycatenation mode. Compound CP1 displayed an open framework structure. The CPs were scaled down to the nanoregime in a ball mill for cell imaging studies. Whereas CP2 and CP4 were employed for cell imaging with RAW264.7 cells, CP1 was exploited for both cell imaging and heterogeneous catalysis in a cyanosilylation reaction.  相似文献   

20.
合成了两种金属配合物{[Cu2(pztc)(4, 4'-bpy)(H2O)4]·6H2O}n (1), {(H2bpe)[Cd(pztc)(H2O)2]·2.5H2O}n (2)(H4pztc=吡嗪-2, 3, 5, 6-四甲酸, bpy=4, 4'-联吡啶, bpe=1, 2-二(4-吡啶基)乙烯), 测定了其晶体结构, 并对其进行了红外光谱、荧光光谱和热重分析等表征。两种配合物均为二维层状结构, 但其中吡嗪四酸的配位方式不同。配合物2具有蓝色的荧光, 最大荧光发射峰在475 nm。测试了配合物1的电子顺磁共振谱, 结果显示Cu2+的特征谱带。  相似文献   

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