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1.
用四面体构型的配体四[3-(羧基苯)氧甲基]甲烷(H4L)与镉离子通过溶剂热法合成了结构不同的配合物[Cd6L3(DMA)3(H2O)]n(1)和{[Cd2L(H2O)4]·4H2O}n(2)(L=四[3-(羧基苯)氧甲基]甲烷)。化合物1属于三方晶系R3空间群。每个配体通过4个羧基连接了4个三核镉簇,每个三核镉簇连接了6个苯甲酸,形成双节点(4,6)-连接toc拓扑构型的三维骨架结构。配合物2属于单斜晶系C2/c空间群。每个配体连接了4个镉原子,仍保持四面体构型。镉原子由羧基沿着b轴连接成一维链,链与链之间通过配体连接,且2个相邻配体的苯环之间存在π-π堆积。此外,对化合物12在室温下做了固态紫外和荧光性质的研究。  相似文献   

2.
用溶剂热法合成了2个以5-(4-(2,6-二(2-吡啶基)-4-吡啶基)苯氧基)间苯二甲酸(H2L)为配体的金属-有机配位聚合物:{[NiL(H2O)]·H2O}n(1),[CdL(phen)]n(2)。通过X-射线单晶衍射,元素分析和红外光谱进行了结构表征。结构分析表明,在1中,L2-配体的2个羧基氧原子桥连相邻的2个Ni(Ⅱ)离子,形成平行于a轴的一维链,链间则通过吡啶氮原子与金属离子连接,最终形成具有(4,4)-连接三维网络结构。在2中,Cd(Ⅱ)为七配位的单帽三棱柱几何构型,L2-配体通过2个羧基和1个吡啶基与3个中心金属Cd(Ⅱ)相连,形成(3,3)-连接的二维层面结构,又通过面间的ππ堆积作用形成了3D超分子结构。测定了配位聚合物的热稳定性和2的荧光性质。  相似文献   

3.
采用对苯二甲酸为模板剂, 溶剂热法合成了2个以5-(4-(2, 6-二(2-吡嗪基)-4-吡啶基)苯氧基)间苯二甲酸(H2L)为配体的金属-有机配位聚合物:{[MnL] ·0.5H2O}n (1), {[CaL(H2O)2]·H2O}n (2)。通过X-射线单晶衍射, 元素分析和红外光谱进行了结构表征。结构分析表明, 1具有(3, 3)-连接的不同手性型二维层面结构, 这些交替出现的单手性左旋型和右旋型二维平面通过配体的吡啶环与吡嗪环间ππ堆积作用构成了三维超分子结构;2是通过L2-配体羧基桥连接相邻的Ca(Ⅱ)金属中心, 形成一条平行于b轴方向的一维链结构。研究了配位聚合物的热稳定性和2的荧光性质。  相似文献   

4.
以1,3-二(4'-羧基苯氧基)苯甲酸(H3L)为配体与金属盐反应,在水热条件下成功合成了2个金属-有机骨架(MOFs),分别为[Cd2(CH3COO)(L)(H2O)2]n (1)和[Na(H2L)]n (2).由于H3L配体配位模式的不同,配合物表现出不同的网络结构.单晶结构分析表明,配合物1属于三斜晶系,P1 空间群,配合物2属于单斜晶系,C2/c空间群.配合物1中Cd2+离子的次级构筑单元经由L3-连接形成三维网络结构.配合物2是一个5-连接的拓扑网络结构,其拓扑符号为(46·64).此外,还对配合物1的荧光性能进行了分析.  相似文献   

5.
采用溶剂热的方法,将配位模式丰富的多羧酸有机配体5-(2-硝基-4-羧基苯氧基)-间苯二甲酸(H3ncpoi)与Cd2+离子以及不同的辅助配体原位组装而成4个新的配位聚合物晶体:[Cd(Hncpoi)(2,2''-bpy)(H2O)]n1),{[Cd2(Hncpoi)2(bpyp)(H2O)4]·3H2O}n2),{[Cd2(Hncpoi)2(azpy)(H2O)2]·2H2O}n3),{[Cd2(Hncpoi)2(dpe)(H2O)2]·2H2O}n4),其中H3ncpoi为5-(2-硝基-4-羧基苯氧基)-间苯二甲酸,2,2''-bpy为2,2''-联吡啶,bpyp为1,4-二-吡啶基-4-亚甲基-哌嗪,azpy为4,4''-偶氮吡啶,dpe为1,2-二-(4-吡啶基)乙烯。对4个配合物进行了X射线单晶衍射、粉末衍射,元素分析、热重、荧光光谱等表征。X射线单晶结构分析表明,配合物1,2具有一维链状结构,而配合物3,4则具有二维(4,4)格子层状结构,一维链和二维层之间通过分子间作用力连接成三维超分子结构。进一步研究表明,辅助配体的构型、配位方式等对晶体结构具有决定性作用。与此同时,对几个配合物的荧光光谱进行分析,发现不同的辅助配体对配合物的荧光性能有着显著的影响。  相似文献   

6.
以硫酸镉、叠氮化钠和4-氰基吡啶或3-氰基吡啶为反应物,在水热条件下,通过原位反应分别得到了2个基于硫酸根离子和5-(4-吡啶基)四氮唑(4-Hptz)或5-(3-吡啶基)四氮唑(3-Hptz)配体的,具有三维层-柱状框架结构的无机-有机杂化材料,即[Cd2(H2O)(OH)(SO4)(4-ptz)]n(1)和[Cd2(OH)(SO4)(3-ptz)]n(2)。通过元素分析、红外光谱、热重分析以及单晶和粉末X-射线衍射分析对它们的组成和结构进行了表征。在配合物12的结构中,每个镉(Ⅱ)离子的配位数均为6,处于扭曲的八面体配位环境中,SO42-和OH-阴离子连接镉(Ⅱ)离子扩展形成碱式硫酸镉的二维无机阳离子层结构[Cd2(H2O)(OH)(SO4)]nn+(1)或[Cd2(OH)(SO4)]nn+(2),相邻的二维无机阳离子层间再通过4-ptz-(1)或3-ptz-(2)进一步柱连接,形成三维层-柱状结构的无机-有机杂化框架结构。室温下的固体荧光实验表明,在350nm的光激发下,配合物12分别在481和489nm处出现强烈的荧光发射。  相似文献   

7.
本文以5-甲基吡嗪-2-羧酸(Hmpca)同Pb(NO3)2和Sr(NO3)2水热反应得到了2个配合物{[Pb2(mpca)4]·H2O}n (1)和{[Sr2(mpca)4(H2O)2]·H2O}n (2),并用元素分析,FTIR和X-射线单晶结构分析进行了表征。X-射线单晶结构分析表明配合物1和2均属于单斜晶系,空间群分别是P21/nP21。在配合物1中,Pb(Ⅱ)的配位环境为扭曲的四方锥构型;在配合物2中,每个Sr(Ⅱ)与5个羧基氧,1个水分子和2个氮原子配位形成八配位的多面体构型,配合物1和2均是一维链状结构的化合物。在配合物1中游离的水分子与羧基氧之间的氢键作用将相邻的2条链连接成双链结构。配合物2中配位水和游离水分子与未配位的羧基氧以及配体中的氮原子之间的氢键作用将链连接成二维平面结构。  相似文献   

8.
采用对苯二甲酸为模板剂,溶剂热法合成了2个以5-(4-(2,6-二(2-吡嗪基)-4-吡啶基)苯氧基)间苯二甲酸(H2L)为配体的金属-有机配位聚合物:{[MnL] ·0.5H2O}n (1),{[CaL(H2O)2]·H2O}n (2)。通过X-射线单晶衍射,元素分析和红外光谱进行了结构表征。结构分析表明,1具有(3,3)-连接的不同手性型二维层面结构,这些交替出现的单手性左旋型和右旋型二维平面通过配体的吡啶环与吡嗪环间ππ堆积作用构成了三维超分子结构;2是通过L2-配体羧基桥连接相邻的Ca(Ⅱ)金属中心,形成一条平行于b轴方向的一维链结构。研究了配位聚合物的热稳定性和2的荧光性质。  相似文献   

9.
以硫酸镉、叠氮化钠和4-氰基吡啶或3-氰基吡啶为反应物,在水热条件下,通过原位反应分别得到了2个基于硫酸根离子和5-(4-吡啶基)四氮唑(4-Hptz)或5-(3-吡啶基)四氮唑(3-Hptz)配体的,具有三维层-柱状框架结构的无机-有机杂化材料,即[Cd2(H2O)(OH)(SO4)(4-ptz)]n(1)和[Cd2(OH)(SO4)(3-ptz)]n(2)。通过元素分析、红外光谱、热重分析以及单晶和粉末X-射线衍射分析对它们的组成和结构进行了表征。在配合物12的结构中,每个镉(Ⅱ)离子的配位数均为6,处于扭曲的八面体配位环境中,SO42-和OH-阴离子连接镉(Ⅱ)离子扩展形成碱式硫酸镉的二维无机阳离子层结构[Cd2(H2O)(OH)(SO4)]nn+(1)或[Cd2(OH)(SO4)]nn+(2),相邻的二维无机阳离子层间再通过4-ptz-(1)或3-ptz-(2)进一步柱连接,形成三维层-柱状结构的无机-有机杂化框架结构。室温下的固体荧光实验表明,在350 nm的光激发下,配合物12分别在481和489 nm处出现强烈的荧光发射。  相似文献   

10.
合成了2个一维Cd(Ⅱ)配合物[CdL(2,2′-bipy)]n·nH2O (1)和[CdL(2,2′-bipy)(H2O)]n·4nH2O (2)(H2L为1,3金刚烷二乙酸),并经X-射线单晶衍射方法测定了它们的晶体结构。在配合物1中,中心金属Cd(Ⅱ)为七配位的单帽三棱柱结构,而在配合物2中,Cd(Ⅱ)为七配位的五角双锥结构。1,3金刚烷二乙酸根作为桥联配体连接中心金属Cd(Ⅱ)离子形成一维链,同时通过氢键和π-π堆积作用形成三维超分子结构。研究了配合物1的荧光光谱。  相似文献   

11.
以1,3-二(4′-羧基苯氧基)苯甲酸(H3L)为配体与金属盐反应,在水热条件下成功合成了2个金属-有机骨架(MOFs),分别为[Cd2(CH3COO)(L)(H2O)2]n(1)和[Na(H2L)]n(2)。由于H3L配体配位模式的不同,配合物表现出不同的网络结构。单晶结构分析表明,配合物1属于三斜晶系,P1空间群,配合物2属于单斜晶系,C2/c空间群。配合物1中Cd2+离子的次级构筑单元经由L3-连接形成三维网络结构。配合物2是一个5-连接的拓扑网络结构,其拓扑符号为(46·64)。此外,还对配合物1的荧光性能进行了分析。  相似文献   

12.
In the title cadmium(II) coordination polymer, poly[tri‐μ4‐adipato‐bis(2‐phenyl‐1H‐1,3,7,8‐tetraazacyclopenta[l]phenanthrene‐κ2N7,N8)tricadmium(II)], [Cd3(C6H8O4)3(C19H12N4)2]n, one of the Cd atoms is in a distorted pentagonal bipyramidal coordination environment, surrounded by five O atoms from three adipate (adip) ligands and two N atoms from one 2‐phenyl‐1H‐1,3,7,8‐tetraazacyclopenta[l]phenanthrene (L) ligand. A second Cd atom occupies an inversion center and is coordinated by six O atoms from six adip ligands in a distorted octahedral geometry. The carboxylate ends of the adip ligands link CdII atoms to form unique trinuclear CdII clusters, which are further bridged by the adip linkers to produce a two‐dimensional layer structure. Topologically, each trinuclear CdII cluster is connected to four others through six adip ligands, thus resulting in a unique two‐dimensional four‐connected framework of (4,4)‐topology. This work may help the development of the coordination chemistry of 1,10‐phenanthroline derivatives.  相似文献   

13.
A N-donor containing carboxylic ligand, 5-(pyridin-4-yl)isophthalic acid (H2L), was applied to construct two new coordination polymers [Cd(L)(DMF)] n (1, DMF?=?N,N-dimethylformamide) and {[Co(L)(H2O)2]?·?0.5CH3OH?·?1.5H2O} n (2) under different conditions. The complexes were characterized by IR, elemental, and thermogravimetric analyses, powder and single crystal X-ray diffraction. In 1 each L2? links four CdII to form a 3-D framework, while in 2 each L2? connects three metals to form a 2-D layer structure, which is further connected together by hydrogen bonds to form a 3-D architecture. The thermal stability of the complexes and the photoluminescence of 1 were investigated.  相似文献   

14.

The crystal structures of two clathrates with imidazole (=imH), [Cd3(CN)6(imH)2]·C6H12, I, and [Cd3(CN)6(imH)2]·C6H5Cl, II, have been analyzed by single-crystal X-ray diffraction methods. Clathrate I crystallizes in the monoclinic system, space group P21/n with a=13.416(2), b=14.140(2), c=14.151(1)Å, β=105.08(9)°, V=2592.1(5)&Aringsup3;, Z=4, R 1=0.0360, wR 2=0.0850 for 5931 independent reflections; II: monoclinic P21/n, a=12.369(2), b=14.313(2), c=14.416(4)Å, β=106.04(2)°, V=2452.7(9)&Aringsup3;, Z=4, R 1=0.0398, wR 2=0.1105 for 5642 independent reflections. The three-dimensional host structures of clathrates I and II are isostructural with each other. The host framework is built through cyanide bridges among two kinds of Cd ions, tetrahedral and octahedral, in a ratio of 2 : 1. The tetrahedral Cd(1) centre is linked to three octahedral Cd(3) atoms and one tetrahedral Cd(2) atom; the tetrahedral Cd(2) centre is ligated by one unidentate imidazole ligand and linked to one tetrahedral Cd(1) atom and two octahedral Cd(3) atoms; the octahedral Cd(3) centre is ligated by one unidentate imidazole ligand and linked to three tetrahedral Cd(1) atoms and two tetrahedral Cd(2) atoms. The novel host structure provides two types of channels, a large, elongated, rectangular channel and a small rectangular channel. The larger channel is occupied by imidazole ligands coordinated to tetrahedral Cd(2) and octahedral Cd(3). The smaller channel accommodates the guest molecules cyclohexane and chlorobenzene.  相似文献   

15.
Hydrothermal reaction of 1,2,4-triazole with CdCl2?·?2.5H2O generated a 3-D metal-organic framework, {[Cd3Cl2(Trz)4]?·?H2O} n (1) (Trz?=?1,2,4-triazole), which was characterized by elemental analysis, FT-IR, X-ray powder diffraction, X-ray single-crystal diffraction, TG/DTA, and photoluminescence measurements. Compound 1 crystallizes in the orthorhombic system, space group Pnma, a?=?16.906(3)?Å, b?=?8.3151(17)?Å, c?=?13.080(3)?Å, V?=?1838.6(6)?Å3, Z?=?4. Cd(1) is coordinated by four nitrogen atoms and one chloride to form a distorted trigonal-bipyramidal geometry. Cd(2) is an octahedron defined by four triazole nitrogen atoms and two chlorides. Two Cd(2) and one Cd(1) are linked by μ 3-Cl(1) to give a [Cd3Cl] cluster, which is connected by μ 2-Cl(2) to generate a 1-D inorganic chain. The 1-D inorganic chains are extended by μ 3-Trz to form a 2-D hybrid layer in the b, c-plane, which is ultimately linked by residual triazole ligands to give a 3-D framework. The [Cd3Cl] clusters and the Trz ligands can be regarded as 9- and 3-connected nodes, which lead to an unusual (3,9)-connected net with Schläfli symbol of (423?·?613)(43). The solid 1 exhibits high thermal stability and shows strong blue fluorescence emission at 410?nm in the solid state at ambient temperature.  相似文献   

16.
Three new coordination polymers, namely, [CuL0.5] ( 1 ), [Co(H2L)(H2O)2][H2O] ( 2 ), and [(CdCl)0.5Cd0.25(H2L)0.5] ( 3 ) were synthesized under hydrothermal conditions from the corresponding CuII, CoII, and CdII salts with a multidentate ligand of 2,2′,2′′,2′′′‐[2,3,5,6‐tetramethyl‐1,4‐phenylenebis(methylenenitrilo)]tetraacetic acid (H4L). The complexes were characterized by single‐crystal X‐ray diffraction, IR, thermogravimetric, and elemental analyses. Complex 1 crystallizes in the orthorhombic space group Pbca and has a three‐dimensional architecture with infinite two‐dimensional networks linked together by weak Cu–O interactions. Complex 2 crystallizes in the monoclinic space group P2(1) and displays a 2D network. Complex 3 crystallizes in the tetragonal space group P4(2)/ncm and exhibits an infinite 3D architecture that has unusual [Cd2(CO2)4Cl2] dinuclear paddle‐wheel units and [Cd(CO2)4] dodecahedron units. The results showed that the coordination arrangement of central metal atoms and the conformation and coordination mode of organic ligands play an important role in determining the structure of the complexes. The luminescence property of complex 3 was studied in the solid state at room temperature.  相似文献   

17.
Reactions of Cd(NO3)2 · 4H2O with 2‐quinolinecarboxylic acid (H‐QLC) in the presence of 1,4‐benzenedicarboxylic acid (H2‐BDC) or 1,3,5‐benzenetricarboxylic acid (H‐BTC) in DMF/H2O solvent afforded two compounds, namely, [Cd(QLC)(BDC)1/2(H2O)]n ( 1 ) and [Cd(QLC)(BTC)1/3]n ( 2 ). Both compounds are two‐dimensional (2D) frameworks but feature different cadmium‐carboxylate clusters as a result of the presence of the polycarboxylate ligands with different geometries and coordination preference. The dinuclear Cd2(QLC)2 units in 1 are bridged by the pairs of bridging water ligands to give a one‐dimensional (1D) chain, which is further linked by the second ligand of BDC2– to form a 2D structure. Compound 2 is constructed from unique hexanuclear macrometallacyclic Cd6(QLC)6 clusters, which are linked by the surrounding BTC3– ligands to generate a 2D structure. Photoluminescence studies showed both compounds exhibit ligand‐centered luminescent emissions with emission maxima at 405 and 401 nm, respectively.  相似文献   

18.
The reaction of 2‐morpholinoethylimino‐bis(methylenephosphonic acid) (H4L) with cobalt(II), nickel(II) acetate, and cadmium(II) chloride in ethanol/water mixed solvents afforded three new crystal‐engineered supramolecular metal phosphonates, Co(H3L)2 · 2H2O ( 1 ), Ni(H3L)2 · 2H2O ( 2 ), and [Cd2Cl4(H2O)6]0.5[H4L] ( 3 ) by using a layering technique. The cobalt(II) ions in complex 1 are hexacoordinated by four phosphonate oxygen atoms and two imino nitrogen atoms. The mononuclear units of complex 1 are connected through hydrogen bonds to form a three dimensional supramolecular network. The structure of compound 2 is analogous to that of 1 except that the cobalt(II) ion in compound 1 is replaced by nickel(II) in compound 2 . In the molecular structure of compound 3 , cadmium is coordinated to three chloride ions and three aqua oxygen atoms to form a novel neutral dinuclear complex. Several hydrogen bonds connect the dinuclear complex and the neutral form of the ligand to build a supramolecular three dimensional structure.  相似文献   

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