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1.
采用水热法合成了3种新的配合物[Zn(2,2'-oba)(bipy)_2]·2H_2O(1)、[Pb(2,2'-oba)(phen)]_n(2)和{[Pb(2,2'-oba)(bimbp)]·H_2O}_n(3)(2,2'-H_2oba=2,2'-氧基双(苯甲酸),bipy=2,2'-联吡啶,phen=1,10-菲咯啉,bimbp=4,4'-双(咪唑基)联苯),并用X射线单晶衍射、热重分析、红外光谱和元素分析等手段对其进行了表征。配合物1是一个零维结构,通过芳香环π-π堆积作用和强的分子间O-H…O氢键扩展为二维超分子结构。配合物2展现为一维链状结构,通过芳香环π-π堆积作用扩展为二维层状结构。配合物3呈现了一维双链结构,通过强的分子间O-H…O氢键产生了一个二维超分子结构。此外,对配合物1~3的固态荧光性质进行了研究。根据配合物1的晶体结构,利用TDDFT方法对配合物1的光致发光性能进行了理论计算,计算结果与实验数据吻合较好。  相似文献   

2.
利用3,5-二氨基苯甲酸配体合成了2种新的配合物[Cd(diaba)(phen)2]NO3·H2O(1)和[Zn(diaba)(2,2′-bipy)2](2)(H2diaba=3,5-diaminobenzoic acid;phen=1,10-phenanthroline,2,2′-bipy=2,2′-bipyridine),并对其进行了元素分析、红外光谱和X射线单晶衍射测定。配合物1属于正交晶系,空间群为Fddd,a=1.425 81(7)nm,b=2.564 62(13)nm,c=3.092 47(17)nm。配合物2属于单斜晶系,空间群为C2/c,a=1.273 62 nm,b=1.592 78 nm,c=1.519 35 nm,β=107.334°。配合物1和2都为单核晶体。配合物1的结构单元由1个CdII、1个3,5-二氨基苯甲酸和2个phen构成。配合物2的结构单元由1个ZnII、1个3,5-二氨基苯甲酸和2个2,2′-bipy构成。两种配合物再通过氢键或π-π堆积形成三维超分子网络。研究了配合物的热稳定性和荧光性质。  相似文献   

3.
通过水热法合成了2个新的配合物Cu2(cbba)4(phen)2(1)和Zn(cbba)2(bipy)(2)(Hcbba=2-(4′-氯-苯甲酰基)苯甲酸,phen=1,10-邻菲罗啉,bipy=2,2′-联吡啶),并对其进行了元素分析、红外光谱、热重和X-射线单晶衍射测定。这2个配合物通过π-π相互作用形成了三维超分子网状结构。此外,还研究了配合物2的荧光性质。  相似文献   

4.
以2,2′-二硫代二苯甲酸、2,2′-联吡啶、咪唑、硝酸锌和硝酸锰为原料,使用水热方法合成了配合物[Zn(EBLA)(2,2′-bipy)(H2O)](EBLA=2,2′-二苯甲酸硫醚)(2,2′-bipy=2,2′-联吡啶)(1),自然挥发法制备了配合物[Mn(EBSA)(im)2(H2O)]n(EBSA=2,2′-二硫代二苯甲酸)(im=咪唑)(2)。利用元素分析、红外和热重分析对其进行了表征。利用X-射线单晶衍射对结构进行了测定,并研究了配合物1的荧光性质。配合物1中,2,2′-二苯甲酸硫醚是通过水热方法由2,2′-二硫代二苯甲酸发生原位反应制备,Zn2+离子是五配位的四角锥双核结构;配合物2中,Mn2+离子是六配位的变形八面体一维链状结构。配合物中存在氢键和π-π堆积等弱的分子间作用力。  相似文献   

5.
以四溴代对苯二甲酸(H2TBTA)与2,2′-联吡啶(2,2′-bipy)为配体,与硝酸铜在水和甲醇混合溶剂中合成了1个一维铜配合物{[Cu(2,2′-bipy)(TBTA)(H2O)].H2O}n,并通过元素分析、红外分析、热重分析、X-射线粉末衍射和X-射线单晶衍射对其进行了表征。该配合物属于正交晶系,空间群为Pna21,a=1.399 9(11)nm,b=0.929 3(7)nm,c=1.557 9(11)nm,V=2.027(3)nm3,Z=4,R1=0.053 5。中心Cu(Ⅱ)离子处于一个五配位环境中,且在配合物中存在着π-π相互作用和氢键作用。热重分析表明该配合物在203℃开始发生分解。  相似文献   

6.
以2,2′-二硫代二苯甲酸、2,2′-联吡啶、咪唑、硝酸锌和硝酸锰为原料,使用水热方法合成了配合物[Zn(EBLA)(2,2′-bipy)(H2O)](EBLA=2,2′-二苯甲酸硫醚)(2,2′-bipy=2,2′-联吡啶)(1),自然挥发法制备了配合物[Mn(EBSA)(im)2(H2O)]n(EBSA=2,2′-二硫代二苯甲酸)(im=咪唑)(2)。利用元素分析、红外和热重分析对其进行了表征。利用X-射线单晶衍射对结构进行了测定,并研究了配合物1的荧光性质。配合物1中,2,2′-二苯甲酸硫醚是通过水热方法由2,2′-二硫代二苯甲酸发生原位反应制备,Zn2+离子是五配位的四角锥双核结构;配合物2中,Mn2+离子是六配位的变形八面体一维链状结构。配合物中存在氢键和π-π堆积等弱的分子间作用力。  相似文献   

7.
使用2,2′-二硫代二苯甲酸和2,2′-联吡啶(2,2′-bipy)、硝酸铜在水热条件下发生的原位反应合成了一个铜配合物,即[Cu2(C14H8O4S)2(C10H8N2)2](1)(C14H8O4S=2,2′-二羧苯基硫醚,C10H8N2=2,2′-联吡啶);然后又利用2,2′-二硫代二苯甲酸和菲咯啉(phen)、氯化钙在水溶液中合成了一个钙配合物,即{[Ca(C14H8O4S2)(C12H8N2)2]·(H2O)2}n(2)(C14H8O4S=2,2′-二硫代二苯甲酸根,C12H8N2=菲咯啉),并对它们分别进行了元素分析、红外光谱、热稳定性、X射线粉末衍射和X射线单晶衍射的表征。结果表明:配合物1由2,2′-二羧苯基硫醚配体连接形成了一个双核的化合物,通过氢键和氮杂环之间的π…π作用形成三维超分子网络结构。配合物2由二硫代二苯甲酸配体桥联形成了一个一维链状结构,通过氢键和氮杂环之间的π…π作用也形成三维超分子网络结构。并且,对这2个配合物的热稳定性分别进行了研究。  相似文献   

8.
水热条件下,合成了2个含对位取代苯甲酸和2,2'-联吡啶配体的二价铅配合物[Pb(4-HOBA)2(2,2'-bipy)]·H2O(4-HOBAH=4-hydroxybenzoic acid,2,2'-bipy=2,2'-bipyridine)(1)及[Pb(4-MBA)2(2,2'-bipy)](4-MBAH=4-methylbenzoic acid)(2),并通过X-射线单晶结构分析、元素分析、红外光谱、紫外光谱、荧光光谱以及热重分析等手段对配合物进行了表征与研究.X-射线单晶结构测定表明,2种晶体的不对称单元中,六配位的二价铅离子分刖与来自1个2.2'-联吡啶的2个N原子和2个对位取代苯甲酸的4个O原子螫合.配合物1属单斜晶系,P21/c空间群,a=1.09483(4)nm,b=1.751 94(6)nm,c=1.20479(4)nm,β=100.334(2)°,V=2.27339(14)nm3,Z=4,final R1=0.0254,wR2=0.0674.广泛存在的分子间氢键和弱π…π堆积作用将配合物1组装成稳定的三维超分子结构.配合物2属三斜晶系,P-1空间群,a=0.955 10(11)nm,b=1.00805(12)am,c=1.324 83(15)nm,a=109.865(1)°,β=97.322(1)°,γ=90.643(1)°,V=1.1878(2)nm3,Z=2,final R1=0.0284,wR2=0.0508.配合物2经由一对Pb…O(0.3185(2)nm)弱相互作用被组装成二聚体结构.弱的Ph…O相互作用及与配合物1中类似的π…π堆积作用共同构筑了配合物2的三维结构.在配合物1和2中,铅的6s孤电子均显示了立体化学活性,使配位键分布于半球型区域.同时,两种配合物固体均具有光致发光特性,并在蓝光区有较强发射.  相似文献   

9.
水热条件下,合成了一个新的单核铜(Ⅱ)配合物[Cu(TFBA)(2,2′-bipy)(H2O)2](TFBA)(HTFBA=2,3,4,5-四氟苯甲酸,2,2′-bipy=2,2′-联吡啶),并通过元素分析、红外光谱,热重分析和X-射线单晶衍射对其进行了表征。铜(Ⅱ)分别与来自1个2,2′-bipy的2个氮原子、1个2,3,4,5-四氟苯甲酸根的1个氧原子和2个水分子中的2个氧原子配位,形成变形的四方锥的配位构型。配合物通过强的O-H…O氢键作用形成了二聚体结构,该二聚体又通过分子间弱的C-H…O氢键和C-H…π作用形成了一维链状结构。对配合物中[Cu(TFBA)(2,2′-bipy)(H2O)2]+进行了量子化学从头计算,探讨了配合物的稳定性、分子轨道能量以及一些前沿分子轨道的组成特征。  相似文献   

10.
水热条件下采用Sm(NO3)3.6H2O,1-萘乙酸和5,5’-二甲基-2,2’-联吡啶作为反应物合成出一个双核钐金属配合物Sm2(1-npac)6(dmpy)2.(H2O)3(1)(1-npac=1-萘乙酸,dmpy=5,5′-二甲基-2,2′-联吡啶),并分别用元素分析、红外光谱、差热分析、X-射线粉末衍射,紫外-可见光谱和X-射线单晶衍射等表征了该结构。晶体结构分析结果表明:化合物1为双核钐髥配合物,通过分子间的氢键作用以及C-H…π和π…π的堆积作用,双核分子进一步被连接成三维超分子结构。荧光分析表明常温固态下配合物1发射橙色荧光,荧光寿命为0.87μs(598 nm)。  相似文献   

11.
Fan SR  Zhu LG 《Inorganic chemistry》2007,46(16):6785-6793
Four structurally diverse complexes, {[Pb(Hssal)(2,2'-bipy)](4,4'-bipy)0.5}n (1), [Pb2(Hssal)2(2,2'-bipy)2(4,4'-bipy)(H2O)2] (2), [Pb(Hssal)(phen)(4,4'-bipy)0.5]n (3), and [Pb(Hssal)(2,2'-bipy)(bpe)0.5]n (4), have been synthesized and characterized by elemental analyses, IR, thermogravimetric analyses, fluorescent spectra, and single-crystal X-ray analyses, where Hssal2- is doubly deprotonated 5-sulfosalicylate, 2,2'-bipy is 2,2'-bipyridine, phen is 1,10-phenanthroline, 4,4'-bipy is 4,4'-bipyridine, and bpe is trans-1,2-bis(4-pyridyl)ethylene. The structure of complex 1 possesses a one-dimensional ladderlike chain with guest 4,4'-bipy molecules, while the molecular structure of complex 2 is a dimeric species with a coordinating 4,4'-bipy ligand. Complex 3 consists of a one-dimensional ladderlike chain with monodentate 4,4'-bipyridine but somewhat different from that of complex 1. Complex 4 is a two-dimensional layer structure. In 1-4, all 5-sulfosalicylates are doubly deprotonated, and all carboxylate groups of Hssal2- chelate to PbII ions; however, the coordination modes of sulfonyl groups are different: syn-syn bridging in 1, noncoordinating in 2, syn-skew bridging in 3, and one-atom bridging in 4. The noncoordinating mode of sulfonate in PbII complexes containing 5-sulfosalicylate is first reported in this presentation. The 4,4'-bipy ligands act as guest molecules in 1, dimeric linkers in 2, and monodentates in 3. The pi-pi stacking interactions can be observed in complexes 1-3, whereas there is no such interaction in complex 4. The coordination spheres of PbII ions in 1-4 are controlled by three factors: the activity of a lone pair of electrons, weak Pb-O interactions, and pi-pi stacking interactions. The PbII lone pair in 4 is inactive, whereas in 1-3, they are stereochemically active. The thermal stability and fluorescent property of complexes 1-4 are different from those of PbII complexes only containing chelating ligands, [Pb(Hssal)(2,2'-bipy)(DMF)]n (5), and [Pb(Hssal)(2,2'-bipy)(H2O)]n (6), and [Pb(Hssal)(phen)(DMF)]n (7).  相似文献   

12.
Fan SR  Zhu LG 《Inorganic chemistry》2006,45(19):7935-7942
The synthesis and crystal structures of [Pb(Hssal)(2,2'-bipy)(DMF)]n (1), [Pb(Hssal)(2,2'-bipy)(H2O)]n (2), [Pb(Hssal)(phen)(DMF)]n (3), and [Pb3(ssal)2(phen)3]n (4) were reported, where Hssal2- and ssal3- are doubly and fully deprotonated 5-sulfosalicylates, 2,2'-bipy is 2,2'-bipyridine, and phen is 1,10-phenanthroline. Compounds 1-4 were synthesized by the various reaction conditions, such as reaction temperature, molar ratio, and pH, and these structures are formed by infinite chains or layers where Pb(II) ions are linked by Hssal2- or ssal3- bridges. Compound 1, which has a ladderlike chain, was formed in DMF/H2O. Compound 2 with a H2O molecule coordinated to Pb(II) was prepared by a hydrothermal reaction. Compounds 3 and 4 were synthesized in a higher pH compared to compounds 1 and 2, containing the 2,2'-bipy ligand. In 1-3, 5-sulfosalicylates are doubly deprotonated, whereas in 4, 5-sulfosalicylate is fully deprotonated. Coordination modes of Hssal2- and ssal3- ligands in 1-4 are novel and are first reported in this presentation. Although compounds 1 and 3 have the same structural topology, their aromatic-aromatic interactions are significantly different. The coordination spheres of Pb(II) ions in 1 and 3 are holodirected, whereas in 2 and 4, they feature somewhat hemidirected properties with small holes or gaps. Compound 4 exhibits some interesting features that (1) there is not any solvent in the structure, (2) there are extensively aromatic-aromatic stacking interactions among aromatic rings, and (3) there is also a weak interaction between Pb(II) atoms in the trinuclear motif.  相似文献   

13.
Three novel cyanide-bridged heterobimetallic coordination polymers have been synthesized by hydrothermal routes, in superheated water solutions, by using K3[Co(CN)6], NiCl2.6H2O, and alpha-diimine ligands: [Ni(CN)4Co(phen)] (1; phen = 1,10-phenanthroline), [Ni(CN)4Co(2,2'-bipy)] (2; 2,2'-bipy = 2,2'-bipyiridine), and [Ni(CN)4Co(2,2'-bipy)2] (3). The isostructural compounds 1 and 2 contain a two-dimensional network with Co(II) centers octahedrally coordinated by one chelating 2,2'-bipy ligand and four cyanide groups of four distinct [Ni(CN)4]2-, through crystallographically equivalent, bridging units. Compound 3 contains one-dimensional zigzag chains in which the Co(II) ion is coordinated by two chelating 2,2'-bipy ligands and two cyanides from two different [Ni(CN)4]2- units cis to each other. These compounds have been fully characterized by single-crystal or unconventional powder X-ray diffraction analyses and variable-temperature magnetic measurements.  相似文献   

14.
A flexible carboxylic ligand, l,4-benzenebis(thioacetic acid) (H2L), has been employed to assemble with Cd(Ⅱ) ions under hydrothermal conditions, generating a new complex [Cd2L2(2,2'-bipy)2]n (1). X-ray diffraction reveals the complex 1 possesses a self-assembly double helix structure deriving from [Cd2L2(2,2'-bipy)2] units linked by L2-ligands. A 3D infinite framework is constructed via π-π stacking of 2,2'-bipy. The photoluminescent properties in solid state were investigated.  相似文献   

15.
A new nickel(Ⅱ) coordination compound [Ni(L2-)(2,2′-bipy)(H2O)]·2H2O (H2L=phenyliminodiacetic acid) was obtained by self-assembly of phenyliminodiacetic acid, 2,2′-bipy, and NiCl2·6H2O in the mixed solvent of water and ethanol (V∶V=1∶1). The complex was characterized by elemental analysis, IR spectra, and X-ray crystallography analysis. The crystal is monoclinic, space group P21 /c with a=0.867 4(2) nm, b=0.907 3(1) nm, c=2.643 5(5) nm, β=91.01(1)°, V=2.080 2(4) nm3, Z=4, F(000)=992, Dc=1.520 Mg·m-3, R1=0.027 0 and wR2=0.067 5. In the complex, nickel (Ⅱ) atom is coordinated with a distorted octahedral geometry and extensive hydrogen bonds link the complexes into a 2D network structure. CCDC: 244926.  相似文献   

16.
<正>A new mixed-ligand Zn(Ⅱ)complex,[Zn(4,4'-bipy)_2(H_2O)_4]·2ANS·6H_2O(1,4,4'- bipy=4,4'-bipyridine,HANS=2-aminonaphthalene-1-sulfonic acid),has been isolated and structurally characterized by single-crystal X-ray diffraction,FT-IR spectrum,TG and elemental analysis.It crystallizes in the monoclinic system,space group P2_l/c with a=12.4852(8),b= 18.3163(12),c=10.9707(7)(?),β=114.2600(10)°,V=2287.3(3)(?)~3,D_c=1.455 g/cm~3,M_r= 1002.37,Z=2,F(000)=1048,μ=0.704 mm~(-1),the final R=0.0408 and wR=0.962 for 4029 observed reflections with I2σ(I).Interestingly,an unusual one-dimensional(1D)water tape with cyclic tetrameric water clusters can be observed in 1,which are further trapped via Zn-O coordination bonds exhibiting a 2D Zn(Ⅱ)-water layer.These 2D Zn(Ⅱ)-water layers are stacked together into a 3D interdigitated supramolecular architecture via weakπ…πinteractions,in which free ANS anions are tightly filled by hydrogen-bonding interactions.Thus,π…πand classical hydrogen-bonding interactions are found as main driving forces to stabilize the 2D Zn(Ⅱ)-water layers.  相似文献   

17.
用水热法合成了两种新的配合物[Cd2(e,e-trans-chdc)2(bipy)2(H2O)2].H2O(1)和[Mn2(e,a-cis-chdc)2(phen)2(H2O)2].2H2O(2)(chdc=1,2-环己二羧酸,bipy=2,2′-联吡啶和phen=1,10-邻菲咯啉),用X-射线单晶衍射分析确定了配合物的晶体结构。配合物1和2均为双核分子。配合物1中,2个镉髤离子由2个1,2-环己二羧酸根以e,e-trans配位方式桥联,每个镉髤离子与1个2,2′-联吡啶的2个氮原子、2个1,2-环己二羧酸根的4个氧原子及1个水分子中的氧原子配位,形成了单帽变形三棱柱构型。配合物2中,2个锰髤离子由2个1,2-环己二羧酸根以e,a-cis配位方式桥联,每个锰髤离子与1个1,10-邻菲咯啉的2个氮原子、2个1,2-环己二羧酸根的3个氧原子及1个水分子中的氧原子配位,形成了畸变的八面体构型。配合物1和2分子之间都存在π-π堆积和O-H…O、C-H…O弱作用,进而将双核分子连接成三维超分子网络结构。配合物的荧光均来自于配体的荧光。  相似文献   

18.
Five novel coordination polymers [Zn(2)(OA)(4,4'-bipy)(H(2)O)].0.5(4,4'-bipy), [Zn(2)(OA)(dib)(H(2)O)].H(2)O, [Zn(2)(OA)(bbi)(2)].3H(2)O, [Zn(2)(OA)(phen)(2)(H(2)O)] and [Zn(4)(OA)(2)(2,2'-bipy)(2)(H(2)O)].2H(2)O were obtained by hydrothermal reactions of Zn(NO(3))(2).6H(2)O with a V-shaped multicarboxylate ligand 3,3',4,4'-oxydiphthalic acid (H(4)OA) and a series of N-donor ligands, namely 4,4'-bipyridine (4,4'-bipy), 1,4-di(1-imidazolyl)benzene (dib), 1,1'-(1,4-butanediyl)bis(imidazole) (bbi), 1,10-phenanthroline (phen), 2,2'-bipyridine (2,2'-bipy). The structures of the complexes were established by single-crystal X-ray diffraction analysis. Complex exhibits a robust 3D porous structure with uncoordinated 4,4'-bipy molecules filling the cavities. Complexes and show a complicated 3D framework, while complexes and have a 2D network and a 1D helical chain structure, respectively. The results indicate that the multicarboxylate OA(4-) ligand can adopt varied coordination modes in the formation of the complexes and the influence of the N-donor ligand on the structure of the complexes is discussed. The photoluminescence properties of H(4)OA and were studied in the solid state at room temperature. Moreover, nonlinear optical measurements showed that displayed a second-harmonic-generation (SHG) response of 0.5 times of that for urea. The results suggested that the configuration and flexibility of the ligands play a key role in directing the related properties of the complexes.  相似文献   

19.
A novel zinc(H) metal phosphonate compound [Zn(phen)(m-OOCC6H4PO3H)] 1 (phen = phenanthroline) has been synthesized under hydrothermal conditions. Single-crystal X-ray structure analysis reveals that compound 1 belongs to the triclinic system, space group P1 with a = 9.3356(19), b = 10.203(2),c = 10.743(2)A,α = 76.3030(70), β= 69.2317(51), y = 84.3833(74)°,V = 929.4(3) ,A3, Z = 2, C2OH15N2O5PZn, Mr = 459.68, Dc = 1.643 g/cm^3,μ= 1.444, mm^-1, F(000) = 468, the final R = 0.0330 and wR = 0.0848. In the structure, the central ion Zn(H) is five-coordinated, linking three O atoms with one from carboxyl and the other two from phosphonyl group. The remained two coordinate sites were occupied by two N atoms from one phen molecule to form the asymmetric unit. Then every two adjacent asymmetric units are bridged by the O atoms from phosphonate group and carboxyl to give rise to a 1D chain along the b axis. These chains are constructed by weak π-π stacking interactions and C-H…π interactions to generate a 3D supramolecular framework.  相似文献   

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