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1.
Three zinc(II) coordination polymers {[Zn(btp)(1,2-bdc)(H2O)]?·?H2O} n (1), {[Zn(btp)(1,3-bdc)(H2O)]?·?1.5H2O} n (2), and {[Zn(btp)(NO2-1,3-bdc)(H2O)]?·?2H2O} n (3) were synthesized by 1,3-bis(1,2,4-triazol-1-yl)propane (btp) and bis-carboxylate. Compound 1 is a thick 2-D network; 2 and 3 are undulated 2-D (4,4) networks. In 2 and 3, two adjacent networks interpenetrate to form a new 2-D double-layer network, which is sustained by hydrogen-bonding interactions. Compounds 1 and 2 reveal blue emission maximum at 351 and 403, respectively, in the solid state at room temperature.  相似文献   

2.
Two new ZnII complexes, {[Zn(L)(phen)(H2O)]?·?H2O} (1) and {[Zn(L)(4bpy)(H2O)]?·?H2O} (2) (L?=?5,6-dihydro-1,4-dithiin-2,3-dicarboxylate, phen?=?1,10-phenanthroline, and 4bpy?=?4,4′-bipyridine), have been prepared by in situ reaction of Zn(ClO4)2?·?6H2O with 5,6-dihydro-1,4-dithiin-2,3-dicarboxylic anhydrate in the presence of lithium hydroxide, together with incorporating chelating phen or bridging 4bpy as co-ligands. Their structures were determined by single-crystal X-ray diffraction. Complex 1 takes a 1-D helical structure that is further assembled into a 2-D network by O–H?···?O, C–H?···?O hydrogen bonds, and weak S?···?S interactions, and then an overall 3-D supramolecular framework was formed by π?···?π stacking interactions. Complex 2 possesses a 2-D (4,4)-layered structure. The structural difference between 1 and 2 can be attributed to the different N-donor auxiliary co-ligands. Both 1 and 2 are photoluminescent materials whose emission properties are closely related to their intrinsic structure.  相似文献   

3.
Four new anthraquinone-1,5-disulfonate (L)-based metal complexes with N,N-bidentate chelating coligands, {[Pb(phen)2(L)]?·?4H2O} n (1), {[Mn2(2,2′-bipy)2(H2O)6(L)]?·?L?·?6H2O} (2), [Co(phen)2(H2O)(L)] (3), and [Zn(phen)2(H2O)(L)] (4) (phen = 1,10-phenanthroline and 2,2′-bipy?=?2,2′-bipyridine), have been hydrothermally synthesized and were structurally characterized by single-crystal X-ray diffraction, elemental analyses, FT-IR spectra, thermogravimetric curves, and solid luminescence spectra. Structural analysis suggests that 1 is a polymeric 1D zigzag chain bridged by dianionic L. In contrast, the other three complexes have discrete centrosymmetric binuclear structure for 2 and isolated isomorphic mononuclear entities for 3 and 4, which are further assembled into 3D supramolecular networks by abundant hydrogen-bonding and/or π–π stacking interactions. Additionally, 2 and 4 exhibit favorable luminescent emissions, suggesting they are potential candidates for light emission materials.  相似文献   

4.
通过溶剂热法合成了 3 个锌的配位聚合物{[Zn2(bipmo)2(ipa)2]·3H2O}n (1)、{[Zn(bipmo)(5-OH-ipa)]·DMA·H2O}n (2)和{[Zn(bipmo)(5-Me-ipa)]·H2O}n (3),其中 bipmo=双(4-(1H-咪唑-1-基)苯基)甲酮,H2ipa=间苯二甲酸,5-OH-ipaH2=5-羟基间苯二甲酸,5-Me-ipaH2=5-甲基间苯二甲酸。用元素分析、红外光谱和单晶X射线衍射等技术对结构进行了表征。单晶X射线衍射分析表明,配合物1具有二重互穿的{44·62}二维网络结构,配合物2则是{65·8}拓扑的二维结构,配合物3却表现为二维的{63}拓扑网络。间苯二甲酸上 5-位取代基的不同对最终的结构形成有重要的影响。此外,对化合物 1~3的发光性质也进行了详细研究。  相似文献   

5.
通过溶剂热法合成了3个锌的配位聚合物{[Zn2(bipmo)2(ipa)2]·3H2O}n(1)、{[Zn (bipmo)(5-OH-ipa)]·DMA·H2O}n(2)和{[Zn (bipmo)(5-Me-ipa)]·H2O}n(3),其中bipmo=双(4-(1H-咪唑-1-基)苯基)甲酮,H2ipa=间苯二甲酸,5-OH-ipaH2=5-羟基间苯二甲酸,5-Me-ipaH2=5-甲基间苯二甲酸。用元素分析、红外光谱和单晶X射线衍射等技术对结构进行了表征。单晶X射线衍射分析表明,配合物1具有二重互穿的{44·62}二维网络结构,配合物2则是{65·8}拓扑的二维结构,配合物3却表现为二维的{63}拓扑网络。间苯二甲酸上5-位取代基的不同对最终的结构形成有重要的影响。此外,对化合物1~3的发光性质也进行了详细研究。  相似文献   

6.
Hydrothermal reactions of Sm2O3, Gd(ClO4)3?·?6H2O and Tb(ClO4)3?·?6H2O with nitrilotriacetic acid, give rise to three lanthanide coordination polymers, {[Sm(NTA)(H2O)2]?·?H2O} n (1), {[Gd(NTA)(H2O)]?·?H2O} n (2) and {[Tb(NTA)(H2O)]?·?H2O} n (3). Their solid-state structures have been characterized by elemental analysis, and IR spectroscopy. X-ray single-crystal diffraction analyses indicated that 2 and 3 are isomorphous three-dimensional coordination polymers with eight-coordinate Gd(III) (or Tb(III)), while 1 forms a two-dimensional coordination polymer containing nine-coordinate Sm(III). The photophysical properties of 3 have been studied with excitation and emission spectra, which exhibit strong green emission.  相似文献   

7.
Three new coordination polymers, {[Cu(trza)(2,2′-bipy)(H2O)]?·?(ClO4)} n (1), {[Cu(trza)(2,2′-bipy)(H2O)]?·?(BF4)} n (2), and {[Cu(trza)(4,4′-bipy)]?·?(H2O)?·?(ClO4)} n (3) (Htrza?=?2-(1H-1,2,4-triazole)-1-acetic acid), have been synthesized and characterized by single-crystal X-ray diffraction analysis. Both 1 and 2 exhibit 1-D chain structure while 3 displays 2-D layer structure. The catalytic activities of 1 and 3 in the green oxidative coupling of 2,6-dimethylphenol have been investigated.  相似文献   

8.
Three new coordination polymers based on 2-ethyl-imidazole-4,5-dicarboxylate with 1,10-phenanthroline as ligands, Pb(HEIDC)(phen)2 (1), [Zn(EIDC)(phen)] n (2), and {[Ba(H2EIDC)2(phen)]?·?(phen)2?·?[Ba(H2EIDC)(HEIDC)(phen)]} n (3) (H3EIDC?=?2-ethyl-1-Himidazole-4,5-dicarboxylate; phen?=?1,10-phenanthroline), have been synthesized under hydrothermal conditions and characterized by elemental analysis, infrared spectroscopy, thermogravimetric analysis, and single-crystal X-ray diffraction. Complex 1 displays a tetranuclear square constructed of four Pb(II) centers, four HEIDC, and eight phen, resulting in a 3-D network with a 1-D open channel along the c-axis via C–H?···?O hydrogen bonds, C–H?···?π, and π–π stacking interactions. Complex 2 is an infinite zigzag chain resulting in the final 3-D supramolecular framework via C–H?···?O and π–π stacking interactions. Complex 3 is composed of two individual Ba chains, exhibiting a 3-D framework via O–H?···?O, O–H?···?N hydrogen bonds, and π–π stacking interactions. The photoluminescence spectra of 1 and 2 in the solid state have been investigated, 1 exhibits green photoluminescence in the solid state at room temperature.  相似文献   

9.
The coordination polymers {[Zn2(HIDC)2(tib)] · H2O}n ( 1 ) and {[Cd(HIDC)(tib)] · H2O}n ( 2 ) [H3IDC = 1H‐imidazole‐4, 5‐dicarboxylic acid, tib = 1, 3,5,‐tris(1‐imidazolyl) benzene] were obtained under hydrothermal conditions. Their structures were determined by single‐crystal X‐ray diffraction analysis and further characterized by elemental analysis and IR spectroscopy. Complex 1 exhibits a two‐dimensional layer structure with a 63‐hcb topology. Complex 2 has a three‐dimensional structure with a pcu topology. It is shown that the carboxylate ligand can bear diverse structures regulated by metal ions. Additionally, the photoluminescence behaviors of complexes 1 and 2 are discussed.  相似文献   

10.
合成和表征了5个螺旋配位聚合物{[Cu(Hbpma)(H2O)4]2(SO4)3·3.5H2O}n (1)、{[Ni(Hbpma)(H2O)4]4(SO4)6·10.75H2O}n (2)、{[Mn(Hbpma)(H2O)4](SO4)1.5·3H2O}n (3)、{[Zn(Hbpma)(H2O)4]4(SO4)6·4H2O·4CH3OH}n (4)和{[Cu(Hbpma)2(H2O)2](SO4)2·9H2O}n (5), 其中bpma代表N,N'-双(3-吡啶甲基)胺。晶体结构分析表明配合物1~4为一维链状结构, 配合物5为二维层状结构, 其中金属离子由质子化的bpma配体桥连。值得注意的是, 采取反-反式构象的柔性bpma配体使得配合物12为假螺旋链结构, 配合物34为螺旋链结构, 配合物5为螺旋层结构。同时研究了配合物的磁性和热稳定性。  相似文献   

11.
合成和表征了5个螺旋配位聚合物{[Cu(Hbpma)(H2O)4]2(SO4)3·3.5H2O}n (1)、{[Ni(Hbpma)(H2O)4]4(SO4)6·10.75H2O}n (2)、{[Mn(Hbpma)(H2O)4](SO4)1.5·3H2O}n (3)、{[Zn(Hbpma)(H2O)4]4(SO4)6·4H2O·4CH3OH}n (4)和{[Cu(Hbpma)2(H2O)2](SO4)2·9H2O}n (5),其中bpma代表N,N'-双(3-吡啶甲基)胺。晶体结构分析表明配合物1~4为一维链状结构,配合物5为二维层状结构,其中金属离子由质子化的bpma配体桥连。值得注意的是,采取反-反式构象的柔性bpma配体使得配合物12为假螺旋链结构,配合物34为螺旋链结构,配合物5为螺旋层结构。同时研究了配合物的磁性和热稳定性。  相似文献   

12.
Two new coordination polymers, [Zn(H2btc)(4,4′-bpy)2] n (1) and {[Cd(H2btc) (terpy)]?·?H2O} n (2) (H4btc?=?biphenyl-2,2′,4,4′-tetracarboxylic acid, 4,4′-bpy?=?4,4′-bipyridine, terpy?=?terpyridine), have been synthesized under hydrothermal conditions and characterized by elemental analysis, IR spectra, and single-crystal X-ray diffraction. Complexes 1 and 2 are 1-D chains linked through partially deprotonated H4btc. The adjacent 1-D chains of 1 are further formed into 2-D supramolecular architecture through inter-chain N–H···O hydrogen bonds. In contrast, due to a different auxiliary ligand, the 1-D chains of 2 are further extended into 3-D supramolecular framework through inter-chain O–H···O hydrogen bonds. Thermal stabilities and luminescence of 1 and 2 were also studied.  相似文献   

13.
Two pairs of isostructural transition metal coordination polymers, {[Co(L)(H2O)]n} (1) and {[Zn(L)(H2O)]n} (3), {[Co(L)(4,4′-bipy)(H2O)]·H2O}n (2) and {[Zn(L)(4,4′-bipy)(H2O)]·H2O}n (4) (H2L = N-pyrazinesulfonyl-glycine acid and 4,4′-bipy = 4,4′-bipyridine), have been synthesized and characterized by single-crystal X-ray diffraction, IR spectroscopy, elemental and thermogravimetric analyses. The structures show that 1 and 3 display 2-D polymeric grid frameworks with a 3-connected (4, 82) topology. 2 and 4 also exhibit a 2-D polymeric grid structure, but are constructed by a 4-connected (4, 4) topology. The adjacent 2-D polymeric grid frameworks for 1–4 are further linked by hydrogen bonding O–H?O interactions to form 3-D supramolecular interweaved orderly networks. The fluorescent properties of 3 and 4 were investigated in the solid state.  相似文献   

14.
利用双苯并咪唑基配体4,4′-二(苯并咪唑-1-甲基)联苯(bbmb)与V形二羧酸配体4,4′-二羧苯基醚(H2dcpe)合成了配合物{[Ni(bbmb)(dcpe)(H_2O)]·2H_2O}_n(1)和{[Mn_2(bbmb)(dcpe)_2(H_2O)]·1.5H_2O}_n(2)。通过红外、元素分析、X射线单晶衍射、热重分析等检测手段对配合物结构进行了表征。配合物1是具有sql拓扑构型的二维层状化合物。配合物2呈现出含有四核锰构型的二维层状结构。体外抗菌实验证明2个配合物都表现出良好的抗菌活性。  相似文献   

15.
Five Zn(II)-ferrocenyl carboxylate complexes, {[Zn(OOCClH3C6Fc)(η 2OOCClH3C6Fc)(dpa)]?·?(H2O)} (1), [Zn(η 2-OOCClH3C6Fc)2(2,2′-dip)]?·?(H2O)0.25} (2), {[Zn(η-OOCClH3C6Fc)2(bix)]2?·?(THF)} (3), [Zn(η-OOCClH3C6Fc)2?·?(Hfcz)] n (4) and {[Zn(η-OOCClH3C6Fc)2(H2L1)]?·?(DMF)2} n (5) [dpa?=?2,2′-dipyridylamine, 2,2′-dip?=?2,2′-bipyridine, bix?=?1,4-bis(imidazol-1-ylmethyl)benzene, Hfcz?=?α-(2,4-difluorophenyl)-α-(1H-1,2,4-triazol-l-ylmethyl)-1H-1,2,4-triazole-l-ethanol, H2L1?=?N,N′-bis(pyridin-4-yl)pyridine-2,6-dicarboxamide, Fc?=?ferrocene, FcC6H3ClCOONa?=?sodium 2-chloro-4-ferrocenylbenzoic], have been synthesized and characterized. Single-crystal X-ray analysis reveals that 1 and 2 are mononuclear structures, 3 is a dimer, and 4 and 5 are 1-D structures. The five complexes exhibit some differences in their conformations, which can be attributed to the influence of adjuvant ligands. Notably, various π–π interactions as well as CH/π interactions are discovered in 15, and they have significant contributions to self-assembly. The electrochemical properties of 15 indicate that half-wave potentials shift to positive potential compared with that of 2-chloro-4-ferrocenylbenzoic acid.  相似文献   

16.
采用水热法合成了2个化合物{[Cu2(Hpimdc)(4,4’-bpy)]·H2O}n1)和[Mn3(C8H7N2O42·6H2O]n2)(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   

17.
Three new complexes, {[Mn(dtb)(bpe)·2H2O]·H2O} n (1), {[Mn(dtb)(bpa)·2H2O]·H2O} n (2), and {[Mn(dtb)(phen)]} n (3) [H2dtb?=?5,5′-dithiobis(2-nitrobenzoic acid), bpe?=?1,2-bis(4-pyridyl)ethene, bpa?=?1,2-bi(4-pyridyl)ethane, phen?=?1,10-phenanthroline], have been synthesized under hydrothermal conditions with Mn(OAc)2·4H2O, dtb, and different N-donor ligands. X-ray structure analyses of 1 and 2 reveal analogous structures with 1D helical chains and 2D 44 chiral layers. The structure of 3 shows a 1D chain which is outwardly decorated with phen ligands. These neutral polymeric complexes exhibit structural diversity due to the different coordination modes of the flexible dtb ligand and the N-donor ligands. The thermogravimetric analyses and X-ray powder diffractions of 1–3 are also presented.  相似文献   

18.
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   

19.
Two new coordination polymers, [ZnL] n (1) and {[Zn(phen)(L)(H2O)]?·?3H2O} n (2) (H2L?=?1,2-bis[3-(1,2,4-triazolyl)-4-amino-5-carboxylmethylthio]ethane, phen?=?1,10-phenanthroline), have been synthesized and characterized by elemental analysis, IR, and X-ray diffraction. Polymer 1 is a 1-D infinite chain (space group P 1) and further forms a 3-D supramolecular structure by S?···?S interactions and hydrogen bonds. Polymer 2 displays a mononuclear structure (space group P 1) and extends into a 3-D supramolecular structure through hydrogen bonds. In addition, spectra and thermal stability of 1 and 2 are also discussed. Strong luminescence characteristics of both polymers are found, suggesting their potential applications as luminescent materials.  相似文献   

20.
Two coordination polymers, namely, {[Zn(bpea) (bmp)] · H2O}n ( 1 ) and {[Ni(bpea)(bimb)] · DMF}n ( 2 ) [H2bpea = biphenylethene‐4,4′‐dicarboxylate, bmp = 1,4‐bis(2‐methylimidazol‐3‐ium‐1‐yl)biphenyl and bimb = 1,4‐bis(1‐imidazol‐yl)‐2,5‐dimethyl benzene], were synthesized under solvothermal conditions with mixed organic ligands. Single crystal X‐ray diffraction reveals that complex 1 features a three‐dimensional (3D) structure with a sixfold interpenetrating dia net. Complex 2 shows a 3D fivefold interpenetrating dia topology. Furthermore, the solid state luminescent properties of complexes 1 and 2 were investigated at room temperature.  相似文献   

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