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1.
李婷  李欣  周尚永  田丽 《无机化学学报》2015,31(6):1215-1223
利用5-磺酸基间苯二甲酸钠(NaH2sip)和双三唑烷烃,合成了3个配合物[Cu0.5(btm)(H2O)](H2sip)·H2O}n(1,btm=双三唑甲烷),{[Cu(btp)2(H2sip)(H2O)](NO3)·4H2O}n(2,btp=双三唑丙烷)和{[Cu(btb)2(Hsip)]n(3,btb=双三唑丁烷)。化合物1为一维双链结构;化合物2为二维四方网络结构,多个二维层依次叠加形成三维超分子结构;化合物3也具有二维层状结构,其中金属铜离子和双三唑丁烷构成的一维双链结构经双齿μ2-Hsip2-配体连接构成了二维层状结构。同时对配合物的热稳定性和顺磁共振特性进行了讨论。  相似文献   

2.
利用5-磺酸基间苯二甲酸钠(NaH2sip)和双三唑烷烃,合成了3个配合物[Cu0.5(btm)(H2O)](H2sip)·H2O}n (1,btm=双三唑甲烷),{[Cu(btp)2(H2sip)(H2O)](NO3)·4H2O}n (2,btp=双三唑丙烷) 和{[Cu(btb)2(Hsip)]n (3,btb=双三唑丁烷)。化合物1为一维双链结构;化合物2为二维四方网络结构,多个二维层依次叠加形成三维超分子结构;化合物3也具有二维层状结构,其中金属铜离子和双三唑丁烷构成的一维双链结构经双齿μ2-Hsip2-配体连接构成了二维层状结构。同时对配合物的热稳定性和顺磁共振特性进行了讨论。  相似文献   

3.
以4-(1H-1,2,4-三氮唑)苯甲酸(Htbc)为配体,采用水热法合成了两种新型4d-4f配位聚合物{[EuAg(tbc)3(H2O)]ClO4·H2O}n(1)和{[Eu2Ag3(tbc)6(NO3)2(H2O)2](ClO4)2·2H2O}n(2)。运用X射线单晶衍射法对该配位聚合物进行了结构测定,并对其进行了元素分析、红外光谱、PXRD及荧光光谱表征。单晶结构表明,配位聚合物1为正交晶系,空间群P212121,由一维三股螺旋链(其中2股右手螺旋和1股左手螺旋)通过Ag将其连成二维平面。配位聚合物2属于三斜晶系,空间群为P1,由内消旋一维两股螺旋链通过Ag将其连成二维平面。配位聚合物12的二维链结构均通过非共价键作用形成三维超分子,同时也表征了配位聚合物1和2的荧光性质。  相似文献   

4.
在水热条件下,利用硫代羟基二乙酸配体[thiodiglycolic acid=H2tda]和TbCl3·nH2O合成了新型稀土配合物[Tb2(tda)3(H2O)2]。单晶结构表明,配合物是以共边多面体[Tb2O16]为基本单元构筑的二维结构,并通过弱相互作用拓展为三维超分子体系。中心原子铽与氧原子的配位数是8和9,分别形成了单帽反四棱柱和三帽三角棱柱构型的空间配位多面体。配体H2tda在配合物中存在两种配位模式:(a) 双“顺-顺桥式双齿、螯合桥式三齿”模式和(b) 双“螯合双齿、顺-反桥式双齿”模式。荧光光谱研究表明:该配合物在室温下呈现较强的绿色荧光发射。配合物属三斜晶系,空间群P1。  相似文献   

5.
通过水热方法,采用H2cpna(H2cpna=5-(2′-carboxylphenyl))和bpy(bpy=2,2′-bipyridine)与Ni(OAc)2·4H2O反应,合成了一个具有二维结构的配位聚合物[Ni(cpna)(bpy)(H2O)]n (1),并对其结构和磁性质进行了研究。结构分析结果表明该聚合物的晶体属于单斜晶系,P21/c空间群。3个镍(Ⅱ)离子、3个cpna配体、3个2,2′-bpy配体和3个配位水分子形成了一个[Ni3(cpna)3(bpy)3(H2O)3]环,这些环通过镍(Ⅱ)离子与cpna配体的配位作用形成了一个二维层状结构。层与层之间又通过π-π堆积作用形成了一个三维的配位框架。研究表明,该聚合物中相邻镍(Ⅱ)离子之间存在很弱的反铁磁相互作用。  相似文献   

6.
采用水热法合成了2个铁的过渡金属配位聚合物[Fe(Medpq)(BDC)H2O]n(1)和{[Fe(Medpq)(QUI)H2O]·2H2O}n(2)(Medpq=2-methyldipyrido[3,2-f:2',3'-h]quinoxaline; H2BDC=terephthalic acid; H2QUI=2,3-pyridinedicarboxylic acid),并对其进行了元素分析、红外光谱和热重表征,并用X射线单晶衍射测定结构。2个配位聚合物中的中心铁(Ⅱ)离子,都呈现一个稍微扭曲的八面体几何构型。  相似文献   

7.
采用水热法合成了2个铁的过渡金属配位聚合物[Fe(Medpq)(BDC)H2O]n(1)和{[Fe(Medpq)(QUI)H2O]·2H2O}n(2)(Medpq=2-methyldipyrido[3,2-f:2',3'-h]quinoxaline; H2BDC=terephthalic acid; H2QUI=2,3-pyridinedicarboxylic acid),并对其进行了元素分析、红外光谱和热重表征,并用X射线单晶衍射测定结构。2个配位聚合物中的中心铁(Ⅱ)离子,都呈现一个稍微扭曲的八面体几何构型。  相似文献   

8.
以4-(1H-1,2,4-三氮唑)苯甲酸(Htbc)为配体,采用水热法合成了两种新型4d-4f配位聚合物{[EuAg(tbc)3(H2O)]ClO4·H2O}n(1)和{[Eu2Ag3(tbc)6(NO3)2(H2O)2](ClO4)2·2H2O}n(2)。运用X射线单晶衍射法对该配位聚合物进行了结构测定,并对其进行了元素分析、红外光谱、PXRD及荧光光谱表征。单晶结构表明,配位聚合物1为正交晶系,空间群P212121,由一维三股螺旋链(其中2股右手螺旋和1股左手螺旋)通过Ag将其连成二维平面。配位聚合物2属于三斜晶系,空间群为P1,由内消旋一维两股螺旋链通过Ag将其连成二维平面。配位聚合物12的二维链结构均通过非共价键作用形成三维超分子, 同时也表征了配位聚合物12的荧光性质。  相似文献   

9.
陈正军  张道  金国新 《无机化学学报》2005,21(12):1775-1783
选择含有烯丙基亚胺酚为辅助配体,设计合成了5个ⅣB族钛锆金属络合物[{CH2=CHCH2N=CH-C6H3(3-R)O}2MCl2](4aR=t-Bu,M=Zr;4bR=t-Bu,M=Ti;4cR=Ph,M=Zr;4dR=Ph,M=Ti)和[{(CH3)2CHCH2N=CH-C6H3(3-t-Bu)O}2ZrCl2] (5),对它们进行了红外光谱、核磁共振及元素分析表征。并用X-射线单晶衍射法测定了化合物4a4d的晶体结构。部分配合物在助催化剂MMAO的作用下对烯烃聚合显示了较好的催化活性,其中自固载催化剂4a生成了双峰分布的聚烯烃产品 (Mw/Mn=15.3~31.9)。  相似文献   

10.
合成了2个希夫碱配合物[Cu(HL1)ClO4]n(1)和[Cu(HL2)NO3]n(2)(H2L1=N-[(2-oxy-acetate)benzyl]-2-amino ethanol, H2L2=N-salicylidene-3-amino propanol),并将其在无酸化条件下用作甲基橙降解的光芬顿催化剂。1和2均为一维链状结构且铜为六配位的拉长八面体配位构型。它们均具有优秀的均相光芬顿试剂活性且1的光催化活性更优秀。实验结果表明,本研究中的配体结构对铜配合物的光催化活性有影响。  相似文献   

11.
通过席夫碱配体N-(2-吡咯甲基)-1-苯基乙亚胺与三乙基铝按物质的量之比为1:1在无氧无水的条件下反应,合成了席夫碱铝的有机金属化合物N-(2-吡咯甲基)-1-苯基乙亚胺·二甲基铝。其结构分别用核磁氢谱、碳谱,元素分析和X射线单晶衍射技术进行了表征。铝化合物在催化外消旋丙交酯开环聚合反应中表现出了中等的活性并得到了以等规聚合为主的高聚物。  相似文献   

12.
The preparation of the compounds o-C6H4(CCMR3)2 (M = Si, Ge, Pb; R = CH3; M = Pb; R = C6H5) is described. Their properties are compared with those of o-C6H4(CCSnR3)2 (R = CH3, C6H5) and those of their p-isomers. The structures and bonding conditions proposed for these molecules are supported by dipole measurements, mass spectroscopy, IR, Raman, 1H NMR and 13C NMR data.  相似文献   

13.
通过席夫碱配体N-(2-吡咯甲基)-1-苯基乙亚胺与三乙基铝按物质的量之比为1:1在无氧无水的条件下反应,合成了席夫碱铝的有机金属化合物N-(2-吡咯甲基)-1-苯基乙亚胺·二甲基铝。其结构分别用核磁氢谱、碳谱,元素分析和X射线单晶衍射技术进行了表征。铝化合物在催化外消旋丙交酯开环聚合反应中表现出了中等的活性并得到了以等规聚合为主的高聚物。  相似文献   

14.
The complex [Ag(DDM)2(CH3C6H4NH2)]NO3, where DDM is 4,4-diaminodiphenylmethane [CH2(C6H4NH2)2], was synthesized and its structure was determined. The crystals are monoclinic, space group P21/n, a = 9.543(2) ?, b = 18.056(4) ?, c = 1.901(2) ?, β = 106.94(3)°, V = 1796.8(6) ?3, ρcalcd = 1.443 g/cm3, Z = 4. The Ag atom (at the inversion center) is coordinated at the vertices of an almost undistorted octahedron by six nitrogen atoms of the primary amino groups from four bridging DDM molecules and two terminal p-toluidine molecules (Ag-N, 2.546(3) ?; NAgN, 89.7–90.3°). Wavelike layers composed of conjugate multiunit metal rings, each containing four Ag+ ions and four bridging DDM ligands, are formed in the structure in the [101] direction (a 2D polymer). Uncoordinated NO 3 anions are arranged in the cavities between the layers and link them by N-H⋯O hydrogen bonds. Original Russian Text ? Yu.V. Kokunov, V.V. Kovalev, Yu.E. Gorbunova, 2007, published in Zhurnal Neorganicheskoi Khimii, 2007, Vol. 52, No. 12, pp. 1992–1998.  相似文献   

15.
[C4H9)4N]2[Mo2O7] reacts with a variety of organic species containing α-diketone groups to give tetranuclear complexes of general composition [RMo4O15X]3−. The complexes [(C4H9)4N]3[(C9H4O)Mo4O15(OCH3)] (I), [(C4H9)4N]3[(C14H10)Mo4O15(C6H5CO2)] (11) and [(C4H9)4N]3[(C14H8)Mo4O15(OH)] (III) were synthesized from the reactions of dimolybdate with ninhydrin, benzil and phenanthraquinone, respectively. Complex II may also be prepared from dimolybdate and benzoin in acetonitrile-methanol solution, from which it co-crystallizes with the binuclear species [(C4H9)4N]2[Mo2O5(C6H5C(O)C(O)C6H5)2] · CH3CN · CH3OH (IV). Complexes I–III exhibit the tetranuclear core, previously described for the α-glyoxal derivatives [(C4H9)4N]3[(HCCH)Mo4O15X], where X = F or HCO2. The ligands may be formally described as diketals, formed by insertion of ligand carbonyl subunits into molybdenum-oxygen bonds. The structures I–III differ most dramatically in the identity and coordination mode of the anionic ligand X which occupies a position opposite the diketal moiety relative to the [Mo4O11]2+ central cage. Thus, I exhibits a doubly bridging methoxy group in this position, while II possesses a benzoate ligand with an unusual μ3-O,O′coordination mode. Complex III presents a hydroxy-group unsymmetrically bonded to three of the molybdenum centres. The stereochemical consequences of the various coordination modes are discussed. Crystal data: Compound I, monoclinic space group Pc, a = 24.888(2), b = 12.897(3), c = 24.900(3) Å, β = 101.94(2)°, Dcalc = 1.28 g cm−1 for Z = 4. Structure solution and refinement based on 8695 reflections with Fo 6σ(Fo) (Mo-Kα, λ = 0.71073 Å) converged at a conventional discrepancy factor of 0.060. Compound II, orthorhombic space group Pbca, a = 20.426(6), b = 26.916(6), c = 32.147(7) Å, V = 17673.2(20) Å3, Dcalc = 1.33 g cm−3 for Z = 8; 5224 reflections, R = 0.076. Compound III, tetragonal space group I41/a, a = b = 48.129(6), c = 13.057(2) Å, V = 30246.2(12) Å3, Dcalc = 1.35 g cm−3 for Z = 16; 5554 reflections, R = 0.053. Compound IV, orthorhombic space group Pnca, a = 16.097(4), b = 16.755(4), c = 25.986(7) Å, V = 7008.1(13) Å3, Z = 4, Dcalc = 1.18 g cm−3 ; 2944 reflections, R = 0.061.  相似文献   

16.
Triphenylbismuth diaroxides Ph3Bi(OAr)2 (Ar = C6H3(Br2-2,4) (I), C6H2(Br2-2,6)(NO2-4) (II), and C6H2[(NO2)3-2,4,6] (III) are synthesized in yields up to 74% by the reaction of triphenylbismuth with phenols in the presence of hydrogen peroxide (taken at a molar ratio 1: 2: 1, respectively) in ether. According to X-ray diffraction data, the bismuth atoms in compounds I-III have distorted trigonal-bipyramidal coordination with the aroxyl substituents in the axial positions; the Bi-C, Bi-O bond lengths and the OBiO, CBiC angles vary in the intervals 2.162–2.204, 2.150–2.299 ? and 172.4°–176.1°, 109.6°–139.9°, respectively. Compound II exhibits intramolecular contacts between the central atom and ortho-Br atoms (3.924, 4.101 ?), and compound III has similar contacts of the Bi atom with the O atoms of the ortho-nitro groups (3.114, 3.313 ?). Original Russian Text ? V.V. Sharutin, I.V. Egorova, O.K. Sharutina, A.P. Pakusina, M.A. Pushilin, 2007, published in Koordinatsionnaya Khimiya, 2007, Vol. 33, No. 1, pp. 14–21.  相似文献   

17.
1-Allyl-4-aminopyridinium chloride reacts with Cu(NO3)2 · 3H2O in an ethanolic solution under the conditions of ac electrochemical synthesis at copper electrodes to form crystals of compound [(NH2C5H4N(C3H5))2Cu3Cl3(NO3)2] (I). The crystals of compound I are monoclinic: space group P21/c, Z = 4, a = 25.770(7), b = 7.230(4), c = 12.505(5) ?, β = 92.58(3)°, V = 2328(2) ?3. The direct interaction of 1-allylquinolinium nitrate with Cu(NO3)2 · 3H2O in a methanolic solution in the presence of metallic copper yields crystals of compound [C9H7N(C3H5)Cu(NO3)2] (II). The crystals of compound II are triclinic: space group P , a = 6.756(3), b = 8.391(4), c = 12.489(5) ?, α = 77.18(3)°, β = 89.48(4)°, γ = 73.32(3)°, V = 662.0(5) ?3. The structure of compound I is built of infinite linear anions: polymeric fragments {(NH2C5H4N(C3H5))2Cu3Cl3(NO3)2} n . Each of two copper atoms (Cu(1) and Cu(2)) π-coordinates the C=C bonds of the allyl groups of the 1-allyl-4-aminopyridinium cations, the oxygen atom of the nitrate ions, and two chlorine atoms. The third copper atom Cu(3) is linearly linked with two chlorine atoms. Particular polymeric fragments are additionally joined by the N-H…O, C-H…O, C-H…Cl hydrogen bonds. The crystal structure of compound II is built-up of the isolated L2Cu2(NO3)4 fragments (L is the 1-allylquinolinium cation). The metal atom is localized in the trigonal pyramidal coordination environment of three oxygen atoms of the nitrate ions and of the C=C bond of the allyl group of the cation. The particular L2Cu2(NO3)4 fragments are additionally joined by the C-H…O hydrogen bonds. Original Russian Text ? A.V. Pavlyuk, T. Lis, M.G. Mys’kiv, 2009, published in Koordinatsionnaya Khimiya, 2009, Vol. 35, No. 6, pp. 458–462.  相似文献   

18.
In the present paper, the catalytic dehydrogenation of C2H6 to C2H4 under non-oxidative conditions was investigated in a fixed-bed micro-reactor under ambient pressure at 823 - 923 K. The 6Cr/g-Al2O3 catalyst was found to be the best catalyst among the g-Al2O3, SiO2, MCM41, MgO and Si-2 supported chromium oxide catalysts. The features of the 6Cr/g-Al2O3 catalyst for the reaction could be listed as follows: (1) At 823 - 923 K, the C2H4 selectivity of 92.5-78.6% at a C2H6 conversion of 9.5-29.8% could be obtained. (2) The catalyst had the good regeneration performance, i.e., could be regenerated by air repeatedly. (3) The main products were C2H4, CH4, H2 and coke. No carbon oxides were identified.  相似文献   

19.
Single crystals of (CN3H6)2[(UO2)2(C2O4)(SeO3)2] were synthesized and studied by IR spectroscopy and X-ray diffraction. The compound crystallizes in the triclinic system with the unit cell parameters a = 7.1169(12) ?, b = 7.4874(10) ?, c = 8.9748(14) ?, α = 88.243(6)°, β = 74.546(6)°, γ = 81.445(6)°, space group P[`1]P\bar 1, Z = 1, R = 0.0304. The main structural units of the crystals are layers of the [(UO2)2(C2O4)(SeO3)2]2− composition; the layers belong to the crystal chemical group A 2 K 02 T 23 (A = UO22+ K 02 = C2O42−, T 3 = SeO3) of uranyl complexes. Uranium-containing complex groups are linked by electrostatic interactions and a network of hydrogen bonds with CN3H6+ guanidinium ions to form a three-dimensional framework.  相似文献   

20.
Five crystalline 2-(dimethylsila)pyrimidine derivatives (Z) have been prepared in excellent 14 or satisfactory 5 yield and characterised. The source of each was ultimately Li[CH(SiMe2R)(SiMe2OMe)] [R = Me (B) or OMe (I)]. Compound 1 (Z with Ar = Ph, X = SiMe3, n = 1) was obtained from Z [with Ar = Ph, X = Li(OEt2), n = 4; previously isolated from B [P.B. Hitchcock, M.F. Lappert, X.-H. Wei, J. Organomet. Chem. 689 (2004) 1342]] and Me3SiCl. The potassium salt 2 [Z with Ar = C6H4But-4; X = K(thf)3, n = 2] was made from K[CH(SiMe3)(SiMe2OMe)] (C) (via B) and 4-ButC6H4CN. Treatment of 2 with 1,2-dibromoethane afforded 3 (Z with Ar = 4-ButC6H4; X = H, n = 1); which when reacted with successively n-butyllithium and Me3SiCl produced 4 (Z with Ar = 4-ButC6H4, X = SiMe3, n = 1). Compound 5 [Z with Ar = 4-ButC6H4, X = Li(hmpa)2, n = 1] resulted from I with 4-ButC6H4CN and then OP(NMe2)3 (≡ hmpa). Plausible reaction pathways from the appropriate alkali metal alkyl C or I to 2 or 5, respectively, are suggested; these involve regiospecific 1,3-migrations of SiMe2OMe from C → N and electrocyclic loss of Me3SiOMe or SiMe2(OMe)2, respectively. The X-ray structures of crystalline 1, 2 and 5 are presented.  相似文献   

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