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1.
以K3Fe(CN) 6 ,甜菜碱和Pr(NO3) 3·6H2 O合成了一维链状氰根桥联配合物 [Pr(bet) 2 (H2 O) 3Fe(CN) 6 ] n,并通过元素分析、红外光谱进行了表征。利用单晶X射线四圆衍射测定了配合物的晶体结构 ,晶体属正交晶系 ,P2 1 2 1 2 1 空间群 ,晶胞参数a =0 9634 ( 2 )nm ,b =1 45 5 6( 3)nm ,c =1 7798( 9)nm ,V =2 495 9( 9)nm3,Dc=1 70 6Mg·m3,Z =4,GOF =0 970 ,F( 0 0 0 ) =12 84,R1 =0 0 30 7。变温磁化率 ( 1 8~ 30 0K)表明在Pr3 和Fe3 离子间存在弱的反铁磁相互作用。  相似文献   

2.
用常规合成方法制备了基于Anderson结构阴离子的二维层状化合物[(C6n5NO2)Pr(H2O)4](CrMo6O24H6)·(C6H5NO2)·2.5H2O,通过红外光谱和X射线单晶衍射对其进行了表征.结果表明,该化合物属于单斜晶系,C2/c空间群.a=2.3442(9)nm,b=1.3291(5)nm,c=2.458(1)nm,β=103.08(1)°,V=7.460(5)nm^3,R1=0.0727,wR2=0.1903.结构分析表明,[CrMo6O24H6]^3-阴离子通过端氧担载一个配位的Pr^3+离子形成中性的(C6H5NO2)Pr(H2O)4(CrMo6O24H6)基团,相邻的中性基团在O1-Pr-O1桥联下形成一维链,链与链又通过异烟酸的桥联形成二维层状结构.  相似文献   

3.
报导了四个单核Co(Ⅱ)和Fe(Ⅱ)的配合物[Co(L1)2](ClO4)2·(CH3CN)(1),[Fe(L1)2](ClO4)2·(H2O)(2),[Co(L2)](ClO4)2(3),以及[Fe(L2)](ClO4)2·2H2O(4),(其中L1=4’-苯基-2,2’:6’,2”-三联吡啶,L2=N,N,N-三-(2-(2-吡啶甲叉氨基)乙基)胺)的合成和性质,以及配合物1、3的晶体结构.配合物1和3的晶体都属于单斜晶系.它们的晶胞参数分别为:1a=1.0855(4)nm,b=1.6201(5)nm,c=2.5236(5)nm,β=92.63(2)°,V=4.433(1)nm3;3a=2.8351(8)nm,b=1.0670(3)nm,c=1.9255(5)m,β=101.03(4)°,V=5717(2)nm3.2和4的氧化还原电位分别为E=0.78V和0.63V‘它们的d-d跃迁吸收最大值分别位于565和521nm处.  相似文献   

4.
王崇臣  王鹏 《化学研究》2008,19(4):9-13
用NiCl2·6H2O,2,2'-联吡啶(bpy),NH4VO3,WO3在443K下通过水热反应法得到了两种多钒酸镍配合物Ni(bpy)(H2O)(V2O6)(1)和[Ni(bpy)2]2(V6O17)(2).单晶X射线衍射结果表明化合物(1)属于正交晶系,空间群为Pcα2(1),晶胞参数为0=0.91704(18)nm,b=1.0519(2)nm,c=1.4336(3)nm,V=1.3830(5)nm^3,Z=4;化合物(2)属于单斜晶系,空间群为P2(1)/c,晶胞参数为α=1.5467(3)nm,b=1.4740(3)nm,c=1.0457(2)nm,β=91.99(3)°,V=2.3826(8)nm^3,Z=4.化合物(1)由2,2’-联吡啶修饰的二维[Ni(V2O6)(H2O)]∞电中性层构成,而化合物(2)则由2,2'-联吡啶修饰的、呈正弦波浪状的[Ni:(V6O17)]∞二维电中性层构成.  相似文献   

5.
用常规合成方法制备了基于Anderson结构阴离子的二维层状化合物[(C6n5NO2)Pr(H2O)4](CrMo6O24H6)·(C6H5NO2)·2.5H2O,通过红外光谱和X射线单晶衍射对其进行了表征.结果表明,该化合物属于单斜晶系,C2/c空间群.a=2.3442(9)nm,b=1.3291(5)nm,c=2.458(1)nm,β=103.08(1)°,V=7.460(5)nm^3,R1=0.0727,wR2=0.1903.结构分析表明,[CrMo6O24H6]^3-阴离子通过端氧担载一个配位的Pr^3+离子形成中性的(C6H5NO2)Pr(H2O)4(CrMo6O24H6)基团,相邻的中性基团在O1-Pr-O1桥联下形成一维链,链与链又通过异烟酸的桥联形成二维层状结构.  相似文献   

6.
由9-咔唑乙酸和二丁基氧化锡反应制得了新配合物{[(n-C4H9)2Sn(0.5·O2CCH2C12H8N)(0.5·C2H5O)]2O}2·(C12H8NH)。通过元素分析、红外光谱和核磁共振氢谱对其结构进行了表征,用X射线单晶衍射测定了配合物的晶体和分子结构。该配合物晶体属于单斜晶系,C2/c空间群,晶胞参数a=2.7975(13)nm,b=2.1534(10)nm,c=1.5154(7)nm,β=118.759(6)°,V=8.003(7)nm^3,Z=4,μ=1.285mm^-1,Dc=1.386g/cm^3,F(000)=3408,R=0.0571,wR=0.1362,GOF=1.005。结构测定表明,它具有以Sn2O2四元环为中心,中心对称的二聚体结构。内、外环Sn原子均为五配位的畸变三角双锥构型。生物活性测试结果表明,该配合物对体外培养的乳腺癌细胞株MCF-7和结肠癌细胞株WiDr有较好的抑制活性。  相似文献   

7.
以K3Mn(CN) 6,N ,N 二甲基甲酰胺和Eu(NO3) 3·6H2 O为原料合成了新型一维链状氰根桥联配合物[Eu(DMF) 4(H2 O) 2 Mn(CN) 6·H2 O]n,并通过元素分析、红外光谱和紫外光谱进行了表征 .利用单晶X射线四圆衍射测定了配合物的晶体结构 ,结果表明 ,晶体属单斜晶系 ,P2 1/c空间群 ,晶胞参数a =1.2 992 (3)nm ,b =1.2 76 4(3)nm ,c =1.915 4(4 )nm ,β =10 9.42 (3)°,V =2 .995 6 (12 )nm3,Dx=1.5 73Mg/m3,Z =4,R =0 .0 372 ,Rw=0 .0 96 2 ,GOF =1.0 95 .在Eu和Mn原子之间存在两个CN桥 ,配合物呈现一维链状结构 .  相似文献   

8.
以[(bpca)Fe(CN)3]-(bpca=二(2-吡啶羰基)酰胺阴离子)为构筑基元,设计合成了2个新颖的3d-4f异金属配合物,{[(bpca)Fe(CN)3Pr(H2O)5]Cl2}n(1)和{[(bpca)2Fe2(CN)6Pr(H2O)6]Cl·4H2O}n(2),并测定了它们的晶体结构.化合物1的晶体属正交晶系,Pnma空间群;而化合物2属三斜晶系,P1空间群.在这2个化合物中,[(bpca)Fe(CN)3]-和[Pr(H2O)x]3 (1,x=5;2,x=6)交替排列形成一维链状结构,并通过π-π堆积作用、氢键作用及分子间短距离相互作用形成三维网络结构.  相似文献   

9.
在室温条件下合成了含三核铁簇的硫酸盐配合物K2(H3O)3[Fe3(H2O)3O(SO4)6].6 H2O,借助IR光谱、紫外-可见吸收光谱、X射线光电子能谱(XPS)和X射线单晶衍射等测试手段对其结构进行了表征.结果表明,标题化合物属于六方晶系,P6(3)/m空间群,晶胞参数为:a=b=0.963 7(2)nm,c=1.885 1(9)nm,V=1.516 3(9)nm3,Z=2,Dc=2.316 g/cm3,GOOF=1.089,R1=0.062 8,wR2=0.165 1.其分子由1个三核铁簇阴离子[Fe3(H2O)3O(SO4)6]5-、2个K+离子、3个水合质子H3O+和6个结晶水分子组成.  相似文献   

10.
由Bi(Hcydta)·5H2O和Nd(NO3)·6H2O按1:1的物质的量比,在水溶液中合成了含Bi(Ⅲ)-Nd(Ⅲ)的异核配位聚合物[(NO3)Nd(H2O)4(μ3-cydta)Bi(μ-ONO2)]·2.5H2O)n.用元素分析、红外光谱、热重-差热和X射线单晶衍射等手段对标题配合物的组成和结构进行了表征.该配合物属三斜晶系,空间群P1,晶胞参数:a=0.9235(3)nm,b=1.0902(4)nm,c=1.4253(5)nm,α=71.840(4)°,β=86.877(4)°,γ=76.991(4)°,z=2,Mr=936.65,V=1.3284(8)nm^3,Dc=2.342g·cm^-3,μ=8.646mm^-1,F(000)=900,最终偏离因子R1=0.0406,wR2=0.1124.在该配合物中,铋(Ⅲ)与配体cydta^4-的4O2N和1个硝酸根中1个O原子以及邻位分子的硝酸根形成8配位的畸变双帽三棱柱.钕(Ⅲ)与4个水分子的O,1个硝酸根中2个O以及来自3个不同配体cydta^4-的桥联羧基O结合,形成9配位的三帽三棱柱构型.羧酸根在Bi-Nd和硝酸根在Bi-Bi间的桥联作用,使得整个配合物分子连接成无限二维框架结构.热分析以及分解产物的红外光谱表明配合物热分解经历脱水、配体热分解、硝酸盐转变成氧化物等多步连续分解过程,最后在625℃失重恒定.  相似文献   

11.
Crystal structures of Pb(MoO2)2(PO4)2 and Ba(MoO2)2(PO4)2 were determined. Both compounds contain the molybdyl group MoO2. The monoclinic unit-cell parameters are a = 6.353(7), b = 12.289(4), c = 11.800 Å, β = 92°56(6), and Z = 4 for the lead salt and a = 6.383(8), b = 7.142(7), c = 9.953(8) Å, β = 95°46(8), and Z = 2 for the barium salt. P21c is the common space group. The R values are respectively R = 0.027 and R = 0.031 for 1964 and 1714 independent reflections. The frameworks built up by a three-dimensional network of monophosphate PO4 and molybdyl MoO2 groups are similar, characterized mainly by corner-sharing PO4 and MoO6 polyhedra. Two oxygen atoms of each MoO6 group are bonded to the molybdenum atom only as in other molybdyl salts.  相似文献   

12.
The title compound was synthesized by reaction of Cu(ClO4)2, picolinic acid and carbamide in C2H5OH/CH3CN solution, and characterized by single-crystal X-ray diffraction. It crystallizes in the orthorhombic system, space group Pbca with a=14.0481(8), b=9.0130(5), c=18.626(1)?, V=2358.3(2)?3Z=4, Dx=1.771g·cm-3, μ=1.235mm-1 and F(000)=1276. The final R factor is 0.0440 for 1434 observed reflections. The X-ray analysis revealed that the copper(Ⅱ) atom is coordinated by two picolinic ligands in the equatorial plane, while the two oxygen atoms of perchlorate occupy the axial positions of octahedron with lengthened Cu-O distances, resulting in a 4+2 elongated octahedral environment. In the compound, there also exist two protonated carbamide cations for charge balance. CCDC: 195354.  相似文献   

13.
Phase equilibria in the Ba3(VO4)2-K2Ba(MoO4)2 and Pb3(VO4)2-K2Pb(MoO4)2 systems have been investigated. In the first system, a continuous series of substitutional solid solutions with the palmierite structure is formed, and in the second one, the polymorphic transition in lead orthovanadate at 100°C restricts the extent of the palmierite-type solid solution to 10–100 mol % K2Pb(MoO4)2. Original Russian Text ? V.D. Zhuravlev, Yu.A. Velikodnyi, A.S. Vinogradova-Zhabrova, A.P. Tyutyunnik, V.G. Zubkov, 2008, published in Zhurnal Neorganicheskoi Khimii, 2008, Vol. 53, No. 10, pp. 1746–1748.  相似文献   

14.
Molecular beam deflection studies on (CO2)2 and (OCS)2 indicate that both these species are polar molecules. Structural implications of this are explored in light of previous studies of these systems.  相似文献   

15.
A novel malonate-bridged copper (II) compound of formula {[Cu4(4,4′-bpy)8(mal)2(H2O)4](ClO4)2(H2O)4(CH3OH)2}n (4,4′-bpy = 4,4′-bipyridine; mal = malonate dianion) has been prepared and structurally characterized by X-ray crystallography. This compound exhibits a novel three-dimensional network being composed of Cu-4,4′-bipyridine layers which are pillared by malonate bridge ligands. The copper(II) ions has two different coordination environment.  相似文献   

16.
A three-dimensional (3D) cobalt phosphate: Co5(OH2)4(HPO4)2(PO4)2 (1), has been synthesized by hydrothermal reaction and characterized by single-crystal X-ray diffraction, thermogravimetric analysis, and magnetic techniques. The title compound is a template free cobalt phosphate. Compound 1 exhibits a complex net architecture based on edge- and corner-sharing of CoO6 and PO4 polyhedra. The magnetic susceptibility measurements indicated that the title compound obeys Curie-Weiss behavior down to a temperature of 17 K at which an antiferromagnetic phase transition occurs.  相似文献   

17.
p-Tolyl mercury thiocyanate and α-naphthyl mercury thiocyanate react with Co(NCS)22py and form a bimetallic pink compound of formula (py)2(SCN)2Co(NCS)2Hg2R2 (R = p-tolyl and α-naphthyl group). On heating this compound in vacuum a blue compound (SCN)2Co(NCS)2Hg2R2 is formed. Nickel analogues (SCN)2Ni(NCS)2Hg2R2 are formed by direct reaction of p-tolyl or α-naphthyl mercury thiocyanate with nickel thiocyanate. (SCN)2Co(NCS)2Hg2R2 and (SCN)2Ni(NCS)2Hg2R2 act as Lewis acids and form complexes with bases. The Lewis acids and their complexes with various bases have been characterized by elemental analyses, molar conductance, molecular weight, magnetic moment, infrared and electronic spectral studies. These studies reveal that both the Lewis acids are monomers. In (SCN)2Co(NCS)2Hg2R2 the CO(II) has tetrahedral geometry, where as in (SCN)2Ni(NCS)2Hg2R2 the Ni(II) has octahedral geometry through elongated axial bondings with SCN-groups of other molecules. Thiocyanate bridging of the type R-Hg-SCN-M [M = Co(II), Ni(II)] is present in the compounds. Pyridine and dimethylsulphoxide form adducts with these compounds by coordinating at Co(II) or Ni(II). The thiocyanate bridge is retained in these complexes. 2-2′bipyridyl ruptures the thiocyanate bridging in both the Lewis acids and forms cationic-anionic complexes of the type [M(L-L)3][RHg(SCN)2]2. In both the type of complexes Co(II) and Ni(II) possess octahedral environment. The “softness” values have been used in a novel manner in proposing the structure of the complexes.  相似文献   

18.
The enthalpy of the reaction: Pt(PPh3)2 (CH2CH2)(cryst.) + C(CN)2C(CN)2 (g) → Pt(PPh3)2 {C(CN)2C(CN)2}(cryst.) + CH2 CH2 (g) has been determined as ΔH298=?155.8±8.0 kJ·mol?1, from solution calorimetry. The interpretation, that the platinumethylene bond is much weaker than the platinumtetracyanoethylene bond, is contrary to conclusions drawn recently from electron emission spectroscopic studies, but in agreement with available structural data.  相似文献   

19.
The reactions of lanthanide tris(borohydrides) Ln(BH4)3(thf)3 (Ln = Sm or Nd) with 2 equiv. of lithium N,N′-diisopropyl-N′-bis(trimethylsilyl)guanidinate in toluene produced the [(Me3Si)2NC(NPri)2]Ln(BH4)2Li(thf)2 complexes (Ln = Sm or Nd), which were isolated in 57 and 42% yields, respectively, by recrystallization from hexane. X-ray diffraction experiments and NMR and IR spectroscopic studies demonstrated that the reactions afford monomeric ate complexes, in which the lanthanide and lithium atoms are linked to each other by two bridging borohydride groups. The complexes exhibit catalytic activity in polymerization of methyl methacrylate. Published in Russian in Izvestiya Akademii Nauk. Seriya Khimicheskaya, No. 3, pp. 441–445, March, 2007.  相似文献   

20.
An X-ray crystal structure determination for the bimetallic complex Mn2(CO)8-[P(NMe2)3]2 reveals that the P(NMe2)3 ligands are trans to the Mn---Mn bond and the Mn---Mn bond distance is relatively long, 2.946(1) Å.  相似文献   

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