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1.
合成了一维分子梯状配合物{[Cu2(4,4'-bpy)3(p-Ab)2(H2O)2]·(NO3) 2·4H2O}n(4,4'-bpy=4,4'-联吡啶,p-Ab-=对氨基苯甲酸根离子),该配合物晶体属单斜晶系,P2(1)/c空间群,晶胞参数:a=1.110 7(5) nm,b=1.550 4(3) nm,c=1.450 9(3) nm,β=104.81(3)°,V=2.415 5(12) nm3,Z=2.铜离子周围有3个氧原子和3个氮原子与之配位,其中2个氧原子由对氨基苯甲酸的螯合氧原子提供,另一个氧原子由配位水提供,3个氮原子分别由三个4,4'-联吡啶提供.这六个原子在铜离子周围形成一个畸变的八面体配位环境.配体对氨基苯甲酸只有一种配位形式--双齿螯合,第二配体4,4'-联吡啶的两个氮原子均参与配位,将配合物组装成一维分子梯结构.  相似文献   

2.
合成了3个超分子化合物[M(4,4'-bipy)2(H2O)4]·(4,4'-bipy)2·(3,5-diaba)2·8H2O(M=Co(1),Ni(2),Cd(3);4,4'-bipy=4,4'-联吡啶;3,5-diaba=3,5-二氨基苯甲酸阴离子),用红外光谱、元素分析及X-射线单晶衍射进行了表征。3个化合物的晶体都属于单斜晶系,空间群为P2/c。晶体学参数:化合物1:a=0.9389(2)nm,b=0.7751(1)nm,c=3.9284(6)nm,β=90.14(2)°,V=2.85880(69)nm3,Z=4,Dc=1.397g·cm-3,F(000)=1266,μ=0.380mm-1,R1=0.0349,wR2=0.0829;化合物2:a=0.9383(2)nm,b=0.7753(1)nm,c=3.9218(6)nm,β=90.09(1)°,V=2.85280(68)nm3,Z=2,Dc=1.399g·cm-3,F(000)=1268,μ=0.420mm-1,R1=0.0366,wR2=0.0805;化合物3:a=0.94091(13)nm,b=0.77885(11)nm,c=3.9712(5)nm,β=90.10°,V=2.9102(7)nm3,Z=2,Dc=1.433g·cm-3,F(000)=1308,μ=0.454mm-1,R1=0.0468,wR2=0.0964。3,5-diaba未参与配位,在配位阳离子[M(4,4'-bipy)2(H2O)4]2 中,金属离子M髤与来自2个4,4'-bipy的2个氮原子和4个水分子的氧原子配位,呈八面体的几何构型。分子中还存在未配位的4,4'-bipy。通过配位阳离子、游离4,4'-bipy及未配位的3,5-diaba间的丰富氢键,构建成具有三维结构的超分子化合物。  相似文献   

3.
黄妙龄 《化学研究》2007,18(3):42-45
合成了一维分子梯状配合物{[Cu2(4,4′-bpy)3(p-Ab)2(H2O)2].(NO3)2.4H2O}n(4,4′-bpy=4,4′-联吡啶,p-Ab-=对氨基苯甲酸根离子),该配合物晶体属单斜晶系,P2(1)/c空间群,晶胞参数:a=1.1107(5)nm,b=1.5504(3)nm,c=1.4509(3)nm,β=104.81(3)°,V=2.4155(12)nm3,Z=2.铜离子周围有3个氧原子和3个氮原子与之配位,其中2个氧原子由对氨基苯甲酸的螯合氧原子提供,另一个氧原子由配位水提供,3个氮原子分别由三个4,4′-联吡啶提供.这六个原子在铜离子周围形成一个畸变的八面体配位环境.配体对氨基苯甲酸只有一种配位形式——双齿螯合,第二配体4,4′-联吡啶的两个氮原子均参与配位,将配合物组装成一维分子梯结构.  相似文献   

4.
合成了锑-镨与乙二胺四乙酸形成的新颖三维配合物[Sb2-μ4-(EDTA)2Pr(H2O)5]NO3·4H2O,用元素分析、红外光谱、热分析及X射线单晶衍射法等进行了组成和结构表征.结果表明该配合物属正交晶系,空间群Pnn2;晶胞参数:a=1.07031(2)nm,b=2.30805(4)nm,c=0.72343(2)nm,V=1.78711(7)nm3,Z=2,Dc=2.202g/cm3,F(000)=1164,μ=2.955mm-1,GOF=1.000,最终偏离因子R1=0.0203,wR2=0.0545[I>2σ(Ⅰ)].在标题化合物中,每个镨(Ⅲ)离子的配位数为9,与五个水分子中的五个氧原子和四个羧基氧原子配位,形成三帽三角棱柱空间配位多面体.锑(Ⅲ)与EDTA离子中的四个氧原子和两个氮原子配位,在赤道平面上有一孤对电子.同时讨论了配合物的热分解过程.  相似文献   

5.
利用Nd(NO)36H2O和3-(3-吡啶基)丙烯酸在水热反应条件下反应,合成了一种新型一维链状配位聚合物[Nd(C8H7NO2)3(H2O)]n。用元素分析、IR和TGA-DTA进行了表征, 并用X-射线衍射法测定了晶体结构。结果表明,该晶体属三斜晶系,(分子式C24H23N3O7Nd),P空间群,晶胞参数为a = 6.275(2),b = 12.757(4), c = 15.714(5) 牛琣 = 111.966(5), b = 90.338(6),g = 94.960(6),V = 1161.2(7) ?,Z = 2,Dc = 1.735 g/cm3,m = 2.286 mm-1,Mr = 606.67, F(000) = 602,R = 0.0355, wR = 0.0757。通过3-(3-吡啶基)丙烯酸配体羧基氧原子桥联形成一维链状结构,同时链与链通过氢键及-相互作用形成了三维的网络结构。  相似文献   

6.
张廉奉 《化学研究》2000,11(3):34-36
室温下 ,金属铜粉和过氧化苯甲酰进行氧化加成反应合成了铜化合物 [Cu(C6H5COO) 2 (C5H5N) 2 (H2 O) ](1 )。通过元素分析、电导、红外光谱等方法对配合物进行了表征 ,并经X 射线单晶结构分析确定了配合物的结构 ,晶体属单斜晶系 ,空间群Cc ,a =0 .60 78(4) ,b =1 .5879(4) ,c =2 .30 91 (3)nm ,β =97.61 (2 )°,Z =4,V =2 .2 0 91nm3,R =0 .0 30 7,中心铜原子由单齿配位的苯甲酸根的氧原子和吡啶的氮原子及来自水分子的氧原子形成四方锥配位结构。  相似文献   

7.
牛淑云  张亚玲  来巍  杨忠志  杨光第  叶玲 《化学学报》2001,59(12):2170-2175
以Nd(NO3).6H2O和NH2C6H4COOH为原料,经[Nd(C7H6NO2)3.H2O]的自组装,得到了具有三维网络结构的配位聚合物[Nd(C7H6NO2)3.H2O]n。该聚合物晶体属单斜晶系,空间群P2(1)/n,a=0.98069(5)nm,b=2.2736(2)nm,c=0.98254(8)nm,β=100.053(5)°,V=2.1571(3)nm^3,Z=4。最后的一致性因子R=0.038。磁性研究表明,该化合物在低温下表现出反铁磁性质。测定了化合物的UV-vis-NIR和IR光谱,进行了分析和指认。  相似文献   

8.
以2-氨基乙醇(EA)和邻菲咯啉(PHEN)为配体合成了新配合物[Co(PHEN)2(EA)](ClO4)2.H2O.CH3OH,其结构经IR,元素分析和X-射线单晶衍射法表征。1属单斜晶系,空间群为P2(1)/n,晶胞参数a=0.863 0(7)nm,b=1.348 8(11)nm,c=2.520 6(20)nm,β=91.503(12)°,V=2.933(4)nm3,Z=4,R=0.074 4,wR=0.170 3。衍射数据[I>2σ(I)]为2 602。在1中,Co(Ⅱ)原子与五个氮原子和一个氧原子配位,处于畸变的八面体配位环境。  相似文献   

9.
采用浓硫酸对白杨素进行磺化,磺化产物与Ca(Ⅱ)络合,合成了结构新颖的四核钙配位标题化合物[{Ca(C15H8O7S)(H2O)(DMSO)}3{Ca(C15H8O7S)(DMSO)2}]·4DMSO.采用IR,1HNMR和X射线单晶衍射法对其进行了表征和晶体结构测定.标题化合物属于三斜晶系,空间群P,晶胞参数a=1.4725(6),b=1.6480(7),c=2.1006(8)nm,a=83.928(7)?b=85.938(7)?g=85.212(7)?V=5.041(3)nm3,Dc=1.476g/cm3,Z=2,m=0.568nm-1,F(000)=2324,R=0.0778,wR=0.1821.标题化合物为四核钙配位化合物,4个Ca(Ⅱ)被4个配体5-羟基氧负离子-7-羟基黄酮-6-磺酸根的羰基和羟基氧负离子桥联,形成近似正方形.Ca(Ⅱ)的配位数都是7,配位原子分别来自5-羟基氧负离子-7-羟基黄酮-6-磺酸根的羟基、羰基、磺酸根的氧原子,以及水和DMSO的氧原子.4个配体位于4个配位Ca(Ⅱ)组成的正方形平面两侧,同侧配体两两平行且它们之间存在p-p堆积作用,异侧配体之间近似垂直.同时,发现了标题化合物固体具有光致发光现象,在lex=410nm条件下可发出lem=520nm的绿色荧光,并对其发光机制进行了探讨.  相似文献   

10.
在水-乙醇混合体系中,以2-羰基丙酸水杨酰腙(C10H10N2O4,简作H3L)、1,10-菲啰啉C12H8N2,简作phen)与Eu(NO3)3·4H2O反应,首次培养出黄色单晶[Eu(C10H9N2O4)(C10H8N2O4)(H2O)3]2·phen·4H2O.该晶体属三斜晶系,P1空间群,晶胞参数a=1.378 6(12) nm,b=1.398 8(12) nm,c=1.759 7(16) nm,α=73.977(11)°,β=68.598(12)°,γ=71.224(12)°,V=29.42(4) nm3,Z=2,μ=2.208 mm-1,Dc=1.746 Mg/m3,F(000)=1 556,R=0.037 7,ωR=0.074 4,GOF=0.916.每个配合物晶体中均有两个相似的结构单元,每个结构单元中铕(Ⅲ)配位数为9,分别与两个2-羰基丙酸水杨酰腙和3个水分子配位; 每个2-羰基丙酸水杨酰腙中的羧基氧、酰胺基中的羰基氧和CN中的氮与Eu3+配位,形成两个共边的稳定的五元环,另3个配位原子则分别来自3个水分子中的氧原子,该结构单元在空间呈扭曲的单帽四方反棱柱,而在每两个铕的九配位单元周围还有一个游离的1,10-菲啰啉分子和4个水分子.IR,1H NMR及热分解结果佐证了配合物的组成.该配合物具有很好的荧光特性.  相似文献   

11.
Crystal Structure of Sr(BrO3)2 · H2O, Ba(BrO3)2 · H2O, Ba(IO3)2 · H2O, Pb(ClO3)2 · H2O, and Pb(BrO3)2 · H2O The crystall structures of the isostructural halates Sr(BrO3)2 · H2O, Ba(BrO3)2 · H2O, Ba(IO3)2 · H2O, Pb(ClO3)2 · H2O, and Pb(BrO3)2 · H2O were determined using X-ray single crystal data (monoclinic space group C2/c? C, Z = 4), The mean bond lengths and bond angles of the halate ions in the Ba(ClO3)2 · 1 H2O-type compounds, which correspond to those of other halates, are Cl? O, 149.0, Br? O, 165.9, I? O, 180.2 pm, ClO3?, 106.4, BrO3?, 104.0, and IO3?, 99.6°. The structure data obtained are discussed in terms of possible orientational disorder of the water molecules, strengths of the hydrogen bonds, influence of the lead ions on the structure, and site group distortion of the halate ions.  相似文献   

12.
[Rb2(H2O)2][Re3(μ-Cl)3Br7(H2O)2]2 · H2O, a Mixed Halide-Hydrate with the Anionic Dimer {[Re3(μ-Cl)3Br7(H2O)2]2 · H2O}2? [Rb2(H2O)2][Re3(μ-Cl)3Br7(H2O)2]2 · H2O crystallizes as dark redbrown single crystals from an hydrobromic-acid solution of ReCl3 and RbBr at 0°C. An important feature of the crystal structure (monoclinic, C2/c; a = 1494.61(8); b = 835.71(4); c = 3079.96(19) pm; β = 97.801(4)°; Vm = 573.9(4) cm3mol?1; R = 0.060; Rw = 0.038) is the connection of two anions [Re3(μ-Cl)3Br7(H2O)2]? via a water molecule to dimers, {[Re3(μ-Cl)3Br7(H2O)2]2 · H2O}2?. These dimeric units are contained in slabs that are stacked in the [001] direction and held together by Rb+ cations and crystal water.  相似文献   

13.
Red cuboid crystals of the water-rich iodidobismuthate(III) (H3O)Rb3BiI7 · 4H2O crystallize from a solution of RbI and BiIO in concentrated aqueous HI at ambient conditions. X-ray diffraction reveale an orthorhombic structure with space group Pnma (no. 62). In the crystal structure, [BiI6]3– octahedra are arranged in layers parallel to (010). Nine-fold coordinated Rb+ and additional I ions connect the iodidobismuthate(III) groups into a three-dimensional framework, which hosts protonated water complexes 1[H11O5]+, i.e. infinite zigzag chains of hydrogen-bonded water molecules and oxonium cations. (H3O)Rb3BiI7 · 4H2O decomposes in air at ambient temperature within few days, resulting in fragmentation and amorphization of the crystals. Fast and complete dehydration occurs between 50 °C and 100 °C. Hydrates like this are possible intermediates in the slow hydrolysis of bismuth-based halide perovskites, which are currently discussed as lead-free alternatives to the solar cell absorber material methylammonium lead triiodide (MAPI).  相似文献   

14.
The crystal and molecular structure of dipotassium di‐μ‐oxo‐bis[aqua(oxalato‐O1,O2)oxomolybdenum(III)] trihydrate, K2­[Mo2O4(C2O4)2(H2O)2]·3H2O, has been determined from X‐ray diffraction data. In the dimeric anion, which has approximate twofold symmetry, each Mo atom is in a distorted octahedral coordination, being bonded to one terminal oxo‐O atom, two bridging O atoms, two O atoms from the oxalato ligand and one from the water mol­ecule. Bond lengths trans to the multiple‐bonded terminal oxo ligand are larger than those in the cis position, confirming the trans influence as a generally valid rule.  相似文献   

15.
Fe2P2O7(H2O)2     
The compound diiron diphosphate dihydrate, Fe2P2O7(H2O)2, was synthesized hydro­thermally and crystallizes in the monoclinic space group P21/n. The compound has a somewhat open framework made up of edge‐sharing iron(II) octahedra that form chains connected by five bridging diphosphates. The remaining octahedral site of each iron is occupied by coordinated water. The H atoms of the water molecules all point into a common channel.  相似文献   

16.
In poly[[diaquaoxido[μ3‐trioxidoselenato(2−)]vanadium(IV)] hemihydrate], {[VO(SeO3)(H2O)2]·0.5H2O}n, the octahedral V(H2O)2O4 and pyramidal SeO3 building units are linked by V—O—Se bonds to generate ladder‐like chains propagating along the [010] direction. A network of O—H...O hydrogen bonds helps to consolidate the structure. The O atom of the uncoordinated water molecule lies on a crystallographic twofold axis. The title compound has a similar structure to those of the reported phases [VO(OH)(H2O)(SeO3)]4·2H2O and VO(H2O)2(HPO4)·2H2O.  相似文献   

17.
18.
The title compound, namely octa­aqua­ytterbium(III) aqua­nona­chloro­tricadmate(II) hexa­hydrate, [Yb(H2O)8][Cd3Cl9(H2O)]·6H2O, was prepared by evaporation at 278 K from an aqueous solution of the ternary system YbCl3–CdCl2–H2O and was characterized by elemental chemical analysis and by X‐ray powder and single‐crystal diffraction studies. The crystal structure can be viewed as being built from layers of double chains of CdCl6 and CdCl5(H2O) octahedra separated by antiprismatic [Yb(H2O)8]3+ cations. The stabilization of the structure is ensured by O—H⋯O and O—H⋯Cl hydrogen bonds. A comparison with the structures of SrCd2Cl6·8H2O and CeCd4Cl11·13H2O is presented.  相似文献   

19.
The title compound, tri­ammonium cis‐di­aqua‐cis‐dioxo‐trans‐disulfatovanadate 1.5‐hydrate, was obtained by oxidizing VIV to VV in a 2 M sulfuric acid solution of vanadyl­ sulfate and adding ammonium sulfate. Here, the V atom is sandwiched by two sulfate groups by corner‐sharing to form a discrete [VO2(SO4)2(OH2)2]3? anion. The water mol­ecules occupy cis positions in the equatorial plane of the vanadium octahedron.  相似文献   

20.
IntroductionInthelastfewyearsthesearchfornewmaterialswithmicroporousandzeolite analogoussystemshasprimarilyfocusedonaluminumphosphatesandaluminosilicatecom poundssubstitutedwithavarietyofatoms .1 3 Cobalt sub stitutedaluminophosphatesaresystematicallystudiedmainlyduetotheirpotentialuseassolid acidcatalysts .Insuchmaterials ,theBr nstedacidsiteisgeneratedbyeachsubstitutionofAl(III)byCo(II)inwhichaprotonisneededtobalancethecharge .4 7Tofindnewtypeofze oliticmaterials ,theborophosphatemateri…  相似文献   

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