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1.
在水溶液中合成了二乙三胺五乙酸与镧铜异核配合物兰色棱柱状晶体,用X射线衍射方法测定了配合物的晶体结构.其结构式为{[La_4Cu_9(DTPA)_6(H_2O)_(16)]·26H_2O}_n,DTPA为二乙三胺五乙酸根.晶体属三斜晶系,空间群为P(?)每一晶胞中有1个配合单元,形成网状结构,晶胞参数如下:a=1.5635(5),b=1.6496(6),c=1.7116(3)nm,α=89.07(2),β=73.91(2),γ=65.82(3)°,V=3.839nm~3,Ζ=1,D_(calc)=1.822g/cm~3,D_(ex)=1.831g/cm~3.配合物中镧离子有两种配位方式,配位数一种是8,另一种是9,其配位多面体分别为双冠和三冠三角棱柱体;铜离子也有两种配位方式,配位数一种是6,另一种是5,分别形成八面体和四方锥型配位多面体.  相似文献   

2.
在水溶液中合成了二乙三胺五乙酸锰钆铒和钇的棱状晶体,元素分析结果表明可用{MnLn(DTPA)}_2·11H_2O表示(Ln为Gd,Er,Y;DTPA为二乙三胺五乙酸根).用X射线衍射方法测定了{MnGd(DTPA)}2·11H_2O的单晶结构,其结构式为{[MnGd(DTPA)(H_2O)_σ]_2·H_2O}n,属三斜晶系,空间群为PI,每一晶胞中有1个配合单元,形成一维链式配合物.晶胞参数如下:a=1.5896(3),b=0.8897(1),c=0.8146(1)nm;a=77.04(1),β=74.83(1),γ=88.21(1);Z=1:V=1.1191nm~3.配合物单元中钆为9配位,其配位多面体为三冠三角棱柱体;锰为6配位,形成八面体.  相似文献   

3.
二乙三胺五乙酸锑的晶体结构   总被引:2,自引:2,他引:2  
顾达  卢斌 《结构化学》1989,8(4):311-315
二乙三胺五乙酸锑的分子式为C_(14)H_(20)O_(10)N_3Sb,M_r=609.65,属单斜晶系,空间群为Cm,晶胞参数a=7.317A,b=19.951A,c=6.899A;β=116.24°,V=904.46A~3,Z=2。晶体结构用重原子法与直接法解出,结构经全矩阵最小乘法修正后偏离因子R=0.031和Rω=0.0314。结构表明分子中的Sb原子以sp~3d~3杂化的六个轨函与二乙三胺五乙酸中的三个氧原子和三个氮原子相配合,它们与Sb的孤对电子分别占据五角双锥各个角顶的位置。  相似文献   

4.
本文报道(N,N-二烃基胺基)二氯硼烷的反常三烃化反应。2-苯并噻唑基Grignard剂与(N,N-二乙胺基)二氯硼烷反应,得到二乙胺合三(2-苯并嚷唑基)硼烷,并讨论了反应机理。分子结构经X单晶结构分析确证。晶体结构属正交晶系,空间群为P2_12_12_1,晶胞参数a=11.570(3),b=12.496(4),c=16.577(4)nm;Z=4,V=2397.3nm~3,D_0=1.348g/cm~3,μ(MoK_a)=3.167cm~(-1)。  相似文献   

5.
本文报道的化合物为黑色准八面体状晶体,属斜方晶系,空间群为Pna2_1,晶胞参数为:a=17.815(1),b=16.629(2),c=12.003(1)A,z=4,ρ_(obs)=1.80g·cm~(-3),ρ_(calc)=1.804g·cm~(-3),晶体结构用重原子法解出,经全矩阵最小二乘方精修,对2584个 I≥3σ(I)的独立衍射的最终偏离因子R为 0.048.结果表明,晶体结构由四乙基胺阳离子和三核钼簇阴离子所组成.簇阴离子是单(μ_3—0)帽三核簇,Mo—Mo间距平均为2.60(2)A.在与μ_3—O原子相对的Mo_3。三角形面的另一方,每两个Mo原子之间各由一个C1原子桥联.这七个原子形成一种缺顶点的畸变类立方烷构型.另外,每个Mo原子还由其他三个原子补充配位成接近八面体构型.这些配位原子是两个乙酰基的氧原子和5个氯原子.乙酰基的两个氧原子分别与相邻两个Mo原子配位.簇阴离子接近于C_m对称性。  相似文献   

6.
三乙四胺六乙酸钆配合物的合成及晶体结构   总被引:7,自引:0,他引:7  
在水溶液中合成了三乙四胺六乙酸钆配合物:K4[Gd2(HTTHA)2].14H2O的单晶, 并测定了其结构。晶体属单斜晶系, P21/n空间群。晶胞参数: a=1.1266(5)nm,b=2.5686(4)nm, c=2.2076(8)nm, β=102.50(3)°,V=6.237(6)nm^3, Z=4, Dc=1.812g/cm^3。配合物是比核分子,每个钆离子与来自同一个三乙四胺六乙酸的3个氮原子和4个羧基氧原子, 来自另一个三乙四胺六乙酸的2个羧基氧原子配位,形成三冠三角棱柱型配位多面体。  相似文献   

7.
本文报道了在交叉分子束装置中氟原子和二溴甲烷反应生成的CBr_2的气相激光诱导荧光光谱的首次实验结果,位于585—664nm范围内的激光诱导荧光光谱由22个峰组成,被指定为CBr_2的A(V′_1~V′_20)←X(000)(V′_1=0,1;V′_2=0—12)跃迁。从光谱导出ν_(00)=14885cm~(-1),上态振动光谱常数ν′_1=460,ν′_2=189cm~(-1),x′_(12)=3.10,x′_(22)=-0.27cm~(-1)。本实验结果与CBr_2的低温固相光谱进行比较,发现固相光谱较气相光谱明显蓝移,确认了CBr_2是:F+CH_2Br_2过程的两步反应的产物。  相似文献   

8.
合成了标题化合物并测定了它的晶体及分子结构。晶体属正交晶系,空间群P2_12_12_1。晶胞参数a=15.154(3),b=18.234(3),c=24.010(3)A;V=6634.5A~3,Z=4,D_c=1.751,D_o=1.756g/cm~3,F(000)=3468e,μ=172.8cm~(-1).配位阴离子组成为[Dy(NTA)_2)~(3-),镝的配位数为8;阳离子为三个[IC_(17)N_2H(20)]~ 。阴、阳离子间除静电相互作用外,尚有一定键合作用。  相似文献   

9.
合成了二(1-苯基-3-甲基-4-三氟乙酰基吡唑啉酮-5)-(1,10菲啰啉)合钴(Ⅱ)混合配体络合物单晶,由元素分析确定其组成为Co(C_(12)H_3F_3O_2N_2)_2·(C_(12)H_8N_2)。通过溶解性、摩尔电导,磁性、中红外光谱、远红外光谱、差热、热重分析研究了该化合物的有关性质。用四园单晶衍射仪,测定了该络合物的分子及晶体结构。晶体属单斜晶系,P2_(l/o)空间群,晶胞参数为:a=10,422(3),b=16,462(2),c=20.678(3),β=75.86(1)°,V=3440.2(1.6)~3,Z=4,F(000)=1580,d_(calc)=1.50g cm~(-3),d_(exp.)=1.492g cm~(-3)。经最小二乘法修正后,最终偏差因子R=0.0716。配合物中钴的配位数为六,分子中有四个氧来自两个双齿配体PMTFP,两个氮原子由phen所提供。  相似文献   

10.
施剑秋  程培元 《结构化学》1992,11(6):471-475
冬凌草甲素,C_(20)H_(28)O_6,Mr=364.44,是一种从中药中提取的抗癌药,它的晶体结构分析表明晶体属正交晶系的空间群P2_12_12_1,晶胞参数为α=13.316(9),b=21.302(2),c=13.015(1),V=3697(9)~3。Z=8,D_c=1.31g/cm~3,D_o=1.30g/cm~3,F(000)=1568。该分子是四环二萜类化合物,A环和C环是椅型结构,B环是船型结构;D环是部分共轭五员环,为半椅型结构,环上相邻的两个双重键侧基组成一个六原子的共轭平面。  相似文献   

11.
A manganese(II) complex (tataH)2[Mn(pydc)2]·4H2O (C20H28MnN14O12, Mr = 711.50, tata = 2,4,6-triamino-1,3,5-triazine, pydcH2 = pyridine-2,6-dicarboxylic acid) has been synthesized and its crystal structure was determined by single-crystal X-ray diffraction. The crystal belongs to the triclinic system, space group P1, with a = 9.9847(3), b = 10.9813(3), c = 15.2616(5) , α = 101.5310(10), β = 90.2610(10), γ = 116.4600(10)°, V = 1459.44(8) 3, Z = 2, Dc = 1.619 g/cm3, μ = 0.539 mm–1, F(000) = 734, the final R = 0.0292 and wR = 0.0745. In the crystal the MnII atom is six-coordinated by four carbonyl oxygen atoms and two pyridine nitrogen atoms from two tridentate pydc ligands to furnish a distorted octahedral geometry. The complex shows the A…D…D’…A’ H-bonded tetramer. The molecules are packed in a three-dimensional framework structure by the combination of O–H…O, N–H…O and N–H…N hydrogen bonds between (tataH)+, [Mn(pydc)2]2– and crystal water.  相似文献   

12.
A new La(Ⅲ) complex, {[La(L)(NO3)(H2O)3]·H2O}n (L = 1,10-phenanthroline- 2,9-dicarboxylate), has been synthesized and structurally determined by X-ray diffraction analysis. The complex crystallizes in the monoclinic system, space group P21/c with a = 7.7358(17), b = 8.1664(18), c = 28.271(6) , β = 95.184(4)°, V = 1778.6(7)3, Z = 4, C14H14LaN3O11, Mr = 539.19, Dc = 2.014 g/cm3, μ = 2.471 mm–1, F(000) = 1056, the final R = 0.0350 and wR = 0.0659. In this complex, each metal center adopts a ten-coordination geometry formed by two N atoms from a ligand L and eight O atoms from three H2O molecules, a nitrate ion and carboxylates of two ligands. Each ligand adopts a N2,O3-pentdentate coordination mode using two N and two O atoms chelating a La(III), and using another O atom of carboxylate to bridge another La(III) center resulting in a 1D helical chain molecule. Intermolecular strong O–H···O and weak C–H···O hydrogen bonds extend the 1D chain structure into a 3D supramolecular architecture.  相似文献   

13.
A manganese(Ⅱ) complex (tataH)2[Mn(pydc)2]·4H2O (C20H28MnN14O12, Mr = 711.50, tata = 2,4,6-triamino-1,3,5-triazine, pydcH2 = pyridine-2,6-dicarboxylic acid) has been synthesized and its crystal structure was determined by single-crystal X-ray diffraction. The crystal belongs to the triclinic system, space group P1, with a = 9.9847(3), b = 10.9813(3), c = 15.2616(5) (A), α =101.5310(10), β = 90.2610(10), γ = 116.4600(10)°, V = 1459.44(8) A3, Z = 2, Dc = 1.619 g/cm3, μ = 0.539 mm-1, F(000) = 734, the final R = 0.0292 and wR = 0.0745. In the crystal the MnⅡ atom is six-coordinated by four carbonyl oxygen atoms and two pyridine nitrogen atoms from two tridentate H-bonded tetramer. The molecules are packed in a three-dimensional framework structure by the combination of O-H…O,N-H…O and N-H…N hydrogen bonds between (tataH) ,[Mn(pydc)2]2- and crystal water.  相似文献   

14.
Reactions of 1,4,7-triazacyclononane-1,4,7-triyl-tris(methylenephosphonic acid) [notpH(6), C(9)H(18)N(3)(PO(3)H(2))3] with different lanthanide salts result in four types of Ln-notp compounds: [Ln{C(9)H(20)N(3)(PO(3)H)(2)(PO(3))}(NO(3))(H(2)O)].4H2O (1), [Ln = Eu (1 Eu), Gd (1 Gd), Tb (1 Tb)], [Ln{C(9)H(20)N(3)(PO(3)H)(2)(PO(3))}(H2O)]Cl.3H2O (2) [Ln = Eu (2 Eu), Gd (2 Gd), Tb (2 Tb)], [Ln{C(9)H(20)N(3)(PO(3)H)(2)(PO(3))}(H2O)]ClO4.8H2O, (3) [Ln = Eu (3 Eu), Gd (3 Gd)], and [Ln{C(9)H(20)N(3)(PO(3)H)(2)(PO(3))}(H2O)]ClO4.3H2O (4), [Ln = Gd (4 Gd), Tb (4 Tb)]. Compounds within each type are isostructural. In compounds 1, dimers of {Ln2(notpH4)2(NO3)2(H2O)2} are found, in which the two lanthanide atoms are connected by two pairs of O-P-O and one pair of mu-O bridges. The NO3- ion serves as a bidentate terminal ligand. Compounds 2 contain similar dimeric units of {Ln2(notpH4)2(H2O)2} that are further connected by a pair of O-P-O bridges into an alternating chain. The Cl- ions are involved in the interchain hydrogen-bonding networks. A similar chain structure is also found in compounds 3; in this case, however, the chains are linked by ClO4- counterions through hydrogen-bonding interactions, forming an undulating layer in the (011) plane. These layers are fused through hydrogen-bonding interactions, leading to a three-dimensional supramolecular network with large channels in the [100] direction. Compounds 4 show an interesting brick-wall-like layer structure in which the neighboring lanthanide atoms are connected by a pair of O-P-O bridges. The ClO4- counterions and the lattice water molecules are between the layers. In all compounds the triazamacrocyclic nitrogen atoms are not coordinated to the Ln(III) ions. The anions and the pH are believed to play key roles in directing the formation of a particular structure. The fluorescence spectroscopic properties of the Eu and Tb compounds, magnetic properties of the Gd compounds, and the catalytic properties of 4 Gd were also studied.  相似文献   

15.
1INTRODUCTIONAlotofstudieshaverevealedthatmesocyclicdiaminesandtheirderivativesareversa tilechelatingagentsandtheyshowedunusu...  相似文献   

16.
Natarajan S 《Inorganic chemistry》2002,41(21):5530-5537
Hydro/solvothermal reactions of ZnO, HCl, H(3)PO(4), 1,4-diazacycleheptane (homopiperazine), and H(2)O under a variety of conditions yielded three new organic-inorganic hybrid materials, [C(5)N(2)H(14)][Zn(HPO(4))(2)].xH(2)O (x = approximately 0.46), I, [C(5)N(2)H(14)][Zn(3)(H(2)O)(PO(4))(2)(HPO(4))], II, and [C(5)N(2)H(14)][Zn(2)(HPO(4))(3)].H(2)O, III. While I has a one-dimensional structure, II possesses a two-dimensional layered structure, and III has a three-dimensional structure closely related to the ABW zeolitic architecture. All the compounds consist of vertex linking of ZnO(4), PO(4), and HPO(4) tetrahedral units. The fundamental building unit, single four-membered ring (S4R), is present in all the cases, and the observed differences in their structures result from variations in the connectivity between the S4R units. Thus I has a corner-shared S4R forming an infinite one-dimensional chain, II has two corner-shared chains fused through a 3-coordinated oxygen atom forming a strip and a layer with eight-membered apertures, and III has S4R units connected via oxygen atoms to give rise to channels bound by eight T atoms (T = Zn, P) in all crystallographic directions. Crystal data: I, monoclinic, space group = P2(1)/n (No. 14), a = 8.6053(3) A, b = 13.7129(5) A, c = 10.8184(4) A, beta = 97.946(1) degrees, V = 1264.35(8) A(3), Z = 4; II, monoclinic, space group = P2(1)/c (No. 14), a = 11.1029(1) A, b = 17.5531(4) A, c = 8.2651(2) A, beta = 97.922(2) degrees, V = 1595.42(5) A(3), Z = 4; III, monoclinic, space group = P2(1) (No. 4), a = 8.0310(2) A, b = 10.2475(3) A, c = 10.570(3) A, beta = 109.651(1) degrees, V = 819.24(3) A(3), Z = 2.  相似文献   

17.
Crystal structure of copper (II) complex with a new aminocarboxylate ligand, 3-hydroxyl-1, 5-diazacycloheptane-N,N-diacetate, C9H14CuN2O5.H2O, Mr=311.78 is reported. It crystallizes in orthorhombic Pna21 with a=13.340(4), b=8.127(1), c=10.583(4) , V=1147.2(7)3 , Z=4, Dc=1.805g/cm3, μ=19.287cm-1 (MoKα), F(000)=644. The final R and Rw are 0.049 and 0.065 for 888 observed reflections with I≥3σ(I). The result of X-ray structure determination shows that the Cu(Ⅱ) forms a planar complex with two oxygen atoms and two nitrogen atoms of the ligand.  相似文献   

18.
标题化合物由La(NO3)3·nH2O,1,10-邻菲罗啉(phen)和乙酰丙酮等在无水乙醇和水的混合溶剂中合成并用IR谱和X射线结构分析进行表征。晶体学数据如下:C24 H21LaN8O14,Mr= 784.40, 三斜, P1, a= 7.124(1), b= 11.047(2), c= 19.393(4), α= 81.10(3), β= 87.79(3), γ= 74.36(3)°, V= 1452.0(5)3, Z= 2, Dc=1.794g/cm 3, F(000)= 780, μ(MoKα)= 1.557m m - 1。化合物由阳离子〔phenH〕+ 和配合阴离子〔La(NO3)4(H2O)(phen)〕- 及一个结晶水分子组成。配合阴离子中以La原子为中心,周围被2 个N原子(来自phen)和9 个O原子(来自NO3- 和H2O)所占据,构成较为罕见的11 配位。晶胞中两两阳离子〔phenH〕+ 及两两配体phen 平面之间均相互平行堆积,并有多种类型的氢键存在,这些都可以降低能量,有利于化合物在晶体中的堆积。  相似文献   

19.
梁玉仓  江茂椿 《结构化学》2001,20(6):455-458
1 INTRODUCTION The researches in zinc complexes have been rapidly expanding because of their fascinating structural diversity and potential applications as functional materials and bioloenzymes[1~5]. A lot of compounds of different structural types containing zinc metal have been synthesized and reported[6~9]. In these complexes, the multifunction ligand, such as polyamine, polyacid, and so on, were often elected. In order to obtain more compounds having novel structures, recently, we ch…  相似文献   

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