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1.
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The crystal structure of bis(morpholino)-disulphide C8H16N2O2S2, has been solved by the symbolic addition procedure using three-dimensional CuK diffractometer data. The system is monoclinic,a = 5·717(4),b = 8·880(7),c = 23·080(20) Å, = 107·8(1) ° andZ = 4. The structure was refined by fullmatrix least-squares methods to a conventional, unweightedR of 0·039 for 1441 observed reflexions. All hydrogen positions have been determined. The molecule possesses a pseudo-diad axis, the morpholine rings being in the chair conformation. Bonds at nitrogen are distorted pyramidal with the attached sulphur equatorial.  相似文献   

3.
Crystal structure of a novel bis(guanidiniums) compound 1 by sulfate anion and water, C11H20N6OSO4H2O, was measured by X-ray crystallographic analysis with an imaging plate method. It possesses space group P21/c, with a = 7.6433(15), b = 19.447(4), c = 12.115(2) Å, = 107.81(3)°, and calc = 1.420 mg/m3 for Z = 4. Crystal data indicate that the architecture network is formed through hydrogen bonds, electrostatic interactions, and arene–arene stacking interaction among the bis(guanidiniums) compound, the sulfate anion and water molecule.  相似文献   

4.
The crystal and molecular structure of bis(N,N-di-n-butyldithiocarbamato)gold(III) bis(1,2-dicyanoethene-1,2-dithiolato)aurate(III), Au[S2CN(C4H9)2]2Au[S2C2(CN)2]2, has been determined from a single-crystal X-ray diffraction study. The monoclinic cell, space groupP21,/c, witha = 9·930(3),b = 12·517(3),c = 15·632(3) Å and = 110·46(3) °, contains two formula units. Three-dimensional intensity data, up to = 35 ° were collected on an automatic diffractometer. Atomic parameters were refined by full-matrix least-squares methods to a conventionalR value of 0·04 for 1874 independent non-zero reflections. The structure consists of bis(di-n-butyldithiocarbamato)gold(III) cations and bis(l,2-dicyanoethene-l,2-dithiolato)aurate(III) anions. In both ions, the gold atom is in planar coordination with four sulphur atoms, the Au-S bond lengths being 2·333(4) and 2·337(4) Å in the cation and 2·312(4) and 2·306(5) Å in the anion.  相似文献   

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The crystal and molecular structure of the title compound, C20H8N4S12Ni, is reported. Crystals are triclinic, space groupP¯1 (No. 2) withz=1 in a cell of dimensionsa=8;482(2),b=7.950(2),c=9.976(2) Å,=95.64(2),=98.60(2), and =87.65(2)°. The structure was solved by Fourier methods and refined by the method of least squares toR=0.033 for 2027 unique reflections. The Ni atom has an approximate square-planar configuration with Ni-S(1)=2.179(1), Ni-S(2)=2.175(1) Å, and the S(1)-Ni-S(2) bite angle of 91.89(4)°. The anions and the cations form a mixed stack (DAD-DAD-) along the diagonal of theab plane, showing the possibility of unusual electrical behavior.  相似文献   

7.
The crystal and molecular structure of bis(aminomethylphosphonate)-copper(II), C2H10N2O6P2Cu, has been determined from MoK diffractometer data. The compound crystallizes in the monoclinic space groupP21/n witha =7.571(2),b = 4.943(1),c = 11.212(3) Å, = 105.84(2) °, andZ = 2. The structure was solved by the heavy-atom technique and refined by full-matrix least-squares methods toR = 0.041, using 1084 reflections for which ¦F o¦ > 3.92 (¦F o¦). In this complex, the Cu atom is square-planar coordinated by four O atoms from four phosphonic groups, and not by the amino group. The Cu-O bond lengths are 1.928(3) and 1.937(3) Å, and the phosphonic groups bridge adjacent Cu atoms in polymeric chains. The infrared spectrum of this complex is reported.  相似文献   

8.
Stable, dark-violet crystals of (C7H7N2)2CuBr4 were obtained from an aqueous solution of CuBr2, HBr, and benzimidazole. The crystal structure was determined by three-dimensional X-ray analysis. The crystals are monoclinic:C2/c, a=15.651(4),b=7.945(1),c=15.775(4) Å,=91.44(2)°,Z=4,V c=1960.96 Å3,D x=2.105 g cm–3. The structure was refined by full-matrix least squares to giveR=0.042 andR w=0.048 for 1254 intensities above 3(I). The copper(II) ions are four-coordinated in the form of a distorted tetrahedron CuBr4 ofC 2 symmetry. Two different Cu-Br bond lengths are observed: Cu-Br(1)=2.426(2), Cu-Br(2)=2.330(2) Å. Only one flattened angle [Br(2)-Cu-Br(2)=132.71(9)°] in the CuBr4 tetrahedron is noted. The angles Br(1)-Cu-Br(1)=108.83(7), Br(2)-Cu-Br(1)=99.92(5) and Br(2)-Cu-Br(1)=107.13(5)° have been found. Hydrogen bonds explain the deformation of the CuBr 4 2– coordination polyhedron. The structure is compared with other CuX 4 2– complexes.  相似文献   

9.
The salt of bis(2,3,5-trimethylpyridine N-oxide) 2,4,6-trinitrophenolate, C22H25N5O9, crystallizes in monoclinic space group C2/c with a=12.411(2)Å, b=15.326(3)Å, c=13.559(3)Å, =113.13(1)°, V=2371.8(8)Å3, Z=4, D c=1.410 mg/m3, F(000)=1056. The molecule of 2,3,5-trimethylpyridine N-oxide is protonated. Two pyridine N-oxide molecules are linked by extremely strong OHO hydrogen bonding (2.378(4)Å) to form a cation complex. CHO hydrogen bonding and – interactions also play important role in stablizing the structure of the salt.  相似文献   

10.
The crystal and molecular structure of bis(tetramethylammonium)di(-(1)-2-thiollyl)iron(II), C8H44B20FeN2S2, has been determined from three-dimensional X-ray data collected by counter techniques. The material crystallizes in the orthorhombic system: space groupIbam, z=4, a=15·585(5), b=12·324(4), and c=14·806(6) Å. The B10H10S2– moiety is an icosahedron with the sulphur atom and four boron atoms forming that part of the cage which is within bonding distance of the iron. The sulphur atom and one boron atom are disordered. The structure was solved by standard techniques and the least squares refinement, using 969 independent reflexions for whichF 0 2 3(F 0 2), converged to a conventionalR factor (onF) of 4·2%.No part of this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechanical, photocopying, microfilming, recording or otherwise, without written permission of Plenum Publishing Company Limited.National Lending Library Supplementary Publication No. 60063 contains 2 pages of structure tables on 1 microfiche.  相似文献   

11.
Single crystals of N’-[(E)-(4-bromophenyl) (phenyl) methylidene]–4-methylbenzenesulfonohydrazide (4BBTH), having potential applications in nonlinear electro optic field. The structure is elucidated by single crystal X-ray diffraction analysis. The functional groups are identified by FT-IR analysis. The band gap energy is estimated using diffuse reflectance data by the application of Kubelka–Munk algorithm. Third-order nonlinear optical properties of the grown crystal were derived by employing a single beam Z-scan technique. Theoretical calculations were performed using density functional theory (DFT) method. Estimated large first-order molecular hyperpolarizality of 9.79 times of urea, suggests a charge transfer atmosphere facilitating micro level nonlinearity.GRAPHICAL ABSTRACT  相似文献   

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Trans‐bis(ethanolamine)bis(saccharinato)mercury(II), [Hg(ea)2(sac)2], where ea and sac denote the ethanolamine molecule and the saccharinate anion, respectively, crystallizes in the triclinic space group P (No. 2) with a = 9.4651 (5), b = 10.4365 (5), c = 11.9314 (6) Å, α = 84.402 (1)° β = 78.313 (1)°, γ = 75.307 (1)°, Z = 2, V = 1115.11 (10) Å3. The structure consists of isolated [Hg(ea)2(sac)2] units in which the Hg(II) ion is octahedrally coordinated by two nitrogen and two oxygen atoms of two neutral ea ligands, and two nitrogen atoms of two sac ligands. The ea acts as a bidentate N‐ and O‐donor ligand and occupies the trans positions of the equatorial plane of the coordination octahedron forming a fivemembered chelate ring, while sac behaves as a monodentate N‐donor ligand occupying the axial positions. The average Hg‐Nsac and Hg‐Nea bond distances are 2.739 (3) and 2.114 (7) Å, respectively. The crystal exhibits extensive hydrogen bonds between the hydroxyl and amine hydrogen atoms of the ea ligands and the sulfonyl, carbonyl and amine groups of the sac ligands.  相似文献   

14.
(Chloranilato)bis(tri-n-butylphosphine)palladium(II), [Pd(C6Cl2O4){P(C4H9)3}2] (chloranilic acid=2,5-dichloro-3,6-dihydroxy-p-benzoquinone): FW=718.02,P21/c,a=21.729(6),b=17.293(5),c=21.010(9) Å,=112.62(3)°,V=7287.42 Å3,Z=8,D c=1.309mg m–3, Mo, =0.710730 Å,=0.76 mm–1,F(000)=3008, finalR=0.087, 2594 observed reflections. Palladium is ligated by a distorted square planar P2O2 coordination sphere in the title compound. The two molecules per asymmetric unit differ in the arrangement of phosphine n-butyl chains, yielding two unique metal centers.  相似文献   

15.
The crystal and molecular structure of copper(II) complexes of benzil bis(3-piperidylthiosemicarbazone), [Cu(Bnzpip)] and 1-phenylpropane-1,2-dione bis(3-piperidylthiosemicarbazone), [Cu(Pmpip)] have been determined. [Cu(Bnzpip)] is monoclinic, space group P21/n with a = 13.9375(10) Å, b = 11.6621(4) Å, c = 16.4710(10) Å, = 100.667(2)°, and V = 2630.9(3) Å3 with Z = 4, for d calc = 1.399 g/cm3. [Cu(Pmpip)] is also monoclinic, space group P21/n with a = 11.292(6) Å, b = 10.219(5) Å, c = 20.292(6) Å, = 101.50(3)°, and V = 2295(2) Å3 with Z = 4, for d calc = 1.525 g/cm3. Both complexes involve N2S2 coordination, are relatively planar except for the phenyl rings and have similar bond distances and angles to copper(II) complexes of other 3-piperidylthiosemicarbazones.  相似文献   

16.
The crystal and molecular structure of bis[(1,2-dihapto-3,5-dimethylpyrazolido)--allylpalladium(II)], C16H24N4Pd2, has been determined by X-ray diffraction techniques. The crystals are monoclinic,P21/c (No. 14), witha = 8.752(1),b = 18.932(2),c = 11.780(3) Å, and = 109.78(1) °. The observed crystal density (1.746 g cm–3) agrees well with that calculated on the basis of four molecules per unit cell (1.754 g cm–3). The structure has been refined by full-matrix least-squares techniques to a finalR 1 value of 0.045 (R 2 = 0.056) for 2974 unique reflections withI net7 counts sec–1. The Pd2N4 ring is in a boat conformation in which the two palladium atoms are 1.113 and 1.064 Å out of the plane defined by the four nitrogen atoms. The Pd-C bond distances to the terminal atoms of the -allyl groups (2.12 Å) are longer than those to the central carbon atoms (2.06 Å). The molecule possesses approximatemm2 (C 2v ) symmetry.  相似文献   

17.
Reaction of the Zn, Cd, or Co nitrate salts with the deprotonated ligand (2-hydroxy-3-t-butyl-methylphenyl)bis(3,5-dimethylpyrazolyl)methane (L1O) in methanol produced the following complexes: [(L1OH)Zn(NO3)2] in two isomorphs, a = 40.983(8) Å, b = 9.571(2) Å, c = 15.667(8) Å, = 90, = 106.38(1), = 90, C2/c, and a = 13.027(3) Å, b = 14.781(4) Å, c = 16.107(3) Å, = 90, = 105.30(1), = 90, P21/n; [(L1OH)Cd(pz)(NO3)2] a = 14.7476(2) Å, b = 13.5411(2) Å, c = 16.7223(2) Å, = 90, = 110.3840(10), = 90, P21/c; and [(L1O)Co(pz)(NO3)] a = 11.4240(2) Å, b = 13.4498(2) Å, c = 13.8056(2) Å, = 105.2080(10), = 105.8130(10), = 112.7470(10), P . The Zn adopts a pseudotetrahedral four-coordinate geometry where the potentially tridentate ligand is actually bidentate with a protonated and uncoordinated phenoxy arm. The Co complex is pseudooctahedral six-coordinate where the phenoxy arm is deprotonated and coordinated. Finally the Cd complex is seven-coordinate but the metal is not coordinated through the phenoxy group that is again protonated.  相似文献   

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19.
The crystal and molecular structure of bis(quinoxaline)-2,23,3-disulfide, C16H8N4S2, was determined by direct methods and refined by least-squares methods, using 823 reflections collected with a two-circle Weissenberg diffractometer, including anisotropic temperature factors for nonhydrogen atoms to a finalR of 0.104. The crystals are monoclinic prismatic: space groupP21/a,a = 18.98(2),b = 9.27(2),c = 3.89(1) Å, = 100.3 °(1),Z = 2. The structure consists of layers of molecules staggered along thec axis. The molecule is centrosymmetric, and makes an acute angle of 36.9 ° with theab plane; it is planar within an rms atom deviation of 0.02 Å. The S-C (1.752–1.760 Å) distances are normal for a S-C (sp2) bond. The N-C bonds (1.372–1.381 Å) adjacent to the benzene ring are longer than the N-C bonds (1.318–1.322 Å) adjacent to the central C4S2 ring.  相似文献   

20.
The crystal structure of dichloro-(N,N,N,N-tetramethylethylenediamine)zinc(II), C6H16Cl2N2Zn, has been determined from 1684 reflexions measured on a Siemens four-circle diffractometer (A.E.D.) using the /2-scan technique and CuK radiation. The crystals are monoclinic, space groupP21/c,a = 7·716(3),b = 13·335(9),c =11·545(5) Å, = 105·59(6) ° andZ = 4. The structure was solved by Fourier methods, and refined by full-matrix least squares to a finalR (conventional) of 6·7 %. Anisotropic thermal parameters were evaluated for the non-hydrogen atoms, but the hydrogen atoms were assigned the equivalent isotropic thermal parameters of the carbon atoms to which they were bonded. The geometry around the zinc atom is distorted tetrahedral, with the Zn-Cl and Zn-N average bond lengths of 2·207(4) and 2·08(1) Å respectively.  相似文献   

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