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1.
Crystals of the ammonium (2.2.2cryptand) thiocyanate monohydrate complex, [NH4(2.2.2Crypt)]+ × SCN- · H2O, were studied by Xray structural analysis: space group P2/c, a = 11.303(2)*angst;, b = 8.313(1), c = 14.392(3), = 110.39(2)°, Z = 2, 3680 independent measured reflections, R = 0.064. This complex is of the guest–host type: the cryptand ligand cavity contains the NH4 + cation with statistically disordered H atoms forming H bonds with each of its O and N heteroatoms. The SCN- anions and H2O molecules are linked by H bonds to form chains that are infinite along the z axis.  相似文献   

2.
Single crystals of NH4NaTiF6are studied by X-ray diffraction analysis (automated diffractometer, MoK radiation, graphite monochromator, sin/ 1.0 Å–1, 1566 reflections with I> 3(I), anisotropic least squares method to R= 0.045 and R w= 0.040). The compound belongs to the NaRbSnF6structural type. The types of internal motions of the complex ions NH4 +and TiF6 2–are determined in the temperature range 200–500 K and compared with the motion of ionic groups in (NH4)2TiF6and Na2TiF6crystals.  相似文献   

3.
The crystal structure of a novel antimony(III) fluoride complex, ammonium undecafluorotriantimonate(III) (NH4)2Sb3F11, was determined. The crystals are triclinic: a = 7.780(2) Å, b = 8.370(2) Å, c = 10.620(1) Å, = 71.06(1)°, = 89.03(1)°, = 63.58(1)°, V = 579.1(2) Å3, Z = 2, (calcd) = 3.500 g/cm3, (exp) = 3.51 g/cm3, F(000) = 548.0, space group P . The structure consists of anionic [Sb3F11]2– chains and ammonium cations combined into a framework by the N–H···F hydrogen bonds.  相似文献   

4.
[N(CH3)4]Ca(N3)3,M=240.29, was prepared from aqueous solutions of tetramethylammoniumazide with calciumazide at 298 K. The crystals are tetragonala=936.6(7) pm,c=694.7(5)pm, space group P4/nmm,Z=2, (x)=1.31Mgm–3. The crystal structure was determined by single crystal x-ray diffraction (234 Mo-K-reflections, =0.469 mm–1,R=0.064). Calcium is octahedrally coordinated to six azide groups. The octahedra are connected via azide groups to a threedimensional array with the complex ammonium ions between. The terminal nitrogen atoms of the azide groups and the methyl groups are considerably disordered.
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5.
Summary A rigorous analysis of the effect of various concentrations (0.02–1.60M) of ammonium acetate on the distribution coefficients (K) of a number of metal ions using cation exchanger Dowex 50W-X8 (100–200 mesh NH4 +-form) has been made. On account of the low affinity of U(VI) for resin in 0.20M NH4OAc it can be separated from all other metal ions. HighK values of Sr(II), Ba(II) and Hg(II) at higher 0.50M NH4OAc are responsible for their separation from others. The abnormal column Chromatographic behaviour of Al(III) permits its separation from other metal ions including U(VI), Sr(II), Ba(II), Hg(II). A number of binary and ternary separations have been achieved.  相似文献   

6.
Single crystals of [Ni(Phen)(iBu2PS2)2] (I) and [Ni(Phen)3](iBu2PS2)2 (III) compounds were grown, and their structures were determined by Xray diffraction analysis (CAD4 diffractometer, MoK radiation, 3336 F hkl , R = 0.0373 for I and 2575 F hkl for III). The crystals of complex I have a triclinic unit cell with the following parameters: a = 11.097(1) , b = 14.903(2) , c = 22.650(3); = 75.18(1)°, = 80.50(1)°, = 75.07(1)°, V = 3479.2(7)3, Z = 4, calc = 1.255 g/cm3, and space group 1; the crystals of III have a monoclinic unit cell with the following parameters: a = 19.010(3), b = 15.481(1) , c = 17.940(3); = 97.58(1)°, V = 5233.5(12)3, Z = 4, calc = 1.292 g/cm3, and space group C2/c. The structure of complex I is built from mononuclear molecules, and the structure of III, from [Ni(Phen)3]2+ complex cations and i Bu2PS2 - outersphere anions. The NiN2S4 coordination polyhedra in the structure of I and NiN6 in the structure of III are distorted octahedra. Based on structural data, the interaction between the coordinated Phen molecules of complexes I, [Ni(Phen)2(iBu2PS2)](iBu2PS2) (II), and III is considered, as well as the packing modes of these complexes.  相似文献   

7.
The location and diffusive mobility of ammonium ions and water molecules in the channels of the NH4substituted forms of the natural zeolites clinoptilolite (NH4)6.5[Al6.5Si29.5O72] · 12.6H2O and chabazite (NH4)9.6Ca0.6Na0.3[Al11.1Si24.9O72] · 25.8H2O were studied by Xray diffraction analysis and 1H NMR spectroscopy. The arrangement of the extraframework subsystem was shown to be largely determined by hydrogen bonds N—H...O(H2O) of length 2.7–2.9 . The diffusive mobility of the ions was found to correspond to abnormally low energy barriers, similar to those for H2O diffusion. The activation parameters for the diffusion jumps of the ions and molecules are E(NH4) = E(H2O) = 31(2) kJ/mole, 0(NH4) = 2 · 1011 sec-1, 0(H2O) = 4 · 1012 sec-1 in NH4chabazite and E(NH4) = E(H2O) = 25(1) kJ/mole, 0(NH4) = 2 · 1010 sec-1, 0(H2O) = 3 · 1011 sec-1 in NH4clinoptilolite. It is suggested that the development of ion and molecular diffusion is caused by the same defects, whose formation with temperature rise is controlled by Hbond rearrangement.  相似文献   

8.
A new complex of Np(V) [NpO2(HCOO){OC(NH2)2}3] (I) was synthesized and its crystal structure was determined: a = 6.674(1) Å, b = 13.164(2) Å, c = 7.020(1) Å, = 101.35(1)°, space group P21, Z = 2, V = 604.7(2) Å3, R = 0.048, wR(F 2) = 0.128. The structure consists of infinite chains of [NpO2(HCOO){OC(NH2)2}3]. The coordination polyhedron of the Np atom is a pentagonal bipyramid with the O atoms of three carbamide molecules and two formate ions in the equatorial plane. The absorption spectra were measured in IR and near-IR regions for compound I and for the [NpO2Cl{OC(NH2)2}4] complex, whose structure was reported in the previous publication.  相似文献   

9.
The crystalline host–guest type complex [(18-crown-6NH4)2][SiF6]4H2Ohas been obtained as the result of the interaction of SiF42NH3 with 18-crown-6 (18C6) in an aqueous medium. Crystal data: monoclinic, space groupC 2 c, a=26.541(2), b=8.363(2), c=20.469(2) Å, = 122.43(1)°and Z=4. The final R-value is 0.070 for 3253 reflections with I 2(I).The crystals consist of the complex [NH418C6]+ cations, [SiF6]2-anions and water molecules. The ammonium cation is hydrogen bonded by three of its H-atoms to the crown ether oxygen atoms with N(1) O separations2.923(5)–2.940(5) Å and by the fourth H-atom to the fluorine atom of thehexafluorosilicate anion, the N(1)F(4) distance being 2.797(6) Å.The conformation of the macrocycle and the hydrogen-bond geometry in thecomplex cation closely resemble those in related adducts between 18-crown-6and ammonium salts. All crystal components are connected via a system of hydrogen bonds into a ribbon along the b axis in the unit cell.  相似文献   

10.
Hydrolysis of NH4TiOxF5-2x (x0.4) (I) was investigated by 19F, 17O, and 49Ti NMR. The interaction of complex I with water is accompanied by the formation of [TiF6]2- and multinuclear titanium forms. The composition of the main forms resulting from hydrolysis of I has been established. The bonding of titanium octahedra into dimers and other oligomers occurs by formation of hydroxyl bridges, considerably lowering the pH of the solution. Close analogy has been found between hydrolysis of the title complex and that of titanium tetrafluoride.  相似文献   

11.
The dynamics of fluoride and ammonium ions in Na(NH4)6Zr4F23 (I) and Li(NH4)6Zr4F23 (II) was studied by 1H and 19F NMR in the temperature range 170-440 K. Types of ionic motion were determined, and their activation energies were evaluated. In I, phase transitions were found in the temperature ranges 360-370 and 410-415 K. The experimental values of conductivity of Na(NH4)6Zr4F23 and Li(NH4)6Zr4F23 ( 4 × 10-3 S/cm at T = 420 K) permit one to attribute these fluorides to the class of superionic conductors.  相似文献   

12.
The crystal structures of complex antimony(III) fluorides RbSbF4 (I) and (C2N4H5)SbF4 (II) were determined. The crystals of I and II are monoclinic; for I: a = 4.628(1) Å, b = 6.167(1) Å, c = 7.922(1) Å, = 100.582(3)°, V = 222.24(7) Å3, Z = 2, (calcd.) = 4.23 g/cm3, (exp.) = 4.25 g/cm3, F(000) = 248, space group P21/m, R = 0.0395; for II: a = 4.678(1) Å, b = 7.339(4) Å, c = 10.185(1) Å, = 90.88(2)°, V = 349.6(2) Å3, Z = 2, (calcd.) = 2.69 g/cm3, (exp.) = 2.70 g/cm3, F(000) = 264, space group P21. The structure of I is formed by Rb+ cations and [SbF4] n n anionic chains composed of SbF5E octahedra with two bridging fluorine atoms. The structure of IIis formed by (C2N4H5)+ cations and isolated [SbF4] anions in which the antimony polyhedra are SbF4E trigonal bipyramids. The relationship between the crystal structures and electrophysical and biological properties of single-charged cation tetrafluoroantimonates(III) was studied.  相似文献   

13.
The crystal structures of two new dimer compounds of Re(V) containing an [OReOReO]4+ fragment have been studied. Re2O3Cl4(3,5-Me2pzH)4 (I): space group P21/n, Z = 4, a = 10.180(3), b = 18.132(3), c = 16.601(2) , = 94.60(2)°, V = 3054.4(1) 3, d calc = 2.059 g/cm3, R 1 = 0.0513, wR2 = 0.1493 for 4701 Ihkl > 2 I of 4926 measured reflections; Re2O3Cl2(-3,5-Me2pz)2(3,5-Me2pzH)22[(3,5-Me2pzH2)Cl] (II): space group P21/n, Z = 4, a = 16.904(2), b = 14.573(1), c = 17.401(2) , = 107.23(1)°, V = 4094.2(7) 3, d calc = 1.848 g/cm3, R 1 = 0.025, wR2 = 0.0514 for 6102 Ihkl > 2 I of 6315 measured reflections (Enraf-Nonius CAD-4 diffractometer, MoK, graphite monochromator). Compound I has a molecular structure, where molecules are dimers Re2O3Cl4(3,5-Me2pzH)4 with a bridging O atom. In II, the dominant motif is the ReOCl(3,5-Me2pzH) fragments bridged by the pyrazole molecules and the O atom.  相似文献   

14.
Two new openframework iron fluorophosphates, [C4N2H12]0.5[FeF(HPO4)(H2PO4)] (I) [C4N2H12][Fe4F2(H2O)4(PO4)4] · 0.5H2O (II), were synthesized hydrothermally using piperazine as a templating agent. The structures were determined by singlecrystal Xray diffraction. Compound I crystallizes in the orthorhombic space group Pbca, a = 7.2126(2) , b = 14.2071(4) , c = 17.1338(2) , Z = 8. The structure is composed of infinite anionic chains of [FeF(HPO4)(H2PO4)]- n built by transfluorine sharing FeF2O4 octahedra. These chains are similar to those found in tancoitetype minerals. Compound II crystallizes in the monoclinic space group P21/n, a = 9.9045(3) , b = 12.3011(3) , c = 17.3220(4) , = 103.7010(10)°, Z = 4. The structure of compound II has a threedimensional (3D) architecture with an eightmembered channel along the b axis, in which protonated piperazine molecules reside. The complex framework is built from two types of secondary building unit (SBU): one hexamer [Fe3F2(H2O)2(PO4)3$] (SBU6), and one dimer [FeO4(H2O)2PO4] (SBU2). The vertex sharing between these SBUs create the 3D structure.  相似文献   

15.
Single crystals of the mixed-ligand complex compounds of Cd(i-Bu2PS2)2 with Phen and 2,2-Bipy have been obtained. The crystal structures of the complexes [CdPhen{(i-C4H9)2PS2}2] (I) and [Cd(2,2-Bipy){(i-C4H9)2PS2}2] (II) were determined by X-ray diffraction (CAD-4 diffractometer, MoK radiation, 1739 F F hkl , R = 0.0417 for I and 2612 F hkl , R = 0.0442 for II). Monoclinic crystals with unit cell parameters a = 15.640(3), b = 20.797(4), c = 11.559(2) , = 111.21(3)°, V = 3505(1) 3, Z = 4, d calc = 1.348 g/cm3, space group (I); a = 14.737(3), b = 20.918(4), c = 11.517(2) , = 105.53(3)°, V = 3421(1) 3, Z = 4, d calc = 1.334 g/cm3, space group (II). The structures consist of discrete monomer molecules. The coordination polyhedra of the Cd atoms are distorted octahedra formed by four S atoms of two cyclic bidentate ligands i-Bu2 and two N atoms of the cyclic bidentate ligands — Phen or 2, -Bipy molecules. The interaction between molecules I and II in the structures and the packing modes are considered.  相似文献   

16.
Crystals of the HAmp[Cu9Cl8(CCCH2OH)2] cluster compound (HAmp is the 4-aminopyridinium cation (NH2–C5H4NH)+) were obtained through ac electrochemical synthesis and their structure was determined using X-ray diffraction analysis (DARCh autodiffractometer, /2 scan mode, 3435 independent reflections with F 4(F), R = 0.047). The crystals are triclinic: space group P , a = 12.547(5) Å, b = 12.502(4) Å, c = 8.201(2) Å, = 75.93(2)°, = 82.21(3)°, = 76.05(3)°, V = 1207(2) Å3, Z = 2. Two crystallographically independent moieties (CCCH2OH) were detected in the complex structure. Each moiety acts as a double bridging ,-ligand and binds four or five Cu(I) atoms, thus forming the [Cu4(CCCH2OH)] and [Cu8(CCCH2OH)2] clusters. The shortest Cu···Cu distance is equal to 2.337(4) Å.  相似文献   

17.
Summary. The ammoniates Li(NH3)4RbSe3 and Na(NH3)5RbSe3·3NH3 were prepared by the reduction of Rb2Se5 with lithium or sodium in liquid ammonia. Single crystals were isolated and characterized by X-ray structure analysis using low temperature techniques. Both compounds contain triselenide anions Se32–, which coordinate to rubidium cations forming 1[RbSe3] or 1[Rb(NH3)2Se3] chains. The chains are separated in the crystal structures by the homoleptic ammine complexes Li(NH3)4+ and Na(NH3)5+.  相似文献   

18.
The structure of the diammonium salt of 5-nitraminotetrazole wasestablished bysinglecrystalX-ray diffraction. The crystals are monoclinic, space group P2/c; a=7.272(1), b=8.643(1), c=10.427(1) ; =93.20(1)°; V=654.33(39) 3; Z=4;calc=1.666 g/cm3. The dianion is nonplanar, but contains two practically planar fragments -- the tetrazole cycle and the nitramine group. The ammonium cations form an extended net of hydrogen bonds with the dianions, involving all hydrogen atoms. The negative charges of the dianion are located on the nitro oxygen atoms and the nitrogens of the tetrazole cycle. The difference between the geometrical parameters of the compound and those of other 5-nitraminotetrazole salts is examined.  相似文献   

19.
The reaction of the dinuclear complex Co2(-OOCCMe3)2(2-OOCCMe3)2bpy2 (1) with the polymer [Co(OH) n (OOCCMe3)2–n ] x afforded the unsymmetrical dinuclear complex bpyCo2(2-O,2-OOCCMe3)(2-O,O"-OOCCMe3)2(2-OOCCMe3) (2). The reaction of 2,2"-dipyridylamine with [Co(OH) n (OOCCMe3)2–n ] x gave rise to the analogous complex [(C5H4N)2NH]Co2(2-O,2-OOCCMe3)(-OOCCMe3)2(2-OOCCMe3) (3). The reaction of complex 1 with Ni4(3-OH)2(-OOCCMe3)4(OOCCMe3)2(MeCN)2[2-o-C6H4(NH2)(NHPh)]2 (4) produced an isostructural heterometallic analog of complex 2 with composition bpyM2(2-O,2-OOCCMe3)(2-O,O"-OOCCMe3)2(2-OOCCMe3) (5) (M = Co, Ni; Co : Ni = 1 : 1) and the dinuclear heterometallic complex bpy(HOOCCMe3)M(-OH2)(-OOCCMe3)2M(OOCCMe3)2[o-C6H4(NH2)(NHPh)] (6) (M = Co, Ni; Co : Ni = 0.15 : 1.85). Compounds 2 and 5 exhibit ferromagnetic spin-spin exchange interactions.  相似文献   

20.
A comparison study of the bis(-oxalato)tetramminediplatinum(II) dimer [Pt2(NH3)4(-C2O4)2] and the oxalatodiammineplatinum(II) chelate [Pt(NH3)2C2O4] is performed. The kinetics and mechanism of substitution of C2O2– 4 for Cl in aqueous chloride solutions are studied by photoelectronic spectroscopy, gravimetry, and chemical phase analysis within the 1.0–6.7 pH range at 75°C. The rate constants of substitution and the equilibrium constants for a two-step protonation for the dimeric and chelate complexes are calculated. Their solubility in 1 M KCl at 75°C; is determined. The unit cell parameters for [Pt2(NH3)4(-C2O4)2] are determined: a = 3.858 Å, b = 10.704 Å, c = 6.795 Å, = 94.35°. The IR spectra of [Pt(NH3)2C2O4], [Pt2(NH3)4(-C2O4)2], and their deuterated analogs are studied.  相似文献   

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