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  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 127 (1994), S. 67-71 
    ISSN: 0009-2940
    Keywords: Gallium compounds ; Heterocubanes, gallium-phosphorus ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Synthesis and Characterization of Gallium-Phosphorus HeterocubanesThe reaction of iPrGaCl2 with tBuPLi2 in Et2O at -78°C gives the heterocubane [iPrGaP(tBu)]4 (1) by using the “dilution principle”. {(MesGa)3[GaP(H)tBu][P(tBu)]4} (2) was formed, when three equivalents of MesGaCl2 and one equivalent of GaCl3 in THF at -78°C were treated with 5 equivalents of tBuPLi2. Compounds 1 and 2 were characterized by NMR, IR, and MS techniques as well as by X-ray structure determination. The heterocubane molecules of 1 are disordered in the crystal; every atom site of the central cubical frame work is occupied by gallium and phosphorus atoms (occupation factor 0.5). The structure of 2 contains two crystallographically unique molecules, which are not disordered because of the additional P(H)tBu groups.
    Additional Material: 3 Ill.
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  • 2
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 126 (1993), S. 1579-1585 
    ISSN: 0009-2940
    Keywords: Gallium compounds ; Gallane, tribenzyl- ; Gallane, dibenzyl(benzyloxy)- ; Gallate, dibenzyldifluoro- ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Benzylgallium Compounds. Coordination of Benzyl Ligands in Cs[(PhCH2)2GaF2]Dissolving (PhCH2)3Ga (1) in THF yields the complex [(PhCH2)3Ga · THF] (2). Reaction of 1 with dry oxygen in toluene at -78°C leads to [(PhCH2)2GaOCH2Ph]2 (3), which is also formed from 1 and PhCH2OH. The salts K[(PhCH2)2GaF2] (5) and Cs[(PhCH2)2GaF2] (6) were obtained from (PhCH2)2GaCl (4) and KF or CsF, respectively, in acetonitrile. Crystal structures were determined for 2, 3, 6 and {[(PhCH2)2GaCl]2 · toluene} (7). Gallane 2 is a chiral monomeric complex in the solid state. The benzyl substituents create a propeller-shaped molecule with a counterclock-wise orientation of the ligands. 3 and 7 are crystallizing as centrosymmetrical dimers with Ga2X2 rings (X=O, Cl). 6 consists in infinite chains of {Cs[(PhCH2)2GaF2]}2 units with Cs-F contacts. In addition to the Cs-F interaction, the coordination of each Cs+ ion by two phenyl rings in a η6- fashion is observed.
    Additional Material: 6 Ill.
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  • 3
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 129 (1996), S. 355-359 
    ISSN: 0009-2940
    Keywords: Aluminium compounds ; Gallium compounds ; Indium compounds ; Trimethylfluoro metalates ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Cesium-Fluorine Four-Membered Rings as Structural Motive in Cesium Triorganofluoro Metalates of Group 13The reactions of AlMe3, GaMe3, and InMe3 with CsF in acetonitrile furnish the corresponding trimethylfluoro metalates Cs[Me3MF] (1: M = Al, 2: M = Ga, 3: M = In). The salt-like compounds 1 - 3 were characterized by NMR, IR, and MS techniques as well as by X-ray structure analysis. Cs2F2 four-membered rings are the structure-dominating units in all three compounds. Compound 1 consists of puckered layers of weakly associated Cs2F2 rings parallel to (100), while the four-membered rings in 2 form infinite ladder-type chains. The Cs-F rings in 3 build up a heterocubane with a Cs4F4 core by ring stacking.
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  • 4
    ISSN: 0044-2313
    Keywords: Crown ether complexes of Sb3+ and Bi3+ ; synthesis ; IR spectra ; 121Sb Mössbauer spectrum ; X-ray structures ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: [Sb(12-Crown-4)2(CH3CN)][SbCl6]3 and [Bi(12-Crown-4)2(CH3CN)][SbCl6]3, first Trications of Antimony(III) and Bismuth(III)The crown ether complexes [M(12-crown-4)2(CH3CN)][SbCl6]3 with M = Sb and Bi are formed by the reaction of antimony trichloride and bismuth trichloride, respectively, with antimony pentachloride in acetonitrile solution in the presence of 12-crown-4. They form colourless, moisture sensitive crystals, which were characterized by X-ray structure determinations and by IR spectroscopy. The complex with M = Sb was also characterized by 121Sb Mössbauer spectroscopy.Both complexes crystallize isotypically in the orthorhombic space group Pbcn with four formula units per unit cell.M = Sb: 3 483 observed unique reflections, R = 0.038. M = Bi: 2 958 observed unique reflections, R = 0.036. The compounds consist of SbCl6- ions and trications [M(12-crown-4)2(CH3CN)]3+, in which the M3+ ions are ninefold coordinated by the eight oxygen atoms of the crown ether molecules and by the nitrogen atom of the acetonitrile molecule. The lone pair of the M3+ ions has no steric effect.
    Notes: Die Kronenetherkomplexe [M(12-Krone-4)2(CH3CN)][SbCl6]3 mit M = Sb und Bi entstehen durch Reaktion von Antimontrichlorid bzw. Bismuttrichlorid mit Antimonpentachlorid in Acetonitrillösung in Gegenwart von 12-Krone-4. Sie bilden farblose, feuchtigkeitsempfindliche Kristalle, die wir durch kristallographische Strukturanalysen und durch die IR-Spektren charakterisiert haben. Von dem Komplex mit M = Sb wurde ein 121Sb-Mößbauer-Spektrum aufgenommen.Beide Komplexe kristallisieren isotyp in der orthorhombischen Raumgruppe Pbcn mit vier Formeleinheiten pro Elementarzelle. M = Sb: 3 483 beobachtete unabhängige Reflexe, R = 0,038. M = Bi: 2 958 beobachtete unabhängige Reflexe, R = 0,036. Die Verbindungen enthalten neben den SbCl6--Ionen Trikationen [M(12-Krone-4)2(CH3CN)]3+, in denen die M3+-Ionen durch die acht O-Atome der beiden Kronenethermoleküle und durch das N-Atom des Acetonitrilmoleküls neunfach koordiniert sind. Das freie Elektronenpaar an den M3+-Ionen bleibt ohne sterische Wirksamkeit.
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  • 5
    ISSN: 0044-2313
    Keywords: Phosphaneimine Complexes of Zinc and Cobalt ; Synthesis ; IR spectra ; Crystal Structures ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Syntheses and Crystal Structures of the Phosphaneimine Complexes MCl2(Me3SiNPMe3)2 with M = Zn and Co, and CoCl2(HNPMe3)2The molecular complexes MCl2(Me3SiNPMe3)2 (M = Zn, Co) have been prepared by the reaction of the dichlorides of zinc and cobalt with Me3SiNPMe3 in CH3CN and CH2Cl2, respectively, whereas the complex CoCl2(HNPMe3)2 has been prepared by the reaction of CoCl2 with NaF in boiling acetonitrile in the presence of Me3SiNPMe3. All complexes were characterized by IR spectroscopy and by crystal structure determinations. The complexes MCl2(Me3SiNPMe3)2 crystallize isotypically.ZnCl2(Me3SiNPMe3)2: Space group P212121, Z = 4, 2677 observed unique reflections, R = 0.024. Lattice dimensions at -70°C: a = 1243.6; b = 1319.0; c = 1464.7 pm.CoCl2(Me3SiNPMe3)2: Space group P212121, Z = 4, 3963 observed unique reflections, R = 0,071. Lattice dimensions at -80°C: a = 1236.3; b = 1317.4; c = 1457.6 pm.CoCl2(HNPMe3)2 · CH2Cl2: Space group Pbca, Z = 8, 1354 observed unique reflections, R = 0.055. Lattice dimensions at -80°C: a = 1247.3; b = 998.4; c = 2882.4 pm.All complexes have monomeric molecular structures, in which the metal atoms are coordinated in a distorted tetrahedral fashion by the two chlorine atoms and by the nitrogen atoms of the phosphaneimine molecules.
    Notes: Die Molekülkomplexe MCl2(Me3SiNPMe3)2 (M = Zn, Co) entstehen aus den wasserfreien Dichloriden von Zink und Cobalt mit Trimethylsilyl-trimethylphosphanimin in Dichlormethan bzw. Acetonitril, während der Trimethylphosphanimin-Komplex CoCl2(HNPMe3)2 aus CoCl2 mit Natriumfluorid in Gegenwart von Me3SiNPMe3 in siedendem Acetonitril gebildet wird. Die Verbindungen werden durch ihre IR-Spektren und durch Kristallstrukturanalysen charakterisiert. Die Komplexe MCl2(Me3SiNPMe3)2 (M = Zn, Co) sind miteinander isotyp.ZnCl2(Me3SiNPMe3)2: Raumgruppe P212121, Z = 4, Strukturlösung mit 2677 beobachteten unabhängigen Reflexen, R = 0,024. Gitterkonstanten bei -70°C: a = 1243,6; b = 1319,0; c = 1464,7 pm.CoCl2(Me3SiNPMe3)2: Raumgruppe P212121, Z = 4, Strukturlösung mit 3963 beobachteten unabhängigen Reflexen, R = 0,071. Gitterkonstanten bei -80°C: a = 1236,3; b = 1317,4; c = 1457,6 pm.CoCl2(HNPMe3)2 · CH2Cl2: Raumgruppe Pbca, Z = 8, Strukturlösung mit 1354 beobachteten unabhängigen Reflexen, R = 0,055. Gitterkonstanten bei -80°C: a = 1247,3; b = 998,4; c = 2882,4 pm.Alle Komplexe haben monomere Molekülstrukturen, in denen die Metallatome verzerrt tetraedrisch von den beiden Chloratomen und den N-Atomen der beiden Phosphaniminmoleküle koordiniert sind.
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