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  • IR Spectra  (5)
  • IR spectrum  (3)
  • i.r. spectra  (3)
  • Nitrido ligand  (2)
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  • 11
    ISSN: 0044-2313
    Keywords: Molybdenum ; Tungsten ; Halogenonitrosyl Complexes ; Syntheses ; IR Spectra ; Crystal Structure ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Halogeno-Nitrosyl Complexes of Molybdenum and Tungsten. Crystal Structures of [Na2(15-Crown-5)2(CH3CN)][MoCl4(NO)2] and [Na(15-Crown-5)]2[MoF4Cl(NO)]MoCl2(NO)2 and WCl2(NO)2, respectively, react with excess sodium fluoride in acetonitrile at room temperature and in the presence of 15-crown-5 to give crystalline mixtures, which consist of the title compounds, respectively of [Na(15-crown-5)]2[WCl4(NO)2] and [Na(15-crown-5)]2[WF4Cl(NO)], and which can be separated by selection. The complexes are characterized by their i.r. spectra, the molybdenum compounds additionally by crystal structure determinations.[Na2(15-crown-5)2(CH3CN)][MoCl4(NO)2]: Space group P21, Z = 2, 5415 independent unique reflexions, R = 0.039. Lattice dimensions at -10°C: a = 984.3, b = 1231.1, c = 1483.0 pm, β = 105.67°. The compound consists of cations [Ne(l5-crown-5)(CH3CN)]+, in which the sodium ion is surrounded by the five O-atoms of the crown ether and by the N-atom of the acetonitrile molecule, as well as of anions, which form an ion pair {Na(15-crown-5)[MoCl4(NO)2]}-. In the in pairs the sodium ion is coordinated by the five oxygen atoms of the crown ether and by two chlorine atoms of the [MoCI4(NO)2]2- unit. The nitrosyl ligands take the cis-position a t the molybdenum atom which is in a distorted octahedrally fashion.[Na(15-crown-5)]2[MoF4Cl(NO)]. Space group C2/c, Z = 4, 1933 independent unique reflexions, R = 0.078. Lattice dimensions at -7O°C: D : 1.585.8, b = 1171.5, c = 1771.5 pm, β = 114.91°. The compound forms an ion triple, in which the sodium ions are linked to five oxygen atoms each of the crown ether molecules, and to two F-atoms of the [MoF4Cl(NO)]2- unit. The F-atom which is arranged in trans-position to the nitrosyl ligand coordinates with both sodium ions; thus an unusual T-shaped arrangement results for this F-atom. The sole terminal F-Atom and the Cl-atom are disordered in two positions.
    Notes: MoCl2(NO)2 bzw. WCl2(NO)2 reagieren mit überschüssigem Natriumfluorid in Acetonitril bei R.T. und Anwesenheit von 15-Krone-5 zu Kristallgemischen, die aus den Titelverbindungen bzw. aus [Na(15-Krone-5)]2[WCl4(NO)2] und [Na(15-Krone-5)]2[WF4Cl(NO)] bestehen, und die sich durch Auslesen trennen lassen. Die Komplexe werden durch ihre IR-Spektren, die Molybdänverbindungen zusätzlich durch Kristallstrukturanalysen charakterisiert.[Na2(15-Krone-5)2(CH3CN)][MoCl4(NO)2]: Raumgruppe P21, Z = 2, 5415 unabhängige beobachtete Reflexe, R = 3,9%. Gitterabmessungen bei -10°C: a = 984,3; b = 1 251,1; c = 1 483,0 pm, β = 105,67°. Die Verbindung besteht aus Kationen [Na(15-Krone-5)(CH3CN)]+, in denen das Natriumion von den fünf O-Atomen des Kronenethers und von dem N-Atom des Acetonitrilmoleküls umgeben ist, sowie aus Anionen, die ein Ionenpaar {Na(15-Krone-5)[MoCl4(NO)2]}- bilden. In ihnen ist das Natriumion durch die fünf O-Atome des Kronenethers und durch zwei Chloratome der [MoCl4(NO)2]2--Einheit koordiniert. Die Nitrosylliganden nehmen die cis-Positionen am verzerrt oktaedrisch koordinierten Molybdänatom ein.[Na(15-Krone-5)]2[MoF4Cl(NO)]: Raumgruppe C2/c, Z = 4, 1933 unabhängige beobachtete Reflexe, R = 7,8%. Gitterabmessungen bei -70°C: a = 1 585,8; b = 1 171,2; c = 1 771,5 pm; β = 114,91°. Die Verbindung bildet ein Ionentripel, in dem die Natriumionen mit je fünf O-Atomen der Kronenethermoleküle und mit zwei F-Atomen der [MoF4Cl(NO)]2--Einheit verbunden sind. Das in trans-Position zum Nitrosylliganden angeordnete F-Atom koordiniert mit beiden Natriumionen, so daß für dieses F-Atom eine ungewöhnliche T-förmige Anordnung resultiert. Das einzige terminal gebundene F-Atom und das Cl-Atom sind in zwei Positionen fehlgeordnet.
    Additional Material: 5 Ill.
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  • 12
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für anorganische Chemie 622 (1996), S. 1205-1208 
    ISSN: 0044-2313
    Keywords: Osmium Nitridotrichloride ; synthesis ; IR spectrum ; magnetic susceptibility ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Osmium Nitridotrichloride, OsNCl3OsNCl3 was prepared by the reaction of (NH4)2[OsNCl5] with chlorine at 300°C, forming a black, X-ray amorphous moisture sensitive, paramagnetic powder which was characterized by IR spectroscopy and measurement of the magnetic susceptibility in the range of 5-300 K.
    Notes: OsNCl3 wird als schwarzes, röntgenamorphes, feuchtigkeitsempfindliches paramagnetisches Pulver durch Reaktion von (NH4)2[OsNCl5] mit Chlor bei 330°C hergestellt und IR-spektroskopisch sowie durch magnetische Suszeptibilitätsmessungen im Bereich von 5-300 K charakterisiert.
    Additional Material: 3 Ill.
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  • 13
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Angewandte Chemie International Edition in English 31 (1992), S. 955-978 
    ISSN: 0570-0833
    Keywords: Transition metals ; Nitrido ligand ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: In the past decade new syntheses and numerous structural determinations have enlivened studies in the still relatively young field of nitrido-transition-metal complexes. Aside from the terminal function of the nitrido ligand M≡N:, this group also occurs as linear μ2-bridging ligand in symmetric and asymmetric coordination; examples are known with almost right-angled bridge function; and, finally, it also functions as μ3-bridging ligand. Accordingly, the fresh impulses given to synthetic chemistry by nitrido complexes are also many-sided: such complexes are used, inter alia, for the preparation of phosphaniminato and thionitrosyl complexes as well as for the synthesis of metallaheterocycles of the type MN3S2 and MN3P2 with delocalized π-systems. In technetium chemistry complexes with terminal nitrido group are employed as radiopharmaceuticals, and, owing to the strong trans influence of the M≡N: group, nitrido complexes of molybdenum are suitable as catalysts in olefin metathesis. Finally, nitrido complexes are also of wide interest in theoretical studies.
    Additional Material: 38 Ill.
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