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  • 1
    ISSN: 0009-2940
    Keywords: Homo Diels-Alder reactions ; Cyclopropanetetracarbonitrile derivatives ; Barbaralane derivatives /Urazoles, polycyclic /6-Thiatricyclo[3.2.1.02.7]oct-3-ene 6,6-dioxide ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Reactions of Homobenzvalenes with 4-Phenyl-3H-1,2,4-triazole-3,5(4H)-dione, Tetracyanoethylene. Chlorosulfonyl Isocyanate, and Sulfur Dioxide. Several Concerted 1,4-Additions to a Vinylcyclopropane SubunitHomobenzvalene (le) and its derivatives 1f.g with an anellated four-membered ring reacted with 4-phenyl-3H-l,2,4-tri- azole3,5(4H)-dione (PTAD) to give the pentacyclic urazole 2e and its hexacyclic derivatives 2f, g, respectively. Tetracyano- ethylene (TCNE) and le in benzene afforded only the Diels- Alder adduct 5 of norcaradiene. In other solvents the homo Diels-Alder adduct 3a of le was formed as the main product together with some 5 and a small fraction of the cyclohexa- dienylcyclopropanetetracarbonitrile 4a. 5-Methylhomobenz- valene (lh) and TCNE in acetonitrile gave 3b and 4b in the ratio 10: 1. On treatment with TCNE, dihydrohomobenzvalene (6) was converted into 8, which is structurally related to 4. In contrast, tetracyc10[4.1.0.02,4.03,5]]heptane (7) and TCNE gave rise to the tetracyclic adduct 9 and a minor quantity of 5. Chlorosulfonyl isocyanate reacted with le to furnish mainly the N-(chlorosulfony1)imino ether 10 and the N-(chlorosulfonyl)-lactams 11 and 12a as well as a further isomer as byproducts. On heating, 10 rearranged to 12a. The Ksulfonyl chlorides 10, 11, and 12a were transformed to the N-unsubstituted compounds 16,15, and l7, respectively, by treatment with sodium sulfite/aqueous potassium hydroxide. In wet [D6]dimethyl- sulfoxide 10 was converted into a cycloheptatriene derivative (14) as well as the rearranged and hydrolyzed lactam 15, whereas 11 gave 15 exclusively. Exposure of le to sulfur dioxide yielded the 1,4 adduct 18 to the vinylcyclopropane subunit of le. Possible mechanisms of the reactions of the homobenzvalenes are discussed. In particular, the pathways to 3, 18, and at least to a fraction of 10 and 11 are considered to be concerted six-electron processes. - The structures of 4a and 10 have been established by X-ray analyses.
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  • 2
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für anorganische Chemie 613 (1992), S. 127-131 
    ISSN: 0044-2313
    Keywords: Pentastrontium chloridephosphate ; europium ; luminophors ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: On the Influence of Substitutions by Ions of the Same Charge on Luminescence of Pentastrontium Chloridephosphate Activated by Divalent EuropiumPowder materials of pentastrontium chloridephosphate activated by divalent europium and of substituted luminophors have been prepared by solid state reaction. Strontium was substituted partially by calcium, barium or cadmium. These luminophors crystallize in the hexagonal apatite structure. There are two crystallographical different sites for the cations. In addition to X-ray diffractograms, emission and excitation spectra and spectra of the diffuse reflection of the luminophors have been studied at room temperature and moreover the emission of the samples above 25°C. The cations affect size of the elementary cell and therefore the luminescence properties of the chloridephosphates activated by divalent europium. The luminescence arises from transitions between 4f65d and 4f7 configurations of the Eu11 ion.
    Notes: Europium(II)-aktiviertes Pentastrontiumchloridphosphat und die durch partielle Substitution des Strontiums durch Calcium, Barium oder Cadmium erhältlichen Leuchtstoffe ließen sich durch Festkörperreaktion in Pulverform präparieren. Sie kristallisieren in der hexagonalen Apatitstruktur mit zwei kristallographisch unterschiedlichen Plätzen für die Kationen. Neben Röntgendiffraktogrammen wurden bei Raumtemperatur Emissions- und Anregungsspektren sowie Spektren der diffusen Reflexion der Leuchtstoffe aufgenommen und ausgewertet und oberhalb 25°C die Temperaturabhängigkeit des Emissionsvermögens der Proben untersucht. Die Kationen beeinflussen die Größe der Elementarzelle und damit die lumineszenzoptischen Eigenschaften der Europium(II)-aktivierten Chloridphosphate. Die Lumineszenz resultiert aus den Übergängen von der 4f65d- in die 4f7-Konfiguration des Eu11-Ions.
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  • 3
    ISSN: 0044-2313
    Keywords: Titanium Complexes ; Aminoiminophosphoranes ; Sulfodiimides ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: New Complexes of Titanium with Silylated Aminoiminophosphorane and Sulfodiimide LigandsTiCl4 forms a 1 : 1 adduct with S(NSiMe3)2 to give compound 1 and with Me2S(NSiMe3)2 compound 2, respectively. The reaction of TiCl4 with Ph2S(NSiMe3)2 yields the disubstituted compound Ph2S(NTiCl3)2X4THF 3 which crystallizes in space group P1. Reaction of TiCl4 with (Me3Si)2NPPh2NPPh2NSiMe3 leads to an exchange of one silyl group with a TiCl3 moiety. In this molecule the Ti-atom is only four-coordinated. The compound crystallizes in the space group P21/c. No chelate complexes are formed by reactions of CpTiCl3, Cp*TiCl3 and Cp*TiF3 with Ph2P(NSiMe3)2H, this is shown by X-ray structural analysis of Cp*TiCl2NPPh2NHSiMe3 6. Crystals of 6 are obtained in space group P1.
    Notes: TiCl4 bildet mit S(NSiMe3)2 und Me2S(NSiMe3)2 ein 1 : 1 Addukt (1, 2), während Ph2S(NSiMe3)2 die disubstituierte Verbindung Ph2S(NTiCl3)2X4 THF 3 ergibt, die in der Raumgruppe P1 kristallisiert. Setzt man TiCl4 mit (Me3Si)2NPPh2NPPh2NSiMe3 um, so wird die imidische Silylgruppe gegen eine TiCl3-Einheit ausgetauscht. Das Molekül, in dem das Ti-Atom nur vierfach koordiniert ist, bildet in der Raumgruppe P21/c Einkristalle. In den Komplexen von CpTiCl3, Cp*TiCl3 und Cp*TiF3 mit Ph2P(NSiMe3)2H erfolgt ebenfalls keine Chelatisierung wie die Einkristall-Röntgenstrukturanalyse von Cp*TiCl2NPPh2NHSiMe3 6 belegt. Verbindung 6 kristallisiert in der Raumgruppe P1.
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