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  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Chemie in unserer Zeit 5 (1971), S. 33-40 
    ISSN: 0009-2851
    Keywords: Chemistry ; Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Additional Material: 8 Ill.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 95 (1962), S. 1683-1686 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Hexafulminatoferrat (II) wird in alkalischer Lösung durch Eisen (II)-hydroxid zu Hexacyanoferrat(II) reduziert. Aus radiochemischen Untersuchungen wird abgeleitet, daß bei der Reduktion keine Lösung der Komplexbindung erfolgt. Demnach ist im Hexafulminatoferrat (II) die C-N-O-Gruppe über den Kohlenstoff an das Zentralmetall gebunden.
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  • 3
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 103 (1970), S. 3735-3736 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 103 (1970), S. 2807-2813 
    ISSN: 0009-2940
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: UBr5 and the Uranium(IV)-uranium(VI) Compound UOBr3·2.5 DMAA previous report of the preparation of uranium pentabromide could not be substantiated. The pentabromide can, however, be readily prepared by the reaction of uranium metal or uranium tetrabromide with either boiling bromine or, at room temperature, with bromine and catalytic amounts of acetonitrile. UBr5 is isostructural with α-PaBr5. In the solid state and in solution UBr5 exhibits typical uranium(V) spectra; the solution spectrum in CH2Cl2/HBr is characteristic of uranium(V) in octahedral coordination (probably „HUBr6“). Dissolution of UBr5 in acetone and addition of N,N-dimethylacetamid (DMA) yields UOBr3·2.5 DMA. The infrared and electronic spectra show that this compound contains both uranium(IV), and uranium(IV), the latter as the uranyl group. Apart from the actinide oxides and halides, UOBr3·2.5 DMA is the first coordination compound containing an actinide element in two different oxidation states.
    Notes: Das bisher unbekannte Uranpentabromid kann in einfacher Weise durch Umsetzung von Uran order Urantetrabromid entweder mit siedendem Brom oder mit Brom und katalystischen Mengen Acetonitril bei Raumtemperatur dargestellt werden. UBr5 ist isotyp mit α- PaBr5 Die Festkörper -und Lösungs- Elektronenspektren von UBr5 sind typische Uran(V)-Spektren, nach denen in der Lösung von UBr5 in Methylenchlorid/Bromwasserstoff oktaedrisch konfiguriertes Uran(V) vermutlich in Form von „HUBr6“ vorliegt. Aus der Lösung von UBr5 in Aceton erhält man durch Zusatz von N.N-Dimethyl-acetamid (DMA) UOBr3·2.5 DMA, in dem nach IR-und Elektronenspektren Uran(VI) als Uranyl und Uran(IV)vorliegen. Außerhalb des Bereiches der oxidischen Phasen und der Halogenide ist UOBr3·2.5 DMA die erste Komplexverbindung, die ein Actiniden-Element in zwei verschiedenen Oxydations- stufen enthält.
    Additional Material: 2 Ill.
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  • 5
    ISSN: 1434-1948
    Keywords: Conducting materials ; Charge-transfer complexes ; Radical-anion salts ; Alloyed ligands ; Crystal structures ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The new members of the series of 2,5-disubstituted DCNQIs, 1d (Cl/OMe), 1e (Br/OMe), 1j (Cl/I), 1k (Br/I), 1l (I/I), form conducting charge-transfer complexes with TTF (tetrathiofulvalene) which are comparable to known DCNQI/TTFs. From these DCNQIs highly conducting radical-anion salts [2-X, 5-Y-DCNQI]2M (M = Li, Na, K, NH4, Tl, Rb, Ag, Cu) can also be prepared either from the DCNQIs and MI (not AgI), on a metal wire (Ag, Cu), or by electrocrystallization (M = Tl, Ag,Cu). For better crystals a method using periodical switching between reduction and partial oxidation has been developed. With CF3 (large, strongly electron-attracting) as the substituent in DCNQIs 1m (OMe/CF3) and 1n (Me/CF3), conducting TTF complexes remain whereas only 1n yields an insulating copper salt. DCNQI-Cu salts with high conductivities are obtained with alloys containing two or three different DCNQIs. The temperature-dependent conductivities of DCNQI-M salts (other than copper) are similar to those of metal-like semiconductors. All new DCNQI-Cu salts are metallic [M] down to low temperatures, except [1d (Cl/OMe)]2Cu which undergoes a sharp phase transition to an insulating state[M → I]. By variation of the ligands or their ratios in conducting alloys of DCNQI-Cu salts temperature-dependent conductivities can be tuned from M → I to M. In addition, alloying three ligands produced for the first time a radical salt with temperature-independent conductivity from 5 to 300 K. Most remarkably, alloys of the type [(2,5-Me2DCNQI)m] Cu/[{2,5-(CD3)2-DCNQI}n]2Cu which exhibit a sharp M → I phase transition on further cooling reenter the conducting state by an I → M transition, with changes of ca. 108 Scm-1 both ways. For the first time in the field of organic metals crystal structures of DCNQI-copper salts have been determined by X-ray powder diffraction methods and refined by Rietveld analysis. Unit cell data, coordination angles and distances of the π planes are in excellent agreement with the single-crystal X-ray data. However, bond lengths and angles of the ligands are to be less accurate. This powder method proves to be most valuable if only microcrystalline material is available.Supporting information for this article is available on the WWW under http://www.wiley-vch.de/contents/jc_2005/1999/98247_s.pdf or from the author.
    Additional Material: 11 Ill.
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  • 6
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für die chemische Industrie 83 (1971), S. 294-295 
    ISSN: 0044-8249
    Keywords: Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
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  • 7
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Angewandte Chemie International Edition in English 10 (1971), S. 274-275 
    ISSN: 0570-0833
    Keywords: Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Type of Medium: Electronic Resource
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  • 8
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für anorganische Chemie 341 (1965), S. 172-182 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: With a view to simplicity, safe handling and the possibility of determining smaller amounts of technetium compounds, an X-ray fluorescent analytical method, for their measurement in solution, was developed using a special cuvette. The analytical conditions were established by means of the nonradioactive neighbouring element molybdenum which is easier to handle. At concentrations of less than 1,0 mg Tc and Mo, respectively, per ml there are no interelement effects due to the other components of the compound to be analysed. In this range it is therefore possible to determine compounds which are soluble in water or dioxane, without chemical decomposition, and to use aqueous solutions of pertechnetate and molybdate, respectively, or solutions of, e. g., technetium and molybdenum carbonyl, respectively, in dioxane as standards without corrections. The detection limit is about 4 μg Tc (Mo). The standard deviation is ± 0.4%.
    Notes: Für die Analyse des Technetiums wurde im Hinblick auf eine möglichst einfache und damit gefahrlose Handhabung sowie die Möglichkeit einer Bestimmung auch kleiner Technetiummengen ein röntgenfluoreszenzanalytisches Verfahren für die Messung in Lösung ausgearbeitet. Zur Vermeidung radioaktiver Kontaminationen wurde eine spezielle Küvette konstruiert. Die Analysenbedingungen wurden an Hand des einfacher zu handhabenden nicht radioaktiven Nachbarelementes Molybdän ermittelt. Bei Konzentrationen von weniger als 1,0 mg Tc bzw. Mo/ml treten keine von anderen Verbindungsbestandteilen herrührenden Interelementeffekte auf, so daß man in diesem Bereich wasser- bzw. dioxanlösliche Verbindungen ohne vorhergehenden chemischen Aufschluß bestimmen und sich da bei ohne Korrekturen auf eine wäßrige Pertechnetat- bzw. Molybdat-Lösung, bzw. auf eine Lösung von z. B. Technetium- bzw. Molybdäncarbonyl in Dioxan als Standard beziehen kann. Die Nachweisgrenze liegt bei 4 μg Tc bzw. Mo. Die Standardabweichung beträgt · 0,4.
    Additional Material: 6 Ill.
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