Library

feed icon rss

Your email was sent successfully. Check your inbox.

An error occurred while sending the email. Please try again.

Proceed reservation?

Export
  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für anorganische Chemie 622 (1996), S. 380-384 
    ISSN: 0044-2313
    Keywords: Ammonium ; rubidium ; caesium hydrogen sulfate ; crystal structure ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Synthesis and Structure of Hydrogen Sulfates of the Type M(HSO4)(H2SO4) (M = Rb, Cs and NH4)From the binary systems M2SO4/H2SO4 (M = Rb, Cs, NH4), three new hydrogen sulfates of the type M(HSO4)(H2SO4) could be synthesized and structural characterized. The rubidium and caesium compounds are isotypic whereas NH4(HSO4)(H2SO4) is topologically very similar to both. All three compounds crystallize with nearly identical cell parameters [Rb: a = 7.382(1), b = 12.440(2), c = 7.861(2), β = 93.03(3); Cs: a = 7.604(1), b = 12.689(2), c = 8.092(2), β = 92.44(3); NH4: a = 7.521(3), b = 12.541(5), c = 7.749(3), β = 92.74(3)], in the monoclinic space group P21/c, There exist two kinds of SO4-tetrahedra: HSO4- anions (S1) and H2SO4-molecules (S2). The HSO4- anions form hydrogen bridged zigzag chains. In the case of the Rb and Cs compounds, the H2SO4 molecules connect these chains forming double layers. The metal atoms are coordinated by 9 O-atoms with M—O-distances of 2.97 - 3.39 Å (Rb) and 3.13 - 3.51 Å (Cs). In the ammonium compound additional hydrogen bonds are formed originating from the NH4+ cation. This finally leads to the formation of S2—NH4+ chains (parallel to the S1 chains) as well as to a three-dimensional connection of both kinds of chains.
    Notes: Aus den binären Systemen M2SO4/H2SO4 (M = Rb, Cs, NH4) konnten drei neue Hydrogensulfate des Typs M(HSO4)(H2SO4) synthetisiert und strukturell charakterisiert werden. Die Rubidium- und Caesiumverbindungen sind isotyp, während NH4(HSO4)(H2SO4) zu beiden topologisch verwandt ist. Alle drei Verbindungen kristallisieren mit nahezu identischen Gitterkonstanten [Rb: a = 7,382(1), b = 12,440(2), c = 7,861(2), β = 93,03(3); Cs: a = 7,604(1), b = 12,689(2), c = 8,092(2), β = 92,44(3); NH4: a = 7,521(3), b = 12,541(5), c = 7,749(3), β = 92,74(3)], Raumgruppe P21/c. Es liegen SO4-Tetraeder in Form von HSO4--Anionen (S1) und H2SO4-Molekülen (S2) vor, wobei die HSO4--Anionen über Wasserstoffbrückenbindungen Zick-Zack-Ketten ausbilden. In der Struktur der Rb- und Cs-Hydrogensulfat-Dihydrogensulfate verbinden H2SO4-Moleküle diese Ketten zu Doppelschichten. Die Metallatome sind von 9 O-Atomen mit den Abständen 2,97 - 3,39 Å (Rb) und 3,13 - 3,51 Å (Cs) koordiniert. In der Ammoniumverbindung liegen ausgehend von NH4+-Ionen zusätzliche Wasserstoffbrücken vor. Das führt zur Ausbildung von S2—NH4+-Ketten (parallel zu den S1-Ketten) sowie zur räumlichen Vernetzung beider Sorten von Ketten.
    Additional Material: 1 Ill.
    Type of Medium: Electronic Resource
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
Close ⊗
This website uses cookies and the analysis tool Matomo. More information can be found here...