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  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für anorganische Chemie 622 (1996), S. 85-94 
    ISSN: 0044-2313
    Keywords: Alkaline Earth Silicides ; Zintl Anions of Silicon ; SrMgSi2 ; Mg2Sr11Si10 ; CaSi ; BaSi ; SrSi ; Crystal Structures ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Can One Design Zintl Anions? Contributions from the System Sr/Mg/Si to the Topic Si2-Two novel ternary silicides, SrMgSi2 (Pnma, Z = 8, a = 14.374, b = 4.4512, c = 11.398 Å) and Sr11Mg2Si10, (C2/m, Z = 2, a = 19.744, b = 4.754, c = 14.84 Å, β = 112.47°) have been established in the ternary system Sr/Mg/Si. The compounds are synthezised from the elements under inert conditions. Single crystal structure determinations yield the novel Zintl anions, ∞1[Si(Si3)8-] a branched chain, and the zig-zag chain piece [Si8]18-, both of which exhibit significant correlations and differences with respect to the linear chains in ∞1[Si-] in the binary MSi phases (M = Ca, Sr, Ba) which have been reinvestigated in this context. The variations of the Zintl anions can be traced back mainly to the differences of Mg—Si and Sr—Si interactions. From these findings a functional relationship between Mg content and the formation of endgroup members in Zintl anions of silicon is anticipated.
    Notes: Es wird über Darstellung und Strukturen neuer ternärer Silicide aus dem System Sr/Mg/Si berichtet. Zwei neue Verbindungen SrMgSi2 (Pnma, Z = 8, a = 14,374, b = 4,4512, c = 11,394 Å) und Sr11Mg2Si10 (C2/m, Z = 2, a = 19,744, b = 4,754, c = 14,84 Å, β = 112,47°) wurden aus den Elementen unter Inertbedingungen synthetisiert. Sie können als Abkömmlinge der binären Monosilicide MSi (M = Ca, Sr, Ba) verstanden werden, die in diesem Zusammenhang noch einmal genau untersucht wurden. Ihre Kristallstrukturen enthalten die neuartigen Zintlanionen ∞1[Si(Si3)8-], eine verzweigte Kette, und [Si818-] mit signifikanten Unterschieden zur linearen Kette ∞1[Si-] in den MSi-Phasen. Die Variationen der Zintlanionen können vor allem auf die unterschiedlichen Wechselwirkungen Mg—Si und Sr—Si zurückgeführt und damit ein funktioneller Zusammenhang zwischen dem Mg-Gehalt und der Endgruppenbildung in Zintlanionen von Si hergestellt werden.
    Additional Material: 6 Ill.
    Type of Medium: Electronic Resource
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