1998
DOI: 10.1002/(sici)1521-3749(199804)624:4<561::aid-zaac561>3.0.co;2-4
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K6Sn23Bi2 und K6Sn25 - zwei Phasen mit chiraler Clathrat-Struktur und ihr Verhalten gegenüber Ethylendiamin

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Cited by 41 publications
(24 citation statements)
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“…The bond lengths in the 46-framework structure are longer than those in the 44 structure. This is due to occupation of antibonding orbitals in K 8 that this type of clathrate is not exclusively the domain of Sn compounds, 7,21,22 suggesting that the results here may be of more general utility. Type-III clathrates crystallize in the simple cubic P4 1 32 ͑Ref.…”
Section: B K 8 Sn 25mentioning
confidence: 78%
“…The bond lengths in the 46-framework structure are longer than those in the 44 structure. This is due to occupation of antibonding orbitals in K 8 that this type of clathrate is not exclusively the domain of Sn compounds, 7,21,22 suggesting that the results here may be of more general utility. Type-III clathrates crystallize in the simple cubic P4 1 32 ͑Ref.…”
Section: B K 8 Sn 25mentioning
confidence: 78%
“…Eine sta È rkere Verzerrung der Geru È statome um K2 in K 6 Sn 25 im Vergleich zu K 6 Sn 23 Bi 2 und Ba 6 In 4 Ge 21 kann nicht festgestellt werden. Im Falle der hier vorliegenden Festko È rper kann eine Stuktur aus unverzerrten Pentagondodekaedern schon aus geometrischen Ûberlegungen nicht kommensurabel sein [4,15].…”
Section: Realraumdarstellungenunclassified
“…In dieser Arbeit wird nun am Beispiel des Clathrats K 6 Sn 23 Bi 2 [4], welches eine elektronenpra È zise Zintl- 17 ist, und des bina È ren Vertreters K 6 Sn 25 [4] mit gleichem Strukturtyp [5], welcher gegenu È ber der terna È ren Phase einen Elektronenmangel aufweist, gezeigt, daû die Wechselwirkungen zwischen freien Elektronenpaaren in Zintl-Phasen einen entscheidenden Einfluû auf die elektronische Struktur haben ko È nnen. Insbesondere wird untersucht, warum es fu È r diesen Strukturtyp auch Vertreter gibt, die weniger Elektronen besitzen, als nach der (8-N)-Regel zu erwarten wa Ère.…”
Section: Introductionunclassified
See 1 more Smart Citation
“…The chiral clathrate structure, originally discovered as the structure of Ba 6 In 4 Ge 21 [17], has been identified to form several silicon and germanium compounds, generally in combination with barium, as in the binaries Ba 6 Si 25 [18] and Ba 6 Ge 25 [19]. Tin-based chiral clathrates can be formed with alkali metals, for example K 6 Sn 25 [20]. A member of the chiral space group #213 (P4 1 23), the chiral clathrate structure features polyhedral cages arranged in a three-dimensional network of interlinked helices ( Figure 3).…”
mentioning
confidence: 99%