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January 15, 2024
Published Online: 2024-01-15
Published in Print: 2024-01-29
©2024 Walter de Gruyter GmbH, Berlin/Boston
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- The germanides ScTGe2 (T = Fe, Co, Ru, Rh) – crystal chemistry, 45Sc solid-state NMR and 57Fe Mössbauer spectroscopy
- A solid-state 171Yb NMR-spectroscopic characterization of selected divalent ytterbium intermetallics
- Modifying the valence phase transition in Eu2Al15Pt6 by the solid solutions Eu2Al15(Pt1−xT x )6 (T = Pd, Ir, Au; x = 1/6)
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- Expansion and adaptation of the M5B12O25(OH) structure type to incorporate di- and trivalent transition metal cations
- Synthesis and structure refinement of the zinc hydroxide boracite: Zn3B7O13(OH)
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Articles in the same Issue
- Frontmatter
- In this issue
- Research Articles
- The germanides ScTGe2 (T = Fe, Co, Ru, Rh) – crystal chemistry, 45Sc solid-state NMR and 57Fe Mössbauer spectroscopy
- A solid-state 171Yb NMR-spectroscopic characterization of selected divalent ytterbium intermetallics
- Modifying the valence phase transition in Eu2Al15Pt6 by the solid solutions Eu2Al15(Pt1−xT x )6 (T = Pd, Ir, Au; x = 1/6)
- Die Serie caesiumhaltiger Thioarsenate(V) der Lanthanoide vom Formeltyp Cs3Ln[AsS4]2 mit Ln = La–Nd und Sm
- Expansion and adaptation of the M5B12O25(OH) structure type to incorporate di- and trivalent transition metal cations
- Synthesis and structure refinement of the zinc hydroxide boracite: Zn3B7O13(OH)
- [Me3N(C6H3(CF3)2)][BF4] and [Me3N(C6H3(CH3)2)][BF4], as potential synthons for non-covalent supramolecular assembly