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Artikel 211 ChemInform Abstract: (BMIm) 4 (Sn 9 Se 20): Ionothermal Synthesis of a Selenidostannate with a 3D Open‐Framework Structure.
Enthalten in ChemInform Bd. 42, 2011, Nr. 44: no-no. 1 S.
Online Ressource
Artikel 212 ChemInform Abstract: Chalcogenide Clusters of Copper and Silver from Silylated Chalcogenide Sources
Enthalten in ChemInform Bd. 44, 2013, Nr. 29: no-no. 1 S.
Online Ressource
Artikel 213 ChemInform Abstract: Changes in the Structural Dimensionality of Selenidostannates in Ionic Liquids: Formation, Structures, Stability, and Photoconductivity.
Enthalten in ChemInform Bd. 44, 2013, Nr. 40: no-no. 1 S.
Online Ressource
Artikel 214 ChemInform Abstract: Controlling the Assembly of Chalcogenide Anions in Ionic Liquids: From Binary Ge/Se Through Ternary Ge/Sn/Se to Binary Sn/Se Frameworks.
Enthalten in ChemInform Bd. 44, 2013, Nr. 6: no-no. 1 S.
Online Ressource
Artikel 215 ChemInform Abstract: (CuSn 5 Sb 3) 2‐ } 2: A Dimer of Inhomogeneous Superatoms.
Enthalten in ChemInform Bd. 47, 2016, Nr. 48: no-no. 1 S.
Online Ressource
Artikel 216 ChemInform Abstract: Doped Semimetal Clusters: Ternary, Intermetalloid Anions (LnSn 7 Bi 7) 4‐ and (LnSn 4 Bi 9) 4‐ (Ln: La, Ce) with Adjustable Magnetic Properties.
Enthalten in ChemInform Bd. 43, 2012, Nr. 20: no-no. 1 S.
Online Ressource
Artikel 217 ChemInform Abstract: (EuSn 6 Bi 8) 4‐: A Mini‐Fullerane‐Type Zintl Anion Containing a Lanthanide Ion.
Enthalten in ChemInform Bd. 42, 2011, Nr. 15: no-no. 1 S.
Online Ressource
Artikel 218 ChemInform Abstract: Formation of (Bi 11) 3‐, a Homoatomic, Polycyclic Bismuth Polyanion, by Pyridine‐Assisted Decomposition of (GaBi 3) 2‐.
Enthalten in ChemInform Bd. 45, 2014, Nr. 29: no-no. 1 S.
Online Ressource
Artikel 219 ChemInform Abstract: Heterobimetallic Chalcogenidometallate Strands: Synthesis, Structure, Magnetism, and Conductivity.
Enthalten in ChemInform Bd. 43, 2012, Nr. 23: no-no. 1 S.
Online Ressource
Artikel 220 ChemInform Abstract: Ionic‐Radius‐Driven Selection of the Main‐Group‐Metal Cage for Intermetalloid Clusters (LnPb x Bi 14‐x) q‐ and (LnPb y Bi 13‐y) q‐ (x/q = 7/4, 6/3; y/q = 4/4, 3/3).
Enthalten in ChemInform Bd. 46, 2015, Nr. 14: no-no. 1 S.
Online Ressource


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