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1. Recent progress in the laser microprinting of semiconductors and metals

2. Binary Zintl Anions Involving Group 13–15 (Semi-)Metal Atoms, and the Relationship of Their Structures to Electron Count

7. Synthesis of the (Sn4Bi4)2− Anion by Mild Oxidation of (Sn2Bi2)2−.

9. Binary and Ternary Intermetalloid Clusters

16. [M@Sn14–xSbx]q−(M = La, Ce, or U; x= 6–8; q= 3, 4): Interaction of 4f or 5f Metal Ions with 5p Metal Atoms in Intermetalloid Clusters

17. Binary Zintl Anions Involving Group 13–15 (Semi-)Metal Atoms, and the Relationship of Their Structures to Electron Count.

18. Cover Feature: Synthesis of the (Sn4Bi4)2− Anion by Mild Oxidation of (Sn2Bi2)2− (Z. Anorg. Allg. Chem. 4/2024).

21. Effect of La3+on the Formation of Endohedral Zintl Clusters Featuring In/Bi Shells

28. Synthese, Charakterisierung und quantenchemische Studien zu Zintl-Anionen und intermetalloiden Clustern

29. Ionic-Radius-Driven Selection of the Main-Group-Metal Cage for Intermetalloid Clusters [Ln@PbxBi14-x]q- and [Ln@PbyBi13-y]q- (x/q=7/4, 6/3; y/q=4/4, 3/3)

30. Binary and Ternary Intermetalloid Clusters.

36. {[Ir3(cod)3(μ3-S)2](μ3-S)SnCl}2 – a ternary Ir–Sn–S cluster with the iridium atoms in three different chemical environments.

49. Ionic-Radius-Driven Selection of the Main-Group-Metal Cage for Intermetalloid Clusters [Ln@PbxBi14-x]q- and [Ln@PbyBi13-y]q- (x/q=7/4, 6/3; y/q=4/4, 3/3).

50. Origin and Location of Electrons and Protons during the Formation of Intermetalloid Clusters [Sm@Ga3− xH3−2 xBi10+ x]3− ( x=0, 1).

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