The most fruitful synthetic route to metalloid tin clusters applies the disproportionation reaction of metastable Sn(I) halide solutions, whereby Si(SiMe3)3 is mostly used as the stabilizing substituent. Here, we describe the synthesis and application of the slightly modified substituent Ge(SiMe3)3, which can be used for the synthesis of metalloid tin clusters to give the neutral cluster Sn10[Ge(SiMe3)3]6 as well as the charged clusters {Sn10[Ge(SiMe3)3]5}− and {Sn10[Ge(SiMe3)3]4}2−. The obtained metalloid clusters are structurally similar to their Si(SiMe3)3 derivatives. However, differences with respect to the stability in solution are observed. Additionally, a different electronic situation for the tin atoms is realized as sh...
The reaction of the lithium tris(2-pyridyl)stannate [LiSn(2-py6OtBu)3] (py6OtBu = C5H3N-6-OtBu), 1, ...
Reported are the rational synthesis, structures, and solution dynamics of three tetrasubstituted and...
The reaction of the lithium tris(2-pyridyl)stannate [LiSn(2-py6OtBu)3] (py6OtBu = C5H3N-6-OtBu), 1, ...
The most fruitful synthetic route to metalloid tin clusters applies the disproportionation reaction ...
For the synthesis of metalloid cluster compounds of tin applying the disproportionation reaction of ...
The disproportionation reaction of the subvalent metastable halide SnBr proved to be a powerful synt...
The disproportionation reaction of the subvalent metastable halide SnCl proved to be a powerful synt...
The disproportionation reaction of the subvalent metastable halide SnCl proved to be a powerful synt...
The disproportionation reaction of the subvalent metastable halide SnCl proved to be a powerful synt...
Orange crystals of a Sn<sub>14</sub> cluster have been isolated in up to 22% yield from a reaction b...
The influence of the stabilizing ligand on the physical and chemical properties of a metalloid clust...
The influence of the stabilizing ligand on the physical and chemical properties of a metalloid clust...
Anionic clusters of tin and lead are produced by the reaction of binary, ternary and quarternary alk...
Anionic clusters of tin and lead are produced by the reaction of binary, ternary and quarternary alk...
Through tin precursor chemistry, SnSe nanocrystals were phase-selectively prepared. Monomeric N-hete...
The reaction of the lithium tris(2-pyridyl)stannate [LiSn(2-py6OtBu)3] (py6OtBu = C5H3N-6-OtBu), 1, ...
Reported are the rational synthesis, structures, and solution dynamics of three tetrasubstituted and...
The reaction of the lithium tris(2-pyridyl)stannate [LiSn(2-py6OtBu)3] (py6OtBu = C5H3N-6-OtBu), 1, ...
The most fruitful synthetic route to metalloid tin clusters applies the disproportionation reaction ...
For the synthesis of metalloid cluster compounds of tin applying the disproportionation reaction of ...
The disproportionation reaction of the subvalent metastable halide SnBr proved to be a powerful synt...
The disproportionation reaction of the subvalent metastable halide SnCl proved to be a powerful synt...
The disproportionation reaction of the subvalent metastable halide SnCl proved to be a powerful synt...
The disproportionation reaction of the subvalent metastable halide SnCl proved to be a powerful synt...
Orange crystals of a Sn<sub>14</sub> cluster have been isolated in up to 22% yield from a reaction b...
The influence of the stabilizing ligand on the physical and chemical properties of a metalloid clust...
The influence of the stabilizing ligand on the physical and chemical properties of a metalloid clust...
Anionic clusters of tin and lead are produced by the reaction of binary, ternary and quarternary alk...
Anionic clusters of tin and lead are produced by the reaction of binary, ternary and quarternary alk...
Through tin precursor chemistry, SnSe nanocrystals were phase-selectively prepared. Monomeric N-hete...
The reaction of the lithium tris(2-pyridyl)stannate [LiSn(2-py6OtBu)3] (py6OtBu = C5H3N-6-OtBu), 1, ...
Reported are the rational synthesis, structures, and solution dynamics of three tetrasubstituted and...
The reaction of the lithium tris(2-pyridyl)stannate [LiSn(2-py6OtBu)3] (py6OtBu = C5H3N-6-OtBu), 1, ...