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Published on: July 28, 2022
Bis(di-tert-butylindenyl)tetrelocenes
Liane Hildegard Staub1, Jessica Lambert1, Carsten Müller1
1Department of Chemistry, Faculty of Natural Sciences and Technology, Saarland University, Campus Saarbrücken, 66123 Saarbrücken, Germany. andre.schaefer@uni-saarland.de.
Researchers synthesized and characterized novel germanium, tin, and lead complexes with bulky indenyl ligands. This study presents the first structural confirmation of a bis(indenyl)germanocene, advancing organometallic chemistry.
Area of Science:
- Organometallic Chemistry
- Main Group Chemistry
Background:
- Bis(indenyl) complexes of group 14 elements are of interest due to their unique electronic and structural properties.
- The synthesis and characterization of analogous tin and lead complexes provide comparative insights.
Purpose of the Study:
- To report the synthesis and characterization of bis(di-tert-butylindenyl) germanium(II), tin(II), and lead(II) complexes.
- To provide the first structurally authenticated example of a bis(indenyl)germanocene.
- To investigate the properties of these complexes in solution and solid states.
Main Methods:
- Synthesis of organometallic complexes.
- Single crystal X-ray diffraction for structural determination.
- Nuclear Magnetic Resonance (NMR) spectroscopy for solution-state analysis.
- Mössbauer spectroscopy for the tin compound.
Main Results:
- Successful synthesis and characterization of bis(di-tert-butylindenyl) germanium(II), tin(II), and lead(II) complexes.
- The crystal structure of the bis(indenyl)germanocene was determined, representing a significant structural achievement.
- Spectroscopic data (NMR, Mössbauer) provided detailed information on the electronic and structural features of the compounds.
Conclusions:
- The reported complexes represent a new class of organometallic compounds with bulky indenyl ligands.
- The structural and spectroscopic data offer valuable insights into the bonding and reactivity of these heavy main group elements.
- This work expands the known chemistry of bis(indenyl) complexes and provides a foundation for future studies.
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