Sören Randoll
Technische Universität München
13 Papers
282 Citations
Sören Randoll is an academic researcher from Technische Universität München. The author has contributed to research in topics: Cyclopentadienyl complex & Trimethylsilyl azide. The author has an hindex of 12, co-authored 13 publications.
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Papers
Imidazolin-2-iminato complexes of rare earth metals with very short metal-nitrogen bonds: experimental and theoretical studies.
Tarun K. Panda,Alexandra G. Trambitas,Thomas Bannenberg,Cristian G. Hrib,Sören Randoll,Peter G. Jones,Matthias Tamm +6 more
TL;DR: X-ray diffraction analyses of all eight imidazolin-2-iminato complexes revealed the presence of very short metal-nitrogen bonds, which are among the shortest ever observed for these elements.
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Synthesis and reactivity of copper(I) complexes containing a bis(imidazolin-2-imine) pincer ligand
TL;DR: The new pincer ligand 2,6-bis[(1,3-di-tert-butylimidazolin-2-imino)methyl]pyridine (TL(tBu) has been prepared in high yield from 2, 6-bis(hydroxymethyl)pyrsidine (1) and 1,3
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Chromium Complexes with Me2Si-Bridged Cyclopentadienyl-imidazolin-2-imine Ligands: Synthesis, Structure, and Use in Ethylene Polymerization Catalysis
TL;DR: In this article, the precursors for the coordination of tetramethylcyclopentadienes 3-H and 6-H to transition metals were obtained by salt metathesis reactions of (3)K and (6)K with [CrCl3(THF)3], and the molecular structures of all four paramagnetic complexes were established by X-ray diffraction analyses.
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Synthesis and Reactivity of Silicon- and Germanium-Bridged ansa-Cycloheptatrienyl−Cyclopentadienyl Titanium Complexes
TL;DR: In this paper, a new ansa-cycloheptatrienyl−cyclopentadienyl complex with germanium as a bridging atom has been synthesized.
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Synthesis and reactivity of 16-electron pentamethylcyclopentadienyl-ruthenium(II) complexes with bis(imidazolin-2-imine) ligands
Dejan Petrovic,Thomas Glöge,Thomas Bannenberg,Cristian G. Hrib,Sören Randoll,Peter G. Jones,Matthias Tamm +6 more
TL;DR: In this article, the 1,2-bis (imidazolin-2-imino)ethane ligands BLMe and BLiPr were prepared, in which the ability of the imidazolium moiety to effectively stabilize a positive charge leads to highly basic ligands with a strong electron-donating capacity.
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