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Institute of Organic Chemistry
and Biochemistry of the CAS

Take the step towards a career in organic chemistry and biochemistry...

Publications

All publications
Application of the Brook Rearrangement in Tandem with Single Electron Transfer Oxidative and Radical Processes
Application of the Brook Rearrangement in Tandem with Single Electron Transfer Oxidative and Radical Processes
European Journal of Organic Chemistry 2020 : Early View (2020).
Merging rearrangement with radical reactions is a largely unexplored field but may hold promise for approaching scaffolds that are inaccessible by other methodology. Here a tandem nucleophilic substitution/Brook rearrangement/single‐electron transfer oxidation/radical oxygenation strategy is presented, through which α,γ‐dioxygenated ε,ζ‐unsaturated amides are efficiently prepared in a single step from enantiomerically enriched allylepoxides and 2‐silylacetamides. The resulting compounds can be easily transformed by persistent radical effect‐based 5‐exo‐trig or 6‐endo‐trig radical cyclization reactions to functionalized carbocycles bearing three or four stereocenters. The stereochemical outcome of the cyclization reactions can predicted by the Beckwith–Houk model. The cyclic compounds can be easily diversified by post‐cyclization modifications. The tandem process can be further extended by an acylation step leading to β‐dicarbonyl enolates, which were also transformed to cyclopentane and cyclohexane derivatives under oxidative conditions.
Face‐Fusion of Icosahedral Boron Hydride Increases Affinity to γ‐Cyclodextrin: closo,closo‐[B21H18] as an Anion with Very Low Free Energy of Dehydration
K. I. Assaf
J. Holub
E. Bernhardt
J. M. Oliva‐enrich
I. F. Pérez
M. Canle
J. A. Santaballa
J. Fanfrlík
D. Hnyk
W. M. Nau
ChemPhysChem 2020 : Early View (2020).
Synthesis of Near-Infrared Emitting Gold Nanoclusters for Biological Applications
Journal of Visualized Experiments 157 : e60388 (2020).
Binuclear Lanthanide(III) Complexes with Chiral Ligands: Dynamic Equilibria in Solution and Binding with Nucleotides Studied by Spectroscopic Methods
ChemPlusChem 85 (4): 694-700 (2020).
Defining the subcellular distribution and metabolic channeling of phosphatidylinositol
J. G. Pemberton
Y. J. Kim
J. Humpolíčková A. Eisenreichová
N. Sengupta
D. J. Tóth
E. Bouřa
T. Balla
Journal of Cell Biology 219 (3): e201906130 (2020).

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