Publications by authors named "I Stara"

Article Synopsis
  • Recent advancements in creating nonplanar chiral aromatics, like helicenes, have not yet translated into the development of their transition metal complexes for catalytic applications.
  • This study successfully synthesized enantio- and diastereopure oxa[6]- and oxa[7]helicene-indene half-sandwich RhI and RhIII complexes, as well as a FeII complex, showcasing their potential in catalysis.
  • The research demonstrated the use of oxahelicene-indenido RhIII complexes in enantioselective C-H arylation reactions, yielding axially chiral biaryls with excellent selectivity and confirming an innovative chirality transfer process.
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We report on-surface synthesis of heterochiral 1D heptahelicene oligomers after deposition of a racemic heptahelicene monomer on an Au(111) surface followed by Ullmann coupling under ultrahigh vacuum conditions. Structure, chirality and mode of adsorption of the resulting dimers to octamers are inferred from the scanning probe microscopy and theoretical calculations.

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Helical bilayer nanographenes (HBNGs) are chiral π-extended aromatic compounds consisting of two π-π stacked hexabenzocoronenes (HBCs) joined by a helicene, thus resembling van der Waals layered 2D materials. Herein, we compare , , and helical bilayers endowed with [9], [10], and [11]helicenes embedded in their structure, respectively. Interestingly, the helicene length defines the overlapping degree between the two HBCs (number of benzene rings involved in π-π interactions between the two layers), being 26, 14, and 10 benzene rings, respectively, according to the X-ray analysis.

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Fully aromatic helicenes are attractive building blocks for the construction of inherently chiral π-conjugated macrocyclic nanocarbons. These hitherto rare molecular architectures are envisaged to exhibit remarkable (chir)optical properties, self-assembly, charge/spin transport, induced ring current or a fascinating Möbius topology. Here the synthesis of helically chiral macrocycles that combine angular dibenzo[5]helicene units as corners and linear -stilbene-4,4'-diyl linkers as edges is reported.

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The synthesis of a tetrathiafulvalene (TTF) derivative, -[4-({4-[(2,2'-bi-1,3-dithiol-4-ylmethoxy)methyl] phenyl}ethynyl)phenyl] ethanethioate, suitable for the modification of gold nanoparticles (AuNPs), is described in this article. The TTF ligand was self-assembled on the AuNP surface through ligand exchange, starting from dodecanethiol-stabilized AuNPs. The resulting modified AuNPs were characterized by TEM, UV-Vis spectroscopy, and electrochemistry.

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