Herein, the syntheses of two tightly packed all-carbon "Geländer" molecules with axial chirality are described. Motivated by our previous results, we further reduced the bridge length by excluding the heteroatoms. The absolute configuration was determined by comparison of the measured and calculated circular dichroism (CD) spectra and the thermodynamic stability was determined by dynamic high-performance liquid chromatography (HPLC) and CD analysis. The cyclophanes were fully characterized by CD measurements, X-ray diffraction (XRD) analysis, NMR, UV-Vis and high resolution mass spectrometry (HRMS). Our novel all-carbon macrocycle is the most stable Geländer system reported so far
The conceptual basis of this thesis is based on Fritz Vögtle’s “Geländer” oligomers, presented first...
Graduation date: 2014Since the discovery of molecular chirality in 1848, this notion has had a subst...
A new type of "Gelander" molecule based on a ortho-tetraphenylene core is presented. The central par...
Herein, the syntheses of two tightly packed all-carbon Gelander molecules with axial chirality are d...
A new type of “Geländer” molecule based on a ortho-tetraphenylene core is presented. The central par...
We introduce a design principle to stabilize helically chiral structures from an achiral tetrasubsti...
We report the design of a synthetically easy accessible axial chirality-inducing framework for a chr...
The novel diacetylene bridged terphenylic macrocycle 1 is presented and discussed in the context of ...
Orthogonal joints, understood as connections with an angle of 90°, were introduced in the design of ...
We demonstrate so-called “chiral diversification”, which is a design strategy to create multiple chi...
Helical molecules are not only esthetically appealing due to their structural beauty, they also disp...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
We introduce a design principle to stabilize helically chiral structures from an achiral tetrasubsti...
International audienceCyclobis[n]helicenes (n = 3 or 5) are chiral D2-symmetric p-conjugated macrocy...
We describe the design and synthesis of a novel functionality-rich, homochiral macrocycle, possessin...
The conceptual basis of this thesis is based on Fritz Vögtle’s “Geländer” oligomers, presented first...
Graduation date: 2014Since the discovery of molecular chirality in 1848, this notion has had a subst...
A new type of "Gelander" molecule based on a ortho-tetraphenylene core is presented. The central par...
Herein, the syntheses of two tightly packed all-carbon Gelander molecules with axial chirality are d...
A new type of “Geländer” molecule based on a ortho-tetraphenylene core is presented. The central par...
We introduce a design principle to stabilize helically chiral structures from an achiral tetrasubsti...
We report the design of a synthetically easy accessible axial chirality-inducing framework for a chr...
The novel diacetylene bridged terphenylic macrocycle 1 is presented and discussed in the context of ...
Orthogonal joints, understood as connections with an angle of 90°, were introduced in the design of ...
We demonstrate so-called “chiral diversification”, which is a design strategy to create multiple chi...
Helical molecules are not only esthetically appealing due to their structural beauty, they also disp...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
We introduce a design principle to stabilize helically chiral structures from an achiral tetrasubsti...
International audienceCyclobis[n]helicenes (n = 3 or 5) are chiral D2-symmetric p-conjugated macrocy...
We describe the design and synthesis of a novel functionality-rich, homochiral macrocycle, possessin...
The conceptual basis of this thesis is based on Fritz Vögtle’s “Geländer” oligomers, presented first...
Graduation date: 2014Since the discovery of molecular chirality in 1848, this notion has had a subst...
A new type of "Gelander" molecule based on a ortho-tetraphenylene core is presented. The central par...