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Featured researches published by Gabor London.


Journal of the American Chemical Society | 2014

Control of Surface Wettability Using Tripodal Light-Activated Molecular Motors

Kuang-Yen Chen; Oleksii Ivashenko; Gregory T. Carroll; Jort Robertus; Jos C. M. Kistemaker; Gabor London; Wesley R. Browne; Petra Rudolf; Ben L. Feringa

Monolayers of fluorinated light-driven molecular motors were synthesized and immobilized on gold films in an altitudinal orientation via tripodal stators. In this design the functionalized molecular motors are not interfering and preserve their rotary function on gold. The wettability of the self-assembled monolayers can be modulated by UV irradiation.


Chemical Communications | 2009

Light-driven altitudinal molecular motors on surfaces

Gabor London; Gregory T. Carroll; Tatiana Fernandez Landaluce; Michael M. Pollard; Petra Rudolf; Bernard Feringa

A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal molecular motor on quartz and silicon substrates, which represents the fastest light-driven molecular motor, to date, grafted to a solid surface.


Journal of the American Chemical Society | 2015

The Impact of Antiaromatic Subunits in [4n+2] π-Systems: Bispentalenes with [4n+2] π-Electron Perimeters and Antiaromatic Character

Jing Cao; Gabor London; Oliver Dumele; Margarete von Wantoch Rekowski; Nils Trapp; Laurent Ruhlmann; Corinne Boudon; Amnon Stanger; François Diederich

Three series of stable, neutral, π-extended bispentalene derivatives, with two pentalenes fused to a central benzene or naphthalene moiety, have been prepared through a modified double carbopalladation cascade reaction. While these chromophores feature skeletons with [4n+2] π-electron perimeters, the two 8 π-electron pentalene subunits strongly influence bonding and spectral properties. (1)H NMR spectra showed large upfield shifts of the protons in the pentalene moieties, comparable to antiaromatic monobenzopentalenes. Further investigations on magnetic ring currents through NICS-XY-scans suggest a global paratropic current and a local diatropic current at the central benzene ring in two of the series, while the third series, with a central naphthalene ring, showed more localized ring currents, with stronger paratropic ring currents on the pentalene moieties. X-ray diffraction analyses revealed planar bispentalene cores with large double- and single-bond alternation in the pentalene units, characteristic for antiaromaticity, and small alternation in the central aromatic rings. In agreement with TD-DFT calculations, both optical and electrochemical data showed much smaller HOMO-LUMO energy gaps compared to other neutral, acene-like hydrocarbons with the same number of fused rings. Both experimental and computational results suggest that the molecular properties of the presented bispentalenes are dominated by the antiaromatic pentalene-subunits despite the [4n+2] π-electron perimeter of the skeletons.


Angewandte Chemie | 2010

Light‐Induced Control of Protein Translocation by the SecYEG Complex

Francesco Bonardi; Gabor London; Nico Nouwen; Ben L. Feringa; Arnold J. M. Driessen

Please close the pore! An organochemical photoswitch was introduced into two transmembrane segments that comprise the lateral gate of the bacterial-membrane-embedded protein-conducting pore. Reversible switching of the azobenzene between the trans and cis configurations by irradiation with visible and UV light enforced the opening and closure of the protein-conducting pore.


ACS Nano | 2011

Adhesion of Photon-Driven Molecular Motors to Surfaces via 1,3-Dipolar Cycloadditions: Effect of Interfacial Interactions on Molecular Motion

Gregory T. Carroll; Gabor London; Tatiana Fernandez Landaluce; Petra Rudolf; Bernard Feringa

We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar cycloaddition reactions. Molecular motors were designed containing azide or alkyne groups for attachment to alkyne- or azide-modified surfaces. Surface attachment was characterized by UV-vis, IR, XPS, and ellipsometry measurements. Surface-bound motors were found to undergo photochemical and thermal isomerizations consistent with unidirectional rotation in solution. Confinement at a surface was found to reduce the rate of the thermal isomerization process. The rate of thermal isomerization was also dependent on the surface coverage of the motors. In solution, changes in the UV-vis signal that accompany thermal isomerization can be fit with a single monoexponential decay. In contrast, thermal isomerization of the surface-bound motors does not follow a single monoexponential decay and was found to fit a biexponential decay. Both one- and two-legged motors were attached to surfaces. The kinetics of thermal isomerization was not affected by the valency of attachment, indicating that the changes in kinetics from solution to surface systems are related to interactions between the surface-bound motors.


Journal of Organic Chemistry | 2010

Rotary Molecular Motors: A Large Increase in Speed through a Small Change in Design

Tatiana Fernandez Landaluce; Gabor London; Michael M. Pollard; Petra Rudolf; Bernard Feringa

Reducing the steric interaction between the upper-half and the lower-half of a light-driven rotary molecular motor by decreasing the size of the aromatic moiety in the upper-half from a naphthalene to a benzothiophene results in an almost 3500 times faster rotation.


Chemistry: A European Journal | 2013

Towards Dynamic Control of Wettability by Using Functionalized Altitudinal Molecular Motors on Solid Surfaces

Gabor London; Kuang-Yen Chen; Gregory T. Carroll; Bernard Feringa

We report the synthesis of altitudinal molecular motors that contain functional groups in their rotor part. In an approach to achieve dynamic control over the properties of solid surfaces, a hydrophobic perfluorobutyl chain and a relatively hydrophilic cyano group were introduced to the rotor part of the motors. Molecular motors were attached to quartz surfaces by using interfacial 1,3-dipolar cycloadditions. To test the effect of the functional groups on the rotary motion, photochemical and thermal isomerization studies of the motors were performed both in solution and when attached to the surface. We found that the substituents have no significant effect on the thermal and photochemical processes, and the functionalized motors preserved their rotary function both in solution and on a quartz surface. Preliminary results on the influence of the functional groups on surface wettability are also described.


Catalysis Science & Technology | 2016

Pd/Al2O3-catalysed redox isomerisation of allyl alcohol: application in aldol condensation and oxidative heterocyclization reactions

Dániel Zsolnai; Péter Mayer; Kornél Szőri; Gabor London

The application of the Pd/Al2O3 catalyst in allyl alcohol isomerization and subsequent aldol condensation and heterocyclization reactions is described. The activity of Pd/Al2O3 in these transformations is suggested to be due to the participation of the Lewis acidic sites of the support in the activation of the alcohol towards oxidative dehydrogenation by the metal and subsequent hydride transfer. The resulting enol(ate)/aldehyde could undergo further reactions promoted by the acid–base properties of the support. In the aldol condensation reactions of the isomerization product, electron poor aromatic aldehydes and heteroaromatic aldehydes showed the highest activity, while aromatic aldehydes bearing electron donating substituents reacted after transformation to the corresponding N-tosyl imines. 1,2-Disubstituted aromatics gave heterocyclic products in one-pot multistep reaction sequences.


Organic Preparations and Procedures International | 2017

Dual Stereocontrol in Enantioselective Aldol Reactions

András A. Gurka; Gabor London

Over the past decades, chirality has become a major consideration in drug design.1–3 Today it is widely accepted that different enantiomers of chiral drug molecules could have very distinct effects...


Angewandte Chemie | 2005

Highly Enantioselective Organocatalytic Hydroxyalkylation of Indoles with Ethyl Trifluoropyruvate

Béla Török; Mohammed Abid; Gabor London; Joseph Esquibel; Marianna Török; Shilpa C. Mhadgut; Ping Yan; G. K. Surya Prakash

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Petra Rudolf

University of Groningen

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Kornél Szőri

Hungarian Academy of Sciences

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