Julia Stanek
RWTH Aachen University
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Publication
Featured researches published by Julia Stanek.
Nature Chemistry | 2018
Benjamin Dicke; M. Rübhausen; Wolfgang Zinth; Kenneth R. Beyerlein; Christian Bressler; Alina Wetzel; F. Biebl; Sonja Herres-Pawlis; Benjamin Maerz; Mykola Biednov; Henry N. Chapman; D. Göries; Julia Stanek; Alke Meents; G. Neuber; Dieter Rukser; Michael S. Rampp; Johan Bielecki; M. Naumova; Alexander Hoffmann; Jakob Andreasson; Stefan Hofmann; P. Roedig; Benjamin Grimm-Lebsanft
The entatic state denotes a distorted coordination geometry of a complex from its typical arrangement that generates an improvement to its function. The entatic-state principle has been observed to apply to copper electron-transfer proteins and it results in a lowering of the reorganization energy of the electron-transfer process. It is thus crucial for a multitude of biochemical processes, but its importance to photoactive complexes is unexplored. Here we study a copper complex-with a specifically designed constraining ligand geometry-that exhibits metal-to-ligand charge-transfer state lifetimes that are very short. The guanidine-quinoline ligand used here acts on the bis(chelated) copper(I) centre, allowing only small structural changes after photoexcitation that result in very fast structural dynamics. The data were collected using a multimethod approach that featured time-resolved ultraviolet-visible, infrared and X-ray absorption and optical emission spectroscopy. Through supporting density functional calculations, we deliver a detailed picture of the structural dynamics in the picosecond-to-nanosecond time range.
Chemistry: A European Journal | 2017
Julia Stanek; Nina Sackers; Fabian Fink; Melanie Paul; Laurens Peters; Richard Grunzke; Alexander Hoffmann; Sonja Herres-Pawlis
The electron-transfer abilities of the copper guanidinoquinoline (GUAqu) complexes [Cu(TMGqu)2 ]+/2+ and [Cu(DMEGqu)2 ]+/2+ (TMGqu=tetramethylguanidinoquinoline, DMEGqu=dimethylethylguanidinoquinoline) were examined in different solvents. The determination of the electron self-exchange rate based on the Marcus theory reveals the highest electron-transfer rate of copper complexes with pure N-donor ligands (k11 =1.2×104 s-1 m-1 in propionitrile). This is supported by an examination of the reorganisation energy of the complexes by using Eyring theory and DFT calculations. The low reorganisation energies in nitrile solvents correspond with the high electron-transfer rates of the complexes. Therefore, the [Cu(GUAqu)2 ]+/2+ complexes act as good entatic states model of copper enzymes. The structural influence of the complexes on the kinetic parameters shows that the TMGqu system possesses a higher electron-transfer rate than DMEGqu. Supporting DFT calculations give a closer insight into the kinetics and thermodynamics (Nelsens four-point method and isodesmic reactions) of the electron transfer.
Chemistry: A European Journal | 2017
Steven F. Hannigan; Amanda I. Arnoff; Sarah E. Neville; June S. Lum; James A. Golen; Arnold L. Rheingold; Nicole Orth; Ivana Ivanović-Burmazović; Patricia Liebhäuser; Thomas Rösener; Julia Stanek; Alexander Hoffmann; Sonja Herres-Pawlis; Linda H. Doerrer
CuI complexes of the form K[(R3 P)Cu(pinF )], in which (pinF )2- is the bidentate, oxygen-donating ligand perfluoropinacolate, were synthesized and characterized. Low-temperature oxygenation of the K[(R3 P)Cu(pinF )(PR3 )] species resulted in a trisanionic bis(μ3 -oxo) trinuclear copper(II,II,III) core characterized by UV/Vis spectroscopy (λmax [nm] = 330, 535, 630), cryospray-ionization mass spectrometry, and X-band electron paramagnetic resonance spectroscopy (derivative resonance at 3300 G, Δms =2 at 1500 G). The kinetic behavior of the trimeric {Cu3 O2 } species was quantified by stopped-flow spectroscopy and the associated electronic structures were investigated by DFT calculations. An asymmetric {Cu3 O2 } species, As TpinF , which bears a structure similar to multicopper oxidases, forms prior to full formation of the symmetric trinuclear core, Sy TpinF . The trimer catalytically oxidizes para-hydroquinone to benzoquinone (a form of oxidase chemistry).
Applied Physics Letters | 2016
Alina Wetzel; F. Biebl; K. R. Beyerlein; Julia Stanek; L. Gumprecht; Alexander Hoffmann; Sonja Herres-Pawlis; S. Bajt; Henry N. Chapman; Benjamin Grimm-Lebsanft; Dieter Rukser; M. Rübhausen
We present a micro-jet sample delivery system for Raman measurements. Compared to cuvette measurements, the observed Raman signal is enhanced by more than one order of magnitude and does not contain signal distortions from the liquid-glass interface. Furthermore, the signal stability of repeated measurements is enhanced due to reduced sample damage effects by constantly replenishing the sample. This allows the study of sensitive samples that can only be produced in low concentrations. Our setup consists of a controlled sample environment that can be either under vacuum or an exchange gas, which allows the study of samples that are unstable in air. Finally, by matching the effective source point of the Raman instrument with the diameter of the jet, controlled experiments using laser beams of different wavelengths are possible. We see future applications of our setup for resonance Raman and time-resolved Raman measurements of bioinorganic samples.
Angewandte Chemie | 2018
Julian Moegling; Alexander Hoffmann; Fabian Thomas; Nicole Orth; Patricia Liebhäuser; Ulrich Herber; Robert Rampmaier; Julia Stanek; Gerhard Fink; Ivana Ivanović-Burmazović; Sonja Herres-Pawlis
Heteroscorpionate ligands of the bis(pyrazolyl)methane family have been applied in the stabilisation of terminal copper tosyl nitrenes. These species are highly active intermediates in the copper-catalysed direct C-H amination and nitrene transfer. Novel perfluoroalkyl-pyrazolyl- and pyridinyl-containing ligands were synthesized to coordinate to a reactive copper nitrene centre. Four distinct copper tosyl nitrenes were prepared at low temperatures by the reaction with SO2 tBuPhINTs and copper(I) acetonitrile complexes. Their stoichiometric reactivity has been elucidated regarding the imination of phosphines and the aziridination of styrenes. The formation and thermal decay of the copper nitrenes were investigated by UV/Vis spectroscopy of the highly coloured species. Additionally, the compounds were studied by cryo-UHR-ESI mass spectrometry and DFT calculations. In addition, a mild catalytic procedure has been developed where the copper nitrene precursors enable the C-H amination of cyclohexane and toluene and the aziridination of styrenes.
European Journal of Inorganic Chemistry | 2016
Alexander Hoffmann; Julia Stanek; Benjamin Dicke; Laurens Peters; Benjamin Grimm-Lebsanft; Alina Wetzel; Anton Jesser; Matthias Bauer; Manuel Gnida; Wolfram Meyer-Klaucke; M. Rübhausen; Sonja Herres-Pawlis
Angewandte Chemie | 2018
Julian Moegling; Alexander Hoffmann; Fabian Thomas; Nicole Orth; Patricia Liebhäuser; Ulrich Herber; Robert Rampmaier; Julia Stanek; Gerhard Fink; Ivana Ivanović-Burmazović; Sonja Herres-Pawlis
parallel, distributed and network-based processing | 2018
Richard Grunzke; Volker Hartmann; Thomas Jejkal; Helen Kollai; Christiane Dressler; Julia Dolhoff; Julia Stanek; Hendrik Herold; Alexander Hoffmann; Ralph Müller-Pfefferkorn; Torsten Schrade; Sonja Herres-Pawlis; Gotthard Meinel; Wolfgang E. Nagel
European Journal of Inorganic Chemistry | 2018
Julia Stanek; Marc Konrad; Johannes Mannsperger; Alexander Hoffmann; Sonja Herres-Pawlis
Coordination Chemistry Reviews | 2018
Julia Stanek; Alexander Hoffmann; Sonja Herres-Pawlis