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R Schlogl

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Articles 42
Citations 380
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Recent Articles
1.
Velasco-Velez J, Teschner D, Girgsdies F, Havecker M, Streibel V, Willinger M, et al.
Top Catal . 2019 Apr; 61(20):2052-2061. PMID: 30930589
The selective hydrogenation of propyne over a Pd-black model catalyst was investigated under conditions at 1 bar making use of advanced X-ray diffraction (bulk sensitive) and photo-electron spectroscopy (surface sensitive)...
2.
Greiner M, Jones T, Beeg S, Zwiener L, Scherzer M, Girgsdies F, et al.
Nat Chem . 2018 Aug; 10(10):1008-1015. PMID: 30150725
Alloying provides a means by which to tune a metal catalyst's electronic structure and thus tailor its performance; however, mean-field behaviour in metals imposes limits. To access unprecedented catalytic behaviour,...
3.
Klokishner S, Reu O, Noack J, Schlogl R, Trunschke A
J Phys Chem A . 2017 Aug; 121(38):7157-7164. PMID: 28853568
Combined theoretical and experimental studies of the [VO(O)Hheida] anion dissolved in water that may serve as a functional model for vanadium haloperoxidase enzymes have been performed. The geometrical structure and...
4.
Kaichev V, Saraev A, Gladky A, Prosvirin I, Blume R, Teschner D, et al.
Phys Rev Lett . 2017 Jul; 119(2):026001. PMID: 28753346
A novel type of temporal and spatial self-organization in a heterogeneous catalytic reaction is described for the first time. Using in situ x-ray photoelectron spectroscopy, gas chromatography, and mass spectrometry,...
5.
Velasco-Velez J, Pfeifer V, Havecker M, Wang R, Centeno A, Zurutuza A, et al.
Rev Sci Instrum . 2016 Jun; 87(5):053121. PMID: 27250406
One of the main goals in catalysis is the characterization of solid/gas interfaces in a reaction environment. The electronic structure and chemical composition of surfaces become heavily influenced by the...
6.
Su D, Schlogl R
ChemSusChem . 2016 Feb; 9(4):316-7. PMID: 26914171
Special Issue: Energy Conversion and Storage. Critical issues in current energy-based societies are its generation through methods utilizing alternatives to fossil fuels as well as its storage. Considering the scope,...
7.
Pfeifer V, Jones T, Velasco Velez J, Massue C, Greiner M, Arrigo R, et al.
Phys Chem Chem Phys . 2015 Dec; 18(4):2292-6. PMID: 26700139
Iridium oxide based electrodes are among the most promising candidates for electrocatalyzing the oxygen evolution reaction, making it imperative to understand their chemical/electronic structure. However, the complexity of iridium oxide's...
8.
Greiner M, Jones T, Johnson B, Rocha T, Wang Z, Armbruster M, et al.
Phys Chem Chem Phys . 2015 Sep; 17(38):25073-89. PMID: 26345450
The oxidation of copper catalysts during ethylene epoxidation was characterized using in situ photoemission spectroscopy and electron microscopy. Gas chromatography, proton-transfer reaction mass spectrometry and electron-ionization mass spectrometry were used...
9.
Spiel C, Vogel D, Schlogl R, Rupprechter G, Suchorski Y
Ultramicroscopy . 2015 May; 159 Pt 2:178-83. PMID: 26021411
Spatial coupling during catalytic ignition of CO oxidation on μm-sized Pt(hkl) domains of a polycrystalline Pt foil has been studied in situ by PEEM (photoemission electron microscopy) in the 10(-5)...
10.
Vogel D, Spiel C, Schmid M, Stoger-Pollach M, Schlogl R, Suchorski Y, et al.
J Phys Chem C Nanomater Interfaces . 2013 Jun; 117(23):12054-12060. PMID: 23785524
The role of artificially created defects and steps in the local reaction kinetics of CO oxidation on the individual domains of a polycrystalline Pd foil was studied by photoemission electron...