Xueting Wang
Chalmers University of Technology
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Catalysis, Structure & Reactivity | 2017
Natalia Mihaela Martin; Johan Nilsson; Magnus Skoglundh; Emma Adams; Xueting Wang; Gudmund Smedler; Agnes Raj; David Thompsett; Giovanni Agostini; Stefan Carlson; Katarina Norén; Per-Anders Carlsson
Graphical Abstract Abstract Methane oxidation over Pd–Pt/ model catalysts calcined at three different conditions is investigated using operando diffuse reflectance infrared Fourier transform spectroscopy and mass spectrometry, and in situ X-ray absorption spectroscopy while cycling the feed gas stoichiometry between lean (net-oxidising) and rich (net-reducing) conditions. When calcined in air, alloy Pd–Pt nanoparticles are present only on catalysts subjected to elevated temperature () whereas calcination at lower temperature (500 ) leads to segregated Pt and Pd nanoparticles on the support. Here, we show that the alloy Pd–Pt nanoparticles undergo reversible changes in surface structure and composition during transient methane oxidation exposing a PdO surface during lean conditions and a metallic Pd–Pt surface (Pd enriched) under rich conditions. Alloyed particles seem more active for methane oxidation than their monometallic counterparts and, furthermore, an increased activity for methane oxidation is clearly observed under lean conditions when PdO has developed on the surface, analogous to monometallic Pd catalysts. Upon introducing rich conditions, partial oxidation of methane dominates over total oxidation forming adsorbed carbonyls on the noble metal particles. The carbonyl spectra for the three samples show clear differences originating from different surfaces exposed by alloyed vs. non-alloyed particles. The kinetics of the noble metal oxidation and reduction processes as well as carbonyl formation during transient methane oxidation are discussed.
Catalysis Science & Technology | 2018
Natalia Mihaela Martin; Felix Hemmingsson; Xueting Wang; Lindsay R. Merte; Uta Hejral; Johan Gustafson; Magnus Skoglundh; Debora Motta Meira; Ann-Christin Dippel; Olof Gutowski; Matthias Bauer; Per-Anders Carlsson
The effect of the support material and chemical state of Rh in Rh/A2O3 and Rh/SiO2 model catalysts during CO2 hydrogenation were studied by a combined array of in situ characterisation techniques including diffuse reflectance infrared Fourier transform spectroscopy, energy-dispersive X-ray absorption spectroscopy and high-energy X-ray diffraction at 250–350 °C and atmospheric pressure. CO2 methanation proceeds via intermediate formation of adsorbed CO species on metallic Rh, likely followed by their hydrogenation to methane. The linearly-bonded CO species is suggested to be a more active precursor in the hydrogenation compared to the bridge-bonded species, which seems to be related to particle size effects: for larger particles mainly the formation of inactive bridge-bonded CO species takes place. Further, analysis of the chemical state of Rh under the reaction conditions reveal a minor formation of RhOx from dissociation of CO2, which is a consequence of the increased activity observed over the Rh/Al2O3 catalyst.
Journal of Physical Chemistry C | 2016
Natalia Mihaela Martin; Johan Nilsson; Magnus Skoglundh; Emma Adams; Xueting Wang; Peter Velin; Gudmund Smedler; Agnes Raj; David Thompsett; H.H. Brongersma; Thomas Grehl; Giovanni Agostini; Olivier Mathon; Stefan Carlson; Katarina Norén; Francisco Javier Martinez-Casado; Zdenek Matej; O. Balmes; Per-Anders Carlsson
Applied Catalysis B-environmental | 2016
Marika Männikkö; Xueting Wang; Magnus Skoglundh; Hanna Härelind
Journal of Physical Chemistry C | 2017
Xueting Wang; Adam Arvidsson; Magdalena O. Cichocka; Xiaodong Zou; Natalia Mihaela Martin; Johan Nilsson; Stefan Carlson; Johan Gustafson; Magnus Skoglundh; Anders Hellman; Per-Anders Carlsson
RSC Advances | 2018
Xueting Wang; Alexander Shishkin; Felix Hemmingsson; Magnus Skoglundh; Francisco Javier Martinez-Casado; Lorenz Bock; Alexander Idström; Lars Nordstierna; Hanna Härelind; Per-Anders Carlsson
Catalysis Science & Technology | 2018
Natalia Mihaela Martin; Felix Hemmingsson; Xueting Wang; Lindsay R. Merte; Uta Hejral; Gustafson Johan; Magnus Skoglundh; Debora Motta Meira; Ann-Christin Dippel; Olof Gutowski; Matthias Bauer; Per-Anders Carlsson
The 13th European Congress on Catalysis (EUROPACAT 2017), Florence | 2017
Xueting Wang; Adam Arvidsson; Magnus Skoglundh; Anders Hellman; Per-Anders Carlsson
Presented (oral) at the 25st North American Catalysis Society Meeting (NAM25), Denver, Colorado, USA, June 4-9, 2017 | 2017
Marika Männikkö; Xueting Wang; Linda Ström; Nadia Serey; Vladimir B. Golovko; Hanna Härelind
Presented at the TAILOR 2016, Fontainbleau, France, March 29-April 1, 2016. | 2016
Natalia Mihaela Martin; Johan Nilsson; Emma Adams; Xueting Wang; Magnus Skoglundh; Gudmund Smedler; Agnes Raj; David Thompsett; H.H. Brongersma; Giovanni Agostini; Olivier Mathon; Stefan Carlson; Katarina Norén; Per-Anders Carlsson