W
Wu Wang
Researcher at Karlsruhe Institute of Technology
Publications - 180
Citations - 1092
Wu Wang is an academic researcher from Karlsruhe Institute of Technology. The author has contributed to research in topics: Medicine & Catalysis. The author has an hindex of 13, co-authored 44 publications receiving 620 citations. Previous affiliations of Wu Wang include Technische Universität Darmstadt & Shanghai University.
Papers
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Journal ArticleDOI
Potential of an Alumina-Supported Ni3Fe Catalyst in the Methanation of CO2: Impact of Alloy Formation on Activity and Stability
Benjamin Mutz,Michael Belimov,Wu Wang,Paul Sprenger,Marc-André Serrer,Di Wang,Peter Pfeifer,Wolfgang Kleist,Jan-Dierk Grunwaldt +8 more
TL;DR: In this paper, a promising bimetallic 17 wt % Ni3Fe catalyst supported on γ-Al2O3 was prepared via homogeneous deposition-precipitation for the application in the methanation of CO2 to gather more detailed insight into the structure and performance of the catalyst compared to state-of-the-art systems.
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Composition-dependent crystal structure and martensitic transformation in Heusler Ni–Mn–Sn alloys
TL;DR: In this paper, the authors used X-ray diffraction, high-resolution transmission electron microscopy, electron diffraction techniques and thermal analysis to characterize four and five-layered orthorhombic, seven-layer monoclinic (4O, 10M and 14M) and unmodulated double tetragonal (L10) martensites.
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Nickel@Siloxene catalytic nanosheets for high-performance CO 2 methanation
Xiaoliang Yan,Xiaoliang Yan,Wei Sun,Wei Sun,Fan Liming,Paul N. Duchesne,Wu Wang,Christian Kübel,Di Wang,Sai Govind Hari Kumar,Young Feng Li,Alexandra Tavasoli,Thomas E. Wood,Darius L. H. Hung,Lili Wan,Lu Wang,Rui Song,Jiuli Guo,Ilya Gourevich,Abdinoor A. Jelle,Jingjun Lu,Ruifeng Li,Benjamin Hatton,Geoffrey A. Ozin +23 more
TL;DR: It is found that the internal or external confinement of Ni on multi-layered siloxene supports determined the reaction pathway, activity, selectivity, and stability in CO2 methanation.
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Hindered Diffusion in Ordered Mesoporous Silicas: Insights from Pore-Scale Simulations in Physical Reconstructions of SBA-15 and KIT-6 Silica
Stefan-Johannes Reich,Artur Svidrytski,Alexandra Höltzel,Justyna Florek,Freddy Kleitz,Wu Wang,Christian Kübel,Dzmitry Hlushkou,Ulrich Tallarek +8 more
TL;DR: In this paper, a reconstruction-simulation approach was applied to purely mesoporous SBA-15 and KIT-6 silica samples with a mean pore size of 9.4 nm.
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Microfluidically synthesized Au, Pd and AuPd nanoparticles supported on SnO2 for gas sensing applications
Ghazal Tofighi,David Degler,Benjamin Junker,Sabrina Müller,Henning Lichtenberg,Wu Wang,Udo Weimar,Nicolae Barsan,Jan-Dierk Grunwaldt +8 more
TL;DR: In this paper, the authors synthesized ultrasmall nanoparticles (NPs) and homogeneous AuPd nanoalloy particles using a microfluidic reactor with efficient micromixers.