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  • (-) Empa Laboratories = 299 Electron Microscopy Center
  • (-) Publication Year = 2010 - 2019
  • (-) Empa Authors = Zhang, Yucheng
  • (-) Journal ≠ Chemistry of Materials
  • (-) Empa Authors = Matam, Santhosh K.
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The effect of activation time on water sorption behavior of nitrogen-doped, physically activated, monolithic carbon for adsorption cooling
Huber, L., Hauser, S. B., Brendlé, E., Ruch, P., Ammann, J., Hauert, R., … Koebel, M. M. (2019). The effect of activation time on water sorption behavior of nitrogen-doped, physically activated, monolithic carbon for adsorption cooling. Microporous and Mesoporous Materials, 276, 239-250. https://doi.org/10.1016/j.micromeso.2018.09.025
Water sorption behavior of physically and chemically activated monolithic nitrogen doped carbon for adsorption cooling
Huber, L., Ruch, P., Hauert, R., Matam, S. K., Saucke, G., Yoon, S., … Koebel, M. M. (2016). Water sorption behavior of physically and chemically activated monolithic nitrogen doped carbon for adsorption cooling. RSC Advances, 6(84), 80729-80738. https://doi.org/10.1039/C6RA18660B
Electron energy loss spectroscopy analysis of the interaction of Cr and V with MWCNTs
Ilari, G. M., Chawla, V., Matam, S., Zhang, Y., Michler, J., & Erni, R. (2016). Electron energy loss spectroscopy analysis of the interaction of Cr and V with MWCNTs. Micron, 84, 37-42. https://doi.org/10.1016/j.micron.2016.02.009
Methanol steam reforming catalysts derived by reduction of perovskite-type oxides LaCo<sub>1−<em>x−y</em></sub>Pd<sub><em>x</em></sub>Zn<sub><em>y</em></sub>O<sub>3±<em>δ</em></sub>
Kuc, J., Neumann, M., Armbrüster, M., Yoon, S., Zhang, Y., Erni, R., … Matam, S. K. (2016). Methanol steam reforming catalysts derived by reduction of perovskite-type oxides LaCo1−x−yPdxZnyOδ. Catalysis Science and Technology, 6(5), 1455-1468. https://doi.org/10.1039/C5CY01410G
Composition dependent self-regenerative property of perovskite-type oxides
Kuc, J., Zhang, Y., Erni, R., Yoon, S., Karvonen, L., Weidenkaff, A., & Matam, S. K. (2015). Composition dependent self-regenerative property of perovskite-type oxides. Physica Status Solidi: Rapid Research Letters, 9(5), 282-287. https://doi.org/10.1002/pssr.201510072