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Results: 305
Number of items: 305
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Gitis, V., & Rothenberg, G. (Eds.) (2021). Handbook of Porous Materials : Synthesis, Properties, Modeling and Key Applications. - Volume 2: Characterisation and Simulation of Porous Materials. (Materials and Energy; Vol. 16). World Scientific. https://doi.org/10.1142/11909-vol2
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Gitis, V., Rothenberg, G., & Kiss, A. A. (Eds.) (2021). Handbook of Porous Materials : Synthesis, Properties, Modeling and Key Applications. - Volume 3: Separations Using Porous Materials. (Materials and Energy; Vol. 16). World Scientific. https://doi.org/10.1142/11909-vol3
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Gitis, V., Rothenberg, G., & Eisenberg, D. (Eds.) (2021). Handbook of Porous Materials : Synthesis, Properties, Modeling and Key Applications. - Volume 4: Porous Materials for Energy Conversion and Storage. (Materials and Energy; Vol. 16). World Scientific. https://doi.org/10.1142/11909-vol4
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Rothenberg, G. (2021). Preface by Volume Editor - Vol. 2. In V. Gitis, & G. Rothenberg (Eds.), Handbook of Porous Materials: Synthesis, Properties, Modeling and Key Applications (Vol. 2, pp. vii-viii). (Materials and Energy; Vol. 16). World Scientific. https://doi.org/10.1142/9789811223396_fmatter
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Biemolt, J., Douglin, J. C., Singh, R. K., Davydova, E. S., Yan, N., Rothenberg, G., & Dekel, D. R. (2021). An Anion-Exchange Membrane Fuel Cell Containing Only Abundant and Affordable Materials. Energy Technology, 9(4), Article 2000909. https://doi.org/10.1002/ente.202000909 -
Douglin, J. C., Singh, R. K., Haj-Bsoul, S., Li, S., Biemolt, J., Yan, N., Varcoe, J. R., Rothenberg, G., & Dekel, D. R. (2021). A high-temperature anion-exchange membrane fuel cell with a critical raw material-free cathode. Chemical Engineering Journal Advances, 8, Article 100153. https://doi.org/10.1016/j.ceja.2021.100153 -
Ronda-Lloret, M., Yang, L., Hammerton, M., Marakatti, V. S., Tromp, M., Sofer, Z., Sepulveda-Escribano, A., Ramos-Fernandez, E. V., Jose Delgado, J., Rothenberg, G., Reina, T. R., & Shiju, N. R. (2021). Molybdenum Oxide Supported on Ti3AlC2 is an Active Reverse Water-Gas Shift Catalyst. ACS Sustainable Chemistry & Engineering, 9(14), 4957-4966. https://doi.org/10.1021/acssuschemeng.0c07881 -
Yan, X., Biemolt, J., Zhao, K., Zhao, Y., Cao, X., Yang, Y., Wu, X., Rothenberg, G., & Yan, N. (2021). A membrane-free flow electrolyzer operating at high current density using earth-abundant catalysts for water splitting. Nature Communications, 12, Article 4143. https://doi.org/10.1038/s41467-021-24284-5 -
Slot, T. K., Yue, F., Xu, H., Ramos-Fernandez, E. V., SepĂșlveda-Escribano, A., Sofer, Z., Rothenberg, G., & Raveendran Shiju, N. (2021). Surface oxidation of Ti3C2Tx enhances the catalytic activity of supported platinum nanoparticles in ammonia borane hydrolysis. 2D Materials, 8(1), Article 015001. https://doi.org/10.1088/2053-1583/ababef
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