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Influence of layer slipping on adsorption of light gases in covalent organic frameworks: A combined experimental and computational study

, , , , , , and . Microporous and Mesoporous Materials, (2022)
DOI: https://doi.org/10.1016/j.micromeso.2022.111796

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Sebastian Hügle University of Stuttgart

Post-processed and normalized data sets for the data processing, analysis, and evaluation methods for co-design of coreless filament-wound structures, , , , , , , , , and 4 other author(s). Dataset, (2023)Related to: Gil Pérez, M., Mindermann, P., Zechmeister, C., Forster, D., Guo, Y., Hügle, S., Kannenberg, F., Balangé, L., Schwieger, V., Middendorf, P., Bischoff, M., Menges, A., Gresser, G., & Knippers, J. (2023). Data processing, analysis, and evaluation methods for co-design of coreless filament-wound building systems. Journal of Computational Design and Engineering under review.
 

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Crystal Structure, Polymorphism, and Anisotropic Thermal Expansion of α-Ca(CH3COO)2, , , , , and . Crystal Growth & Design, 20 (8): 5346-5355 (2020)Supplementary material for 'Influence of Layer Slipping on Adsorption of Light Gases in Covalent Organic Frameworks: A Combined Experimental and Computational Study', , , , , , and . Dataset, (2022)Related to: Kessler, Christopher; Schuldt, Robin, Emmerling, Sebastian; Lotsch, Bettina, Kästner, Johannes; Gross, Joachim, Hansen, Niels: Influence of Layer Slipping on Adsorption of Light Gases in Covalent Organic Frameworks: A Combined Experimental and Computational Study. Microporous and Mesoporous Materials 336 (2022), 111796. doi: 10.1016/j.micromeso.2022.111796.Influence of layer slipping on adsorption of light gases in covalent organic frameworks: A combined experimental and computational study, , , , , , and . Microporous and Mesoporous Materials, (May 2022)Influence of layer slipping on adsorption of light gases in covalent organic frameworks: A combined experimental and computational study, , , , , , and . Microporous and Mesoporous Materials, (2022)Interlayer Interactions as Design Tool for Large-Pore COFs, , , , , , and . Journal of the American Chemical Society, 143 (38): 15711-15722 (2021)Interlayer Interactions as Design Tool for Large-Pore COFs, , , , , , and . J. Am. Chem. Soc., 143 (38): 15711-15722 (2021)Covalent Organic Framework Nanoplates Enable Solution-Processed Crystalline Nanofilms for Photoelectrochemical Hydrogen Evolution, , , , , , , , , and 6 other author(s). Journal of the American Chemical Society, 144 (23): 10291-10300 (2022)Olefin Metathesis in Confinement : Towards Covalent Organic Framework Scaffolds for Increased Macrocyclization Selectivity, , , , , , , and . Chemistry - a European journal, 28 (8): e202104108 (2022)