Isoreticular Expansion in Porous Aluminum(III) andGallium(III) Phosphonates: Synthesis, Structure, and Properties

J. Theissen, M. Radke, S. Mangelsen, E. Derveaux, R.M. Narváez Adams, T. Wagner, J. Lopau, C. Näther, C. Nelle, J. Struve, F. Steinke, J. Gándara Loe, N. Gys, T. Hauffman, M. Tiemann, F. Tielens, P. Adriaensens, S. Henke, W. Marchal, R. Ameloot, N. Stock, Chemistry of Materials 38 (2026) 8463–8475.

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Theissen, Jennifer; Radke, Marvin; Mangelsen, Sebastian; Derveaux, Elien; Narváez Adams, Roberth Mateo; Wagner, Tobias; Lopau, Jasper; Näther, Christian; Nelle, Christian; Struve, Jörn; Steinke, Felix; Gándara Loe, Jesús
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Abstract
We report the synthesis, structural elucidation, and establishment of structure−property relationships for two metal−organic frameworks (MOFs), [M(OH)(H2BPD)]·xH2O (M = Al3+, Ga3+, x = 11–13), denoted as M-CAU-67, employing the ditopic linker molecule N,N′-4,4′ bipiperidine bis(methylenephosphonic acid) (H4BPD). The title compounds can be synthesized on a milligram scale under hydrothermal conditions, while gram-scale synthesis was realized under reflux conditions. Single-crystal X-ray diffraction (SCXRD) revealed an isoreticular, expanded MIL-91 type structure, representing a rare case of isoreticular expansion in porous metal phosphonates. The framework structure was confirmed by Rietveld refinement against powder X-ray diffraction (PXRD) data and further validated by solid-state NMR spectroscopy (31P MAS, 27Al 3Q MAS). Solvent-exchange experiments and variable-humidity/temperature PXRD data revealed high framework flexibility. The compounds show permanent microporosity and a complex, polarity- and size-dependent sorption behavior toward gases and vapors.
Publishing Year
Journal Title
Chemistry of Materials
Volume
38
Issue
16
Page
8463-8475
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Theissen J, Radke M, Mangelsen S, et al. Isoreticular Expansion in Porous Aluminum(III) andGallium(III) Phosphonates: Synthesis, Structure, and Properties. Chemistry of Materials. 2026;38(16):8463-8475. doi:10.1021/acs.chemmater.6c01336
Theissen, J., Radke, M., Mangelsen, S., Derveaux, E., Narváez Adams, R. M., Wagner, T., Lopau, J., Näther, C., Nelle, C., Struve, J., Steinke, F., Gándara Loe, J., Gys, N., Hauffman, T., Tiemann, M., Tielens, F., Adriaensens, P., Henke, S., Marchal, W., … Stock, N. (2026). Isoreticular Expansion in Porous Aluminum(III) andGallium(III) Phosphonates: Synthesis, Structure, and Properties. Chemistry of Materials, 38(16), 8463–8475. https://doi.org/10.1021/acs.chemmater.6c01336
@article{Theissen_Radke_Mangelsen_Derveaux_Narváez Adams_Wagner_Lopau_Näther_Nelle_Struve_et al._2026, title={Isoreticular Expansion in Porous Aluminum(III) andGallium(III) Phosphonates: Synthesis, Structure, and Properties}, volume={38}, DOI={10.1021/acs.chemmater.6c01336}, number={16}, journal={Chemistry of Materials}, publisher={American Chemical Society (ACS)}, author={Theissen, Jennifer and Radke, Marvin and Mangelsen, Sebastian and Derveaux, Elien and Narváez Adams, Roberth Mateo and Wagner, Tobias and Lopau, Jasper and Näther, Christian and Nelle, Christian and Struve, Jörn and et al.}, year={2026}, pages={8463–8475} }
Theissen, Jennifer, Marvin Radke, Sebastian Mangelsen, Elien Derveaux, Roberth Mateo Narváez Adams, Tobias Wagner, Jasper Lopau, et al. “Isoreticular Expansion in Porous Aluminum(III) AndGallium(III) Phosphonates: Synthesis, Structure, and Properties.” Chemistry of Materials 38, no. 16 (2026): 8463–75. https://doi.org/10.1021/acs.chemmater.6c01336.
J. Theissen et al., “Isoreticular Expansion in Porous Aluminum(III) andGallium(III) Phosphonates: Synthesis, Structure, and Properties,” Chemistry of Materials, vol. 38, no. 16, pp. 8463–8475, 2026, doi: 10.1021/acs.chemmater.6c01336.
Theissen, Jennifer, et al. “Isoreticular Expansion in Porous Aluminum(III) AndGallium(III) Phosphonates: Synthesis, Structure, and Properties.” Chemistry of Materials, vol. 38, no. 16, American Chemical Society (ACS), 2026, pp. 8463–75, doi:10.1021/acs.chemmater.6c01336.
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