Journalartikel
Autorenliste: Gvilava, V; Vieten, M; Oestreich, R; Woschko, D; Steinert, M; Boldog, I; Bulanek, R; Fokina, NA; Schreiner, PR; Janiak, C
Jahr der Veröffentlichung: 2022
Seiten: 7530-7534
Zeitschrift: CrystEngComm
Bandnummer: 24
Heftnummer: 43
eISSN: 1466-8033
Open Access Status: Hybrid
DOI Link: https://doi.org/10.1039/d2ce01170k
Verlag: Royal Society of Chemistry
Abstract:
The first use of a bulky barrel-shaped ligand is demonstrated in HHUD-3, with accessible porosity only feasible for a defect structure. With 35%+ missing linker defects and S-BET = 890 m(2)g(-1) (N-2), HHUD-3 features higher CH4 but lower CO2 and H-2 adsorption than UiO-66.
Zitierstile
Harvard-Zitierstil: Gvilava, V., Vieten, M., Oestreich, R., Woschko, D., Steinert, M., Boldog, I., et al. (2022) A diamantane-4,9-dicarboxylate based UiO-66 analogue: challenging larger hydrocarbon cage platforms, CrystEngComm, 24(43), pp. 7530-7534 . https://doi.org/10.1039/d2ce01170k
APA-Zitierstil: Gvilava, V., Vieten, M., Oestreich, R., Woschko, D., Steinert, M., Boldog, I., Bulanek, R., Fokina, N., Schreiner, P., & Janiak, C. (2022). A diamantane-4,9-dicarboxylate based UiO-66 analogue: challenging larger hydrocarbon cage platforms. CrystEngComm. 24(43), 7530-7534 . https://doi.org/10.1039/d2ce01170k