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Beilstein J. Nanotechnol. 2025, 16, 155–186, doi:10.3762/bjnano.16.14
Figure 1: Overview of subtopics covered in this review for the key research areas related to MOF-based MMMs f...
Figure 2: (a) CO2 uptake by size exclusion in rigid PCN-29. Adapted with permission from [50], Copyright 2011 Ame...
Figure 3: The number of articles related to MOF-derived MMMs in the scientific literature published each year...
Figure 4: Illustration of different flat sheet MOF-based MMM preparation methods. (a) Different ways of prepa...
Figure 5: (a) Schematic diagram of a composite hollow fiber mixed matrix membrane. (c, e) Cross-sectional sca...
Figure 6: Illustration of different MOF–polymer matrix interfaces. (a) An ideal MOF–polymer matrix interface....
Figure 7: Illustration of different solutions to enhance MOF–polymer interfacial compatibility. (a) Polymer-g...
Figure 8: Cross-sectional SEM images of (a) HKUST-1 MMM and (d) HKUST-IL MMM and surface-rendered view of seg...
Figure 9: (a) HKUST-1 structure with cavities of 14 Å (green sphere), 11 Å (blue sphere), and 5 Å (purple sph...
Figure 10: Selectivity–permeability plots of MOF-based MMMs for CO2 capture reported in the literature. Detail...
Figure 11: Schematic diagram of the UiO-66-PIM preparation method and cross-interface linking between UiO-66-NH...
Figure 12: Selectivity/permeability characteristics of MOF-based MMMs for separation of ternary CO2/H2S/CH4 mi...
Figure 13: Schematic illustration and cross-section SEM images of (a) (001)-oriented membrane and (b) random f...
Beilstein J. Nanotechnol. 2022, 13, 230–235, doi:10.3762/bjnano.13.17
Figure 1: TEM micrographs of Os NPs obtained using water (66 vol %) and methanol (33 vol %), no base, and 100...
Figure 2: PDFs obtained from three different syntheses of Os NPs in 1:2 alcohol/water ratios and for differen...
Figure 3: Fit of a hcp cluster (seen in the insert) to the PDF obtained from the Os NPs formed in methanol/wa...
Figure 4: (a) Measured PDF of OsCl3 in methanol/water. The insert shows the same PDF plotted to 21 Å. (b) Ove...
Beilstein J. Nanotechnol. 2020, 11, 1865–1872, doi:10.3762/bjnano.11.168
Figure 1: (a) SEM micrograph of a C1/N2/C3/N4 structure in which a break between the N2 and C3 part leads to ...
Figure 2: Raman spectra of each section of a C1/N2/C3 structure.
Figure 3: (a–e) SEM micrographs of the powder collected after the synthesis of C1/N2/C3 structures. (e) The o...
Figure 4: (a–d) TEM characterization of a N1/C2 interface marked by the presence of metal (iron) nanoparticle...
Figure 5: Schematic representing the growth mechanism and the relation between inner diameter and catalyst na...