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Beilstein J. Nanotechnol. 2022, 13, 437–443, doi:10.3762/bjnano.13.36
Figure 1: Crystal structures of [Mg(H2O)2(H3L)]·H2O) (left) and [Pb2(HL)]·H2O) (right). General color scheme:...
Figure 2: Nyquist plots (imaginary vs real part of impedance Z) of (a) [Mg(H2O)2(H3L)]·H2O and (b) [Pb2(HL)]·H...
Figure 3: Proton conductivity (dashed lines as a guide to the eye) of [Mg(H2O)2(H3L)]·H2O (Mg-CP) and [Pb2(HL...
Figure 4: Bode plots (absolute value of impedance Z and phase angle Φ vs frequency f) of (a) [Mg(H2O)2(H3L)]·H...
Figure 5: Real parts of the conductivity values of [Mg(H2O)2(H3L)]·H2O and [Pb2(HL)]·H2O obtained by conversi...
Figure 6: (a) Proton conductivity (dashed lines as guide to the eye) of [Mg(H2O)2(H3L)]·H2O (Mg-CP) and [Pb2(...
Beilstein J. Nanotechnol. 2019, 10, 1851–1859, doi:10.3762/bjnano.10.180
Scheme 1: Synthesis of MFU-4.
Figure 1: Thermogravimetric analysis of MFU-4 before (black) and after (Sample 3a, blue) the loading of SF6 m...
Figure 2: FTIR spectra of MFU-4 before (black) and after (Sample 3a, blue) the loading of SF6. Bands attribut...
Figure 3: Powder X-ray diffraction analysis of MFU-4 before (black) and after (Sample 3a, blue) the loading o...
Figure 4: 19F MAS NMR spectrum of MFU-4 (Sample 3b) loaded with SF6 recorded at room temperature. The spectru...
Figure 5: (a) MFU-4 unit cell showing the linear transition scan path for SF6 crossing a single small pore. (...
Figure 6: Thermogravimetric analysis of MFU-4 loaded with SF6 (Sample 3a) after 0, 1, 3, 7, 14, and 60 days m...
Figure 7: FTIR spectra of MFU-4 loaded with SF6 (Sample 3a) after 0, 1, 3, 7, 14, and 60 days. Bands attribut...