Vector network analyser complex permittivity measurement
Zn3Cu1-HHTP/paraffin toroidal ring · Pellet
Agilent N5234A VNA, 2-18 GHz; toroidal ring prepared from 50 wt % cMOF alloy and 50 wt % paraffin wax.
| Property | Reported value | Normalised value | Uncertainty | Origin and quality | Source |
|---|---|---|---|---|---|
| Imaginary permittivity range, Cu-HHTP composite | 2.40 to 1.09 | — | — | Text Range | 5 · Results · Fig. 3B |
| Real permittivity range, Cu-HHTP composite | 6.65 to 4.59 | — | — | Text Range | 5 · Results · Fig. 3A |
| Imaginary permittivity range, Zn1Cu3-HHTP composite | 1.87 to 0.92 | — | — | Text Range | 5 · Results · Fig. 3B |
| Real permittivity range, Zn1Cu3-HHTP composite | 6.13 to 4.60 | — | — | Text Range | 5 · Results · Fig. 3A |
| Imaginary permittivity range, Zn2Cu2-HHTP composite | 2.9 to 1.40 | — | — | Text Range | 5 · Results · Fig. 3B |
| Real permittivity range, Zn2Cu2-HHTP composite | 7.31 to 4.90 | — | — | Text Range | 5 · Results · Fig. 3A |
| Approximate maximum attenuation coefficient, Zn3Cu1-HHTP compositeMarked as a best value within this paper | ~260 at 18 GHz | — | visual estimate from axis | Figure Axis Approximate | 5 · Fig. 3F · Fig. 3F |
| Imaginary permittivity range, Zn3Cu1-HHTP compositeMarked as a best value within this paper | 5.95 to 3.3 | — | — | Text Range | 5 · Results · Fig. 3B |
| Real permittivity range, Zn3Cu1-HHTP composite | 16.17 to 10.43 | — | — | Text Range | 5 · Results · Fig. 3A |
| Imaginary permittivity range, Zn-HHTP composite | 5.90 to 3.33 | — | — | Text Range | 5 · Results · Fig. 3B |
| Real permittivity range, Zn-HHTP compositeMarked as a best value within this paper | 25.25 to 19.07 | — | — | Text Range | 5 · Results · Fig. 3A |
| ZnNi-HHTP permittivity tuneability | bimetallic ZnNi-HHTP also allows effective adjustment of permittivity | — | — | Qualitative Qualitative | 5 · Results · Fig. S16 |