Other — Conductive MOFs with tailored polarization loss for broadband absorption at ultrathin thickness

Measurement evidence

Other

Conductive MOFs with tailored polarization loss for broadband absorption at ultrathin thickness · Zhang W., Luo J., Shi J. et al. · Nano Research · 2025 · 94907919

6 measurement groups · 29 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

Vector network analyser coaxial electromagnetic-parameter measurement and reflection-loss calculation

CuCo-5 · Powder

Agilent N5244A VNA, 2-18 GHz; 50 wt% sample in paraffin wax coaxial ring.

Geometry
coaxial ring
Context
MOF/paraffin test composite for EMWA measurement
Measurement source
5 · 3.2 · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
attenuation constant alpha range CuCo-5Marked as a best value within this paper48.93 to 307.11 m-1Text
Range
8 · 3.2 · Fig. 4(j)
effective absorption bandwidth CuCo-56.48 GHz (10.96-17.44 GHz) at 1.76 mmText
Exact Reported
5 · 3.2 · Figs. 3(e1)-3(e3)
epsilon prime range CuCo-516.63 to 8.30Text
Range
7 · 3.2 · Fig. 4(a)
impedance matching area ratio CuCo-533%Figure Axis
Exact Reported
8 · Supplementary figures · Fig. S6(b)

Vector network analyser coaxial electromagnetic-parameter measurement and reflection-loss calculation

CuMn-4 · Powder

Agilent N5244A VNA, 2-18 GHz; 50 wt% sample in paraffin wax coaxial ring.

Geometry
coaxial ring
Context
MOF/paraffin test composite for EMWA measurement
Measurement source
5 · 3.2 · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
attenuation constant alpha range CuMn-455.89 to 258.97 m-1Text
Range
8 · 3.2 · Fig. 4(j)
effective absorption bandwidth CuMn-46.00 GHz (12.00-18.00 GHz) at 1.83 mmText
Exact Reported
5 · 3.2 · Figs. 3(d1)-3(d3)
epsilon prime range CuMn-414.58 to 6.59Text
Range
7 · 3.2 · Fig. 4(a)
impedance matching area ratio CuMn-4Marked as a best value within this paper44%Figure Axis
Exact Reported
8 · Supplementary figures · Fig. S6(a)

Vector network analyser coaxial electromagnetic-parameter measurement and reflection-loss calculation

CuNi-6 · Powder

Agilent N5244A VNA, 2-18 GHz; 50 wt% sample in paraffin wax coaxial ring.

Geometry
coaxial ring
Context
MOF/paraffin test composite for EMWA measurement
Measurement source
5 · 3.2 · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
attenuation constant alpha range CuNi-659.61 to 280.58 m-1Text
Range
8 · 3.2 · Fig. 4(j)
effective absorption bandwidth CuNi-6Marked as a best value within this paper7.12 GHz (10.88-18.00 GHz) at 1.78 mmText
Exact Reported
5 · 3.2 · Figs. 3(f1)-3(f3)
epsilon prime range CuNi-615.53 to 7.22Text
Range
7 · 3.2 · Fig. 4(a)
impedance matching area ratio CuNi-629%Figure Axis
Exact Reported
8 · Supplementary figures · Fig. S6(c)

Vector network analyser coaxial electromagnetic-parameter measurement and reflection-loss calculation

CuZn-1 · Powder

Agilent N5244A VNA, 2-18 GHz; sample blended with paraffin wax at 50 wt% and compacted into coaxial ring with 7.00 mm outer diameter and 3.04 mm inner diameter.

Geometry
coaxial ring
Context
MOF/paraffin test composite for EMWA measurement
Measurement source
1 · Characterizations
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
reported CuZn-1 alpha peak238.61 m-1 between 6.00-10.00 GHzText
Exact Reported
8 · 3.2 · Fig. 4(j)
attenuation constant alpha range CuZn-130.81 to 171.22 m-1Text
Range
8 · 3.2 · Fig. 4(j)
effective absorption bandwidth CuZn-14.88 GHz (13.12-18.00 GHz) at 2.00 mmText
Exact Reported
5 · 3.2 · Figs. 3(a1)-3(a3)
epsilon prime range CuZn-19.83 to 6.33Text
Range
7 · 3.2 · Fig. 4(a)
impedance matching area ratio CuZn-133%Figure Axis
Exact Reported
7 · 3.2 · Fig. 4(g)
minimum reflection loss CuZn-1Marked as a best value within this paper-66.20 dB at 7.44 GHz and 3.24 mmText
Exact Reported
5 · 3.2 · Figs. 3(a1)-3(a3)
CuZn-X dielectric loss tangent range0.25-0.5Text
Range
7 · 3.2 · Fig. 4(c)

Vector network analyser coaxial electromagnetic-parameter measurement and reflection-loss calculation

CuZn-2 · Powder

Agilent N5244A VNA, 2-18 GHz; 50 wt% sample in paraffin wax coaxial ring.

Geometry
coaxial ring
Context
MOF/paraffin test composite for EMWA measurement
Measurement source
5 · 3.2 · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
attenuation constant alpha range CuZn-238.02 to 167.69 m-1Text
Range
8 · 3.2 · Fig. 4(j)
effective absorption bandwidth CuZn-26.16 GHz (11.84-18.00 GHz) at 2.29 mmText
Exact Reported
5 · 3.2 · Figs. 3(b1)-3(b3)
epsilon prime range CuZn-27.95 to 5.20Text
Range
7 · 3.2 · Fig. 4(a)
impedance matching area ratio CuZn-221%Figure Axis
Exact Reported
7 · 3.2 · Fig. 4(h)
minimum reflection loss CuZn-2-27.55 dB at 2.55 mmText
Exact Reported
5 · 3.2 · Figs. 3(b1)-3(b3)

Vector network analyser coaxial electromagnetic-parameter measurement and reflection-loss calculation

CuZn-3 · Powder

Agilent N5244A VNA, 2-18 GHz; 50 wt% sample in paraffin wax coaxial ring.

Geometry
coaxial ring
Context
MOF/paraffin test composite for EMWA measurement
Measurement source
5 · 3.2 · Fig. 3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
attenuation constant alpha range CuZn-323.03 to 93.58 m-1Text
Range
8 · 3.2 · Fig. 4(j)
effective absorption bandwidth CuZn-33.12 GHz (7.52-10.64 GHz) at 4.00 mmText
Exact Reported
5 · 3.2 · Figs. 3(c1)-3(c3)
epsilon prime range CuZn-36.32 to 4.73Text
Range
7 · 3.2 · Fig. 4(a)
impedance matching area ratio CuZn-30.4%Figure Axis
Exact Reported
7 · 3.2 · Fig. 4(i)
minimum reflection loss CuZn-3-14.90 dB at 4.00 mmText
Exact Reported
5 · 3.2 · Figs. 3(c1)-3(c3)