Other — Construction of 1D Molecular Conductive Wires Through a Polarized Gene Weaving Strategy for Efficient Electromagnetic Wave Absorption

Measurement evidence

Other

Construction of 1D Molecular Conductive Wires Through a Polarized Gene Weaving Strategy for Efficient Electromagnetic Wave Absorption · Chen C., Shan Z., Li B. et al. · Small · 2025 · 2409786

13 measurement groups · 22 results

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

Vector network analyser EMW absorption/reflection loss

CuTBTT-1D-10% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-1D active component
Measurement source
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S11
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Effective absorption bandwidth, CuTBTT-1D-10%6.0 GHzText
Exact Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S11
Minimum reflection loss, CuTBTT-1D-10%-38 dBText
Rounded Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S11

Vector network analyser EMW absorption/reflection loss

CuTBTT-1D-15% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-1D active component
Measurement source
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3b,e,g,h
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Maximum RL in C-band for CuTBTT-1D-15%-27.5 dB in the C-band (4-8 GHz)Text
Exact Reported
main p.4 · Frequency Band and Quarter Wavelength Theory Analysis · Figure 3g
Effective absorption bandwidth, CuTBTT-1D-15%Marked as a best value within this paper6.52 GHz (10.8-17.32 GHz)Text
Exact Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3e
Low-frequency absorption-peak thicknessabsorption peak reached its maximum at 4.2 GHz at 5.6 mmText
Exact Reported
main p.4 · Frequency Band and Quarter Wavelength Theory Analysis · Figure 3c,g
Minimum reflection loss, CuTBTT-1D-15%Marked as a best value within this paper-77 dBText
Rounded Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3b,e
Best absorber thickness, CuTBTT-1D-15%Marked as a best value within this paper2.2 mmText
Exact Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3b,e
Maximum RL in X-band for CuTBTT-1D-15%-33.9 dB in the X-band (8-12 GHz)Text
Exact Reported
main p.4 · Frequency Band and Quarter Wavelength Theory Analysis · Figure 3g

Vector network analyser EMW absorption/reflection loss

CuTBTT-1D-20% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-1D active component
Measurement source
SI p.14 · 4. Performance analysis · Figure S12
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Effective absorption bandwidth, CuTBTT-1D-20%2.68 GHzFigure Axis
Rounded Reported
SI p.14 · 4. Performance analysis · Figure S12
Minimum reflection loss, CuTBTT-1D-20%-12.8 dBFigure Axis
Rounded Reported
SI p.14 · 4. Performance analysis · Figure S12

Vector network analyser EMW absorption/reflection loss

CuTBTT-1D-25% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-1D active component
Measurement source
SI p.15 · 4. Performance analysis · Figure S13
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Effective absorption bandwidth, CuTBTT-1D-25%0.28 GHzFigure Axis
Rounded Reported
SI p.15 · 4. Performance analysis · Figure S13
Minimum reflection loss, CuTBTT-1D-25%-10.9 dBFigure Axis
Rounded Reported
SI p.15 · 4. Performance analysis · Figure S13

Vector network analyser EMW absorption/reflection loss

CuTBTT-1D-30% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-1D active component
Measurement source
SI p.15 · 4. Performance analysis · Figure S13
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CuTBTT-1D-30% absorption declinefurther increases in filler content led to a gradual decline in absorption performanceText
Qualitative
main p.5 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S13

Vector network analyser EMW absorption/reflection loss

CuTBTT-1D-5% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-1D active component
Measurement source
SI p.3 · Electromagnetic measurements · Figure S10
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Effective absorption bandwidth, CuTBTT-1D-5%3.67 GHzText
Exact Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S10
Minimum reflection loss, CuTBTT-1D-5%-23 dBText
Rounded Reported
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S10

Vector network analyser EMW absorption/reflection loss

CuTBTT-2D-15% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-2D active component
Measurement source
main p.5 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3a,d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Effective absorption bandwidth, CuTBTT-2D-15%0.4 GHzFigure Axis
Rounded Reported
main p.5 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3d
Minimum reflection loss, CuTBTT-2D-15%-12.8 dBFigure Axis
Rounded Reported
main p.5 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure 3a

Vector network analyser EMW absorption/reflection loss

CuTBTT-2D-25% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-2D active component
Measurement source
SI p.11 · 4. Performance analysis · Figure S9
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Effective absorption bandwidth, CuTBTT-2D-25%3.60 GHzFigure Axis
Rounded Reported
SI p.11 · 4. Performance analysis · Figure S9
Minimum reflection loss, CuTBTT-2D-25%-17.5 dBFigure Axis
Rounded Reported
SI p.11 · 4. Performance analysis · Figure S9

Vector network analyser EMW absorption/reflection loss

CuTBTT-2D-5% paraffin ring · Pellet

Agilent PNA N5224A, transmission-reflection mode, 2-18 GHz; paraffin composite toroidal rings.

Temperature
room temperature
Geometry
Toroidal ring outer diameter 7.00 mm, inner diameter 3.04 mm, thickness 3.00 mm
Context
composite sample with pristine CuTBTT-2D active component
Measurement source
SI p.10 · 4. Performance analysis · Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CuTBTT-2D-5% EMW absorptionpoor EMW absorption performanceText
Qualitative
main p.3 · 2.2.1 Efficient Electromagnetic Wave Absorption Performance · Figure S8

Thermogravimetric analysis (TGA)

Pristine CuTBTT-1D powder/ribbon network · Powder

TGA/SDTA851E under flowing N2, 10 K min-1 ramp; heated in platinum pan to 800 C.

Atmosphere
N2 flux, 60 mL min-1
Context
pristine_framework
Measurement source
SI p.2 · Thermogravimetric analysis (TGA) · Figure S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Thermal stabilitymaterials have thermal stability up to approximately 300 degreesapproximatelyText
Approximate
main p.2 · 2.1.2 Structural characterization · Figures S5-S6

Thermogravimetric analysis (TGA)

Pristine CuTBTT-2D nanosheets · Powder

TGA/SDTA851E under flowing N2, 10 K min-1 ramp; heated in platinum pan to 800 C.

Atmosphere
N2 flux, 60 mL min-1
Context
pristine_framework
Measurement source
SI p.8 · 3. Structural characterization · Figure S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource

Vibrating sample magnetometer magnetisation measurement

Pristine CuTBTT-1D powder/ribbon network · Powder

Magnetisation strength versus magnetic field.

Context
pristine_framework
Measurement source
main p.6 · Electromagnetic Parameters Analysis · Figure 4c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Weak magnetic contribution for CuTBTT-1DVSM supports weak magnetic loss compared with dielectric lossText
Qualitative
main p.5 · Electromagnetic Parameters Analysis · Figure 4c

Vibrating sample magnetometer magnetisation measurement

Pristine CuTBTT-2D nanosheets · Powder

Magnetisation strength versus magnetic field.

Context
pristine_framework
Measurement source
SI p.15 · 4. Performance analysis · Figure S14
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource