Computational Modelling — Toward Enhancing Performance of Electromagnetic Wave Absorption for Conductive Metal-Organic Frameworks: Nanostructure Engineering or Crystal Morphology Controlling

Measurement evidence

Computational Modelling

Toward Enhancing Performance of Electromagnetic Wave Absorption for Conductive Metal-Organic Frameworks: Nanostructure Engineering or Crystal Morphology Controlling · Wang X., Zhang X., He A. et al. · Inorganic Chemistry · 2024 · 6948-6956

4 measurement groups · 4 results

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

CST STUDIO SUITE radar cross-section simulation

A-Cu-HHTP/paraffin coaxial ring · Pellet

4.4 mm absorbing coating layer on PEC; 7.25 GHz excitation; incident angle -60 to 60 degrees.

Geometry
180 x 180 x 1 mm3 PEC substrate with Cu-HHTP coating
Context
A-Cu-HHTP absorber coating simulation
Measurement source
2,6 · 2.4; 3.2 · Figure 7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
A-Cu-HHTP RCS at vertical incidenceMarked as a best value within this paper-20.61 dB m2Text
Exact Reported
6 · 3.2 · Figure 7b

CST STUDIO SUITE radar cross-section simulation

B-Cu-HHTP/paraffin coaxial ring · Pellet

4.4 mm absorbing coating layer on PEC; 7.25 GHz excitation; incident angle -60 to 60 degrees.

Geometry
180 x 180 x 1 mm3 PEC substrate with Cu-HHTP coating
Context
B-Cu-HHTP absorber coating simulation
Measurement source
2,6 · 2.4; 3.2 · Figure 7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
B-Cu-HHTP RCS at vertical incidence-1.38 dB m2Text
Exact Reported
6 · 3.2 · Figure 7b

CST STUDIO SUITE radar cross-section simulation

C-Cu-HHTP/paraffin coaxial ring · Pellet

4.4 mm absorbing coating layer on PEC; 7.25 GHz excitation; incident angle -60 to 60 degrees.

Geometry
180 x 180 x 1 mm3 PEC substrate with Cu-HHTP coating
Context
C-Cu-HHTP absorber coating simulation
Measurement source
2,6 · 2.4; 3.2 · Figure 7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
C-Cu-HHTP RCS at vertical incidence2.34 dB m2Text
Exact Reported
6 · 3.2 · Figure 7b

CST STUDIO SUITE radar cross-section simulation

PEC reference model · Model

Uncoated PEC reference at 7.25 GHz, incident angle -60 to 60 degrees.

Geometry
180 x 180 x 1 mm3 PEC substrate
Context
PEC baseline
Measurement source
6 · 3.2 · Figure 7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PEC RCS at vertical incidence9.44 dB m2Text
Exact Reported
6 · 3.2 · Figure 7b