Computational Modelling — Promoting electromagnetic wave absorption for conductive metal-organic frameworks through crystal morphology controlling

Measurement evidence

Computational Modelling

Promoting electromagnetic wave absorption for conductive metal-organic frameworks through crystal morphology controlling · Wang X., Zhang X., Lu J. et al. · Dalton Transactions · 2025 · 11525-11532

3 measurement groups · 6 results

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

CST Microwave Studio radar cross-section simulation

Ni-TABQ-1/paraffin coaxial absorber ring · Pellet

Absorbing coating layer of Ni-TABQ-1/paraffin on PEC substrate; scanning angle -60 to 60 degrees; frequency 10.16 GHz.

Geometry
absorber coating on PEC substrate 180x180x1 mm3
Context
composite absorber coating
Measurement source
SI p.6 · 7. Radar Ccross-Section (RCS) Simulation · Fig. 5; Fig. S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
RCS excitation frequency10.16 GHzText
Exact Reported
SI p.6 · 7. Radar Ccross-Section (RCS) Simulation · Fig. S8
RCS absorber coating thickness2.94 mmText
Exact Reported
SI p.6 · 7. Radar Ccross-Section (RCS) Simulation · Fig. S8
RCS at vertical incidenceMarked as a best value within this paper-24.72 dBm2Text
Exact Reported
main p.6 / journal p.11530 · Results and discussion · Fig. 5
RCS below threshold over angle rangeless than -20 dBm2 in -60 to 60 degree rangeText
Qualitative
main p.6 / journal p.11530 · Results and discussion · Fig. 5a

CST Microwave Studio radar cross-section simulation

Ni-TABQ-2/paraffin coaxial absorber ring · Pellet

Absorbing coating layer of Ni-TABQ-2/paraffin on PEC substrate; scanning angle -60 to 60 degrees; frequency 10.16 GHz.

Geometry
absorber coating on PEC substrate 180x180x1 mm3
Context
composite absorber coating
Measurement source
SI p.6 · 7. Radar Ccross-Section (RCS) Simulation · Fig. 5; Fig. S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
RCS at vertical incidence9.96 dBm2Text
Exact Reported
main p.6 / journal p.11530 · Results and discussion · Fig. 5

CST Microwave Studio radar cross-section simulation

PEC reference model · Model

Perfect electrical conductor reference plate; scanning angle -60 to 60 degrees; frequency 10.16 GHz.

Geometry
PEC substrate 180x180x1 mm3
Context
PEC model control
Measurement source
SI p.6 · 7. Radar Ccross-Section (RCS) Simulation · Fig. S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
RCS at vertical incidence12.29 dBm2Text
Exact Reported
main p.6 / journal p.11530 · Results and discussion · Fig. 5