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

Measurement evidence

Porosity

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

2 measurement groups · 4 results

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

N2 adsorption-desorption, ASAP 2020, BET analysis

Pristine CuTBTT-1D powder/ribbon network · Powder

Measured at 77 K; samples degassed at 60 C for 8 h before gas adsorption.

Temperature
77
Atmosphere
N2
Context
pristine_framework
Measurement source
main p.2 · 2.1.2 Structural characterization · Figure 1d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area of CuTBTT-1D105.8 m2 g-1Text
Exact Reported
main p.2 · 2.1.2 Structural characterization · Figure 1d
Pore size of CuTBTT-1D1.34 nmText
Exact Reported
main p.2 · 2.1.2 Structural characterization · Figure 1d

N2 adsorption-desorption, ASAP 2020, BET analysis

Pristine CuTBTT-2D nanosheets · Powder

Measured at 77 K; samples degassed at 60 C for 8 h before gas adsorption.

Temperature
77
Atmosphere
N2
Context
pristine_framework
Measurement source
main p.2 · 2.1.2 Structural characterization · Figure 1g
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
BET surface area of CuTBTT-2DMarked as a best value within this paper147.3 m2 g-1Text
Exact Reported
main p.2 · 2.1.2 Structural characterization · Figure 1g
Pore size of CuTBTT-2D1.24 nmText
Exact Reported
main p.2 · 2.1.2 Structural characterization · Figure 1g