Other — Molecular-Level Pore Tuning in 2D Conductive Metal-Organic Frameworks for Advanced Supercapacitor Performance

Measurement evidence

Other

Molecular-Level Pore Tuning in 2D Conductive Metal-Organic Frameworks for Advanced Supercapacitor Performance · Lee G., Park G., Park S.S. · Journal of the American Chemical Society · 2024 · 29767-29772

2 measurement groups · 6 results

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

Water contact angle

Free-standing Cu3(HHTATP)2 composite electrode · Electrode

10 uL DI water droplet under ambient conditions; measured at 0, 60 and 180 s; repeated on three electrodes.

Context
composite electrode
Measurement source
S5; 29769 · Contact angle measurement · Figures 1c and S10
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Water contact angle at 0 s~70 degFigure Axis
Approximate
29768 · Figure 1c · Figure 1c
Water contact angle after 180 sMarked as a best value within this paper46.4 +/- 3.3 deg+/- 3.3Text
Rounded Reported
29769 · Results and Discussion · Figures 1c and S10
Water contact angle at 60 s~55 degFigure Axis
Approximate
29768 · Figure 1c · Figure 1c

Water contact angle

Free-standing Cu3(HHTP)2 composite electrode control · Electrode

10 uL DI water droplet under ambient conditions; measured at 0, 60 and 180 s; repeated on three electrodes.

Context
control composite electrode
Measurement source
S5; 29769 · Contact angle measurement · Figures 1c and S10
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Water contact angle at 0 s~69 degFigure Axis
Approximate
29768 · Figure 1c · Figure 1c
Water contact angle after 180 s64.1 +/- 4.2 deg+/- 4.2Text
Rounded Reported
29769 · Results and Discussion · Figures 1c and S10
Water contact angle at 60 s~67 degFigure Axis
Approximate
29768 · Figure 1c · Figure 1c