Electrical Transport — Ultrathin 2D metal-organic framework nanosheet arrays to boost the overall efficiency of water splitting

Measurement evidence

Electrical Transport

Ultrathin 2D metal-organic framework nanosheet arrays to boost the overall efficiency of water splitting · Zhang J., Zong S., Xiong G. et al. · International Journal of Hydrogen Energy · 2025 · 95-102

1 measurement group · 4 results

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

Electrochemical impedance spectroscopy

TIT-1@NS/NF · Electrode

Open-circuit EIS using 10 mV sinusoidal signal over 10000 Hz to 0.1 Hz in electrolyte; methods elsewhere report 100000 to 0.01 Hz with 5 mV amplitude.

Geometry
electrode/electrolyte interface
Context
TIT-1@NS/NF compared with TIT-1, Pt/C and bare NF controls
Measurement source
100 · 3.3. Electrochemical performance · Fig. S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
charge transfer resistance Rct, NF0.75 OhmText
Exact Reported
100 · 3.3. Electrochemical performance · Fig. S6
charge transfer resistance Rct, Pt/CMarked as a best value within this paper0.55 OhmText
Exact Reported
100 · 3.3. Electrochemical performance · Fig. S6
charge transfer resistance Rct, TIT-10.74 OhmText
Exact Reported
100 · 3.3. Electrochemical performance · Fig. S6
charge transfer resistance Rct, TIT-1@NSapproximately 0.63 OhmText
Approximate
100 · 3.3. Electrochemical performance · Fig. S6; Table 1