Electrical Transport — A Conductive Metal−Organic Framework Based on Triptycene Ligand: An Effective Electrochemical Sensor for Glucose and H2O2 Detection in Food and Human Serum

Measurement evidence

Electrical Transport

A Conductive Metal−Organic Framework Based on Triptycene Ligand: An Effective Electrochemical Sensor for Glucose and H2O2 Detection in Food and Human Serum · Hu Q., Wu J., Ling C. et al. · Journal of the Electrochemical Society · 2023 · 037512

1 measurement group · 2 results

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

Electrochemical impedance spectroscopy (EIS)

Cu-HHTT/CF working electrode · Electrode

Nyquist/EIS diagram fitted by R(CR)W/Randles circuit over 1-100 kHz; comparison to ligand-control electrode.

Geometry
electrode
Context
Cu-HHTT/CF compared with ligand-control electrode; source text prints Cu-HHTP/CP and HHTP/CP
Measurement source
6 · Electrochemical determination of glucose · Fig. S5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Charge-transfer resistance of ligand-control electrodeabout 2.05 ohmaboutText
Approximate
6 · Electrochemical determination of glucose · Fig. S5
Charge-transfer resistance of Cu-HHTT/CFMarked as a best value within this paperabout 1.4 ohmaboutText
Approximate
6 · Electrochemical determination of glucose · Fig. S5