Electrochemistry Application — High-performance non-enzymatic glucose detection: Using a conductive Ni-MOF as an electrocatalyst

Measurement evidence

Electrochemistry Application

High-performance non-enzymatic glucose detection: Using a conductive Ni-MOF as an electrocatalyst · Qiao Y., Liu Q., Lu S. et al. · Journal of Materials Chemistry B · 2020 · 5411-5415

3 measurement groups · 6 results

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

Cyclic voltammetry for glucose oxidation

Conductive Ni-MOF working electrode · Electrode

0.1 M NaOH; absence/presence of 1 mM glucose; scan rate 20 mV s-1; potential range 0-0.8 V.

Temperature
room temperature
Geometry
three-electrode
Context
Ni-MOF electrode compared against CP/Nafion control
Measurement source
main p.3, article p.5412 · Electrocatalytic glucose oxidation · Fig. 2a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CP/Nafion control response to glucosebare CP and Nafion give no enhancement in redox current with 1 mM glucoseText
Qualitative
main p.3, article p.5412 · Electrocatalytic glucose oxidation · Fig. 2a
Ni-MOF glucose oxidation responseobvious oxidation peak in the presence of 1 mM glucoseText
Qualitative
main p.3, article p.5412 · Electrocatalytic glucose oxidation · Fig. 2a

Cyclic voltammetry at varied scan rate

Conductive Ni-MOF working electrode · Electrode

Conductive Ni-MOF with 1 mM glucose; scan rates from 20 to 200 mV s-1.

Temperature
room temperature
Geometry
three-electrode
Context
Ni-MOF electrode
Measurement source
main p.4, article p.5413 · Electrocatalytic glucose oxidation · Fig. 2b-c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Glucose oxidation kinetic interpretationdiffusion-controlled processText
Qualitative
main p.4, article p.5413 · Scan-rate dependence · Fig. 2c
Anodic peak current versus square-root scan-rate slopey = 0.0085x + 0.945; R2 = 0.997Figure Axis
Approximate
main p.3, article p.5412 · Scan-rate dependence · Fig. 2c
Cathodic peak current versus square-root scan-rate slopey = -0.0084x - 0.539; R2 = 0.996Figure Axis
Approximate
main p.3, article p.5412 · Scan-rate dependence · Fig. 2c
CV scan-rate range20-200 mV s-120-200 mV s-1Text
Range
main p.4, article p.5413 · Scan-rate dependence · Fig. 2b

Three-electrode electrochemical measurements

Conductive Ni-MOF working electrode · Electrode

CHI 660E workstation; conductive Ni-MOF working electrode; Pt wire counter; saturated Ag/AgCl reference; room temperature; potentials vs Ag/AgCl.

Temperature
room temperature
Geometry
conventional three-electrode system
Context
Ni-MOF electrode application sample
Measurement source
main p.3, article p.5412 · Electrochemical measurements
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource