Microscopy Morphology — Cu-Based Conductive MOF Grown in situ on Cu Foam as a Highly Selective and Stable Non-Enzymatic Glucose Sensor

Measurement evidence

Microscopy Morphology

Cu-Based Conductive MOF Grown in situ on Cu Foam as a Highly Selective and Stable Non-Enzymatic Glucose Sensor · Hu Q., Qin J., Wang X.-F. et al. · Frontiers in Chemistry · 2021 · 786970

1 measurement group · 3 results

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

SEM, TEM and EDX elemental mapping

Cu-MOF/CF electrode · Electrode

SEM/EDX on Cu-MOF/CF; TEM on a sample obtained by sonicating Cu-MOF/CF.

Geometry
Hitachi SU8010 SEM at 15 kV; Bruker EMX 10/12 TEM
Context
Cu-MOF/CF composite electrode, with sonicated Cu-MOF for TEM
Measurement source
3 · Physical Measurements · Figure 1A,B,D
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EDX element distributionC, O and Cu homogeneously distributed on the bare CFText
Qualitative
4 · Material Characterization · Figure 1D
Cu-MOF morphologyrod-like Cu-MOF; nanorod arrays completely and uniformly covered on CFText
Qualitative
4 · Material Characterization · Figure 1A,B,D
SI EDS spectra for Cu-MOF/CFSupplementary Figure 2 reports EDS spectra of Cu-MOF/CFCaption
Qualitative
5 · Supplementary Figure 2 · Supplementary Figure 2