Diffraction Structure — One-step electrochemical synthesis of tremella-like Co-MOFs/carbon nanohorns films for enhanced electrochemical sensing of carbendazim in vegetable and fruit samples

Measurement evidence

Diffraction Structure

One-step electrochemical synthesis of tremella-like Co-MOFs/carbon nanohorns films for enhanced electrochemical sensing of carbendazim in vegetable and fruit samples · Peng G., Gao F., Zou J. et al. · Journal of Electroanalytical Chemistry · 2022 · 116462

1 measurement group · 4 results

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

X-ray diffraction (XRD)

Co-MOFs/CNHs/GCE composite sensing electrode · Electrode

XRD patterns for Co-MOFs, CNHs, and Co-MOFs/CNHs compared with simulated Co-MOFs.

Geometry
Electrodeposited samples
Context
composite with pristine/component controls
Measurement source
p003 · Section 3.1 · Figure 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CNH broad XRD peak upper boundBroad CNH XRD peak appears between 19.0 and 23.0 degrees 2theta.range upper boundText
Range
p003 · Section 3.1 · Figure 2
CNH broad XRD peak lower boundBroad CNH XRD peak appears between 19.0 and 23.0 degrees 2theta.range lower boundText
Range
p003 · Section 3.1 · Figure 2
Co-MOF phase assignmentCo-MOF diffraction peaks are consistent with simulated Co-MOFs, CCDC No. 153067.Text
Exact Reported
p003 · Section 3.1 · Figure 2
Composite retains Co-MOF crystal structureCo-MOFs/CNHs maintains Co-MOF and CNH diffraction features; crystal structure of Co-MOFs is not changed by CNHs.Text
Qualitative
p003 · Section 3.1 · Figure 2