Spectroscopy — Self-supporting electrochemical sensors for monitoring of cell-released H2O2 based on metal nanoparticle/MOF nanozymes

Measurement evidence

Spectroscopy

Self-supporting electrochemical sensors for monitoring of cell-released H2O2 based on metal nanoparticle/MOF nanozymes · Chen S., Xie Y., Guo X. et al. · Microchemical Journal · 2022 · 107715

1 measurement group · 5 results

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

FT-IR, XRD and XPS survey spectra

As-synthesised 2D Zn-MOF nanosheet powder · Nanosheet

Component, crystallinity and elemental valence/survey analysis of 2D and 3D Zn-MOFs.

Temperature
about 300
Geometry
powder samples
Context
pristine framework controls
Measurement source
main p.6 · 3.2. Characterization of Zn-MOF · Fig. 2G-H; Fig. S2A
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
XPS C binding energyC at 285 eVText
Rounded Reported
main p.6 · 3.2. Characterization of Zn-MOF · Fig. 2H
XPS N binding energyN at 398 eVText
Rounded Reported
main p.6 · 3.2. Characterization of Zn-MOF · Fig. 2H
XPS O binding energyO at 530 eVText
Rounded Reported
main p.6 · 3.2. Characterization of Zn-MOF · Fig. 2H
XPS Zn binding energy high component1044.8 eVText
Exact Reported
main p.6 · 3.2. Characterization of Zn-MOF · Fig. 2H
XPS Zn binding energy low component1023 eVText
Rounded Reported
main p.6 · 3.2. Characterization of Zn-MOF · Fig. 2H