Microscopy Morphology — Bifunctional 3D-MOF-based nanoprobes for electrochemical sensing and nanozyme enhanced with peroxidase mimicking for colorimetric detection of acetaminophen

Measurement evidence

Microscopy Morphology

Bifunctional 3D-MOF-based nanoprobes for electrochemical sensing and nanozyme enhanced with peroxidase mimicking for colorimetric detection of acetaminophen · Nataraj N., Chen T.-W., Gan Z.-W. et al. · Materials Today Chemistry · 2022 · 100725

1 measurement group · 3 results

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

FESEM and HR-TEM

ZIF-67-C powder · Powder

Morphology imaging of ZIF-67-C, ZIF-67-A, and ZIF-67-H at different magnifications.

Context
Pristine powder comparison
Measurement source
3-4 · 3.1 Structural and morphological analysis · Fig. 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ZIF-67-A morphologyImproper dodecahedron formation, spherical and rod-like features, aggregation and coarse microporous morphology.Text
Qualitative
3-4 · 3.1 Structural and morphological analysis · Fig. 2D-F
ZIF-67-C morphologyMarked as a best value within this paperRhombic dodecahedron structure with mesoporous and hierarchical surface.Text
Qualitative
3-4 · 3.1 Structural and morphological analysis · Fig. 2A-C
ZIF-67-H morphologyHydrothermal process caused morphology deterioration, collapsed structure, enlarged rod-like structures and aggregation.Text
Qualitative
3-4 · 3.1 Structural and morphological analysis · Fig. 2G-I