Microscopy Morphology — Construction of nanozyme based with mixed valence manganese oxide loaded on defective metal-organic frameworks for sensitive detection of biomarker procalcitonin

Measurement evidence

Microscopy Morphology

Construction of nanozyme based with mixed valence manganese oxide loaded on defective metal-organic frameworks for sensitive detection of biomarker procalcitonin · Deng S., Hao Y., Yang L. et al. · Biosensors and Bioelectronics · 2025 · 117339

2 measurement groups · 5 results

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

scanning electron microscopy (SEM)

dPCN-224 nanoparticles · Powder

SEM image of dPCN-224 nanoparticles.

Context
pristine defective MOF support
Measurement source
3-4 · 3.2 Characterization · Fig. 1A
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
dPCN-224 SEM particle diameterabout 900 nmaboutText
Approximate
3 · 3.2 Characterization · Fig. 1A

TEM/HRTEM and EDS elemental mapping

MdP nanoparticles · Powder

TEM, HRTEM lattice imaging and elemental mapping of MdP composite.

Context
target Mn oxide/dPCN composite
Measurement source
4-5 · 3.2 Characterization · Fig. 1E-F; Fig. 2E
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EDS elemental mapping distributionC, N, O, Mn and Zr uniformly distributedText
Qualitative
5 · 3.2 Characterization · Fig. 1F
HRTEM lattice spacing assigned to Mn2O3 (411)0.221 nmText
Exact Reported
5 · 3.2 Characterization · Fig. 2E
HRTEM lattice spacing assigned to Mn3O4 (103)0.276 nmText
Exact Reported
5 · 3.2 Characterization · Fig. 2E
Mn oxide distribution in MdPmanganese oxides distributed on the surface and within the dPCN-224 particlesText
Qualitative
5 · 3.2 Characterization · Fig. 1E