Microscopy Morphology — Self-amplifying bimetallic conductive metal-organic framework for sensitive label-free electrochemiluminescence detection of aflatoxin B1

Measurement evidence

Microscopy Morphology

Self-amplifying bimetallic conductive metal-organic framework for sensitive label-free electrochemiluminescence detection of aflatoxin B1 · Feng R., Fang J., Xu J. et al. · Microchemical Journal · 2025 · 115749

3 measurement groups · 4 results

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

energy dispersive spectroscopy elemental mapping

ZnCoMOFs black precipitate/powder · Powder

EDS mapping of Co, Zn, C, and O in ZnCoMOFs

Context
pristine ZnCoMOFs
Measurement source
4 · 3.1. Morphological and structural characteristics · Fig. 1D-H
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ZnCoMOFs elemental mappingCo, Zn, C, and O present; Co lower and Zn higherText
Qualitative
4 · 3.1 · Fig. 1D-H

scanning electron microscopy (SEM)

ZnCoMOFs black precipitate/powder · Powder

SEM images of ZnCoMOFs morphology

Context
pristine ZnCoMOFs
Measurement source
4 · 3.1. Morphological and structural characteristics · Fig. 1B-C
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ZnCoMOFs average sphere diameterapproximately 1000 nmText
Approximate
4 · 3.1 · Fig. 1B-C

transmission electron microscopy (TEM)

Au NPs · Unknown

TEM of Au nanoparticles

Context
Au nanoparticle component
Measurement source
4 · 3.1. Morphological and structural characteristics · Fig. 1I
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Au NP diameter upper bound20-24 nm diameterrangeText
Range
4 · 3.1 · Fig. 1I
Au NP diameter lower bound20-24 nm diameterrangeText
Range
4 · 3.1 · Fig. 1I