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

Measurement evidence

Electrical Transport

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

1 measurement group · 3 results

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

AC impedance / electron-transfer evidence referenced in Fig. S3 and Fig. S4

ZnCoMOFs black precipitate/powder · Powder

Main text attributes enhanced ECL to efficient electron transfer of conductive MOFs; rendered SI Fig. S3 provides AC impedance curves for HHTP and ZnCoMOFs, and SI Fig. S4 gives ECL intensity bars for ZnCoMOFs and Au/ZnCoMOFs.

Context
pristine ZnCoMOFs and Au NPs functionalised ZnCoMOFs
Measurement source
S8-S9 · Figure S3 and Figure S4 · Figure S3; Figure S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
SI Figure S4 Au/ZnCoMOFs ECL intensityMarked as a best value within this paperabout 6.35k a.u.visual estimateFigure Axis
Approximate
S9 · Figure S4 · Figure S4
SI Figure S4 ZnCoMOFs ECL intensityabout 5.6k a.u.visual estimateFigure Axis
Approximate
S9 · Figure S4 · Figure S4
Conductive-MOF electron-transfer evidenceefficient electron transfer rate of the conductive MOFsText
Qualitative
5 · 3.3 · Fig. S3