Microscopy Morphology — A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib

Measurement evidence

Microscopy Morphology

A Sensing Platform Based on Ni/Mn Bimetal-Organic Framework for Electrochemical Detection of Osimertinib · Karazan Z.M., Roushani M. · Electrocatalysis · 2024 · 110-119

3 measurement groups · 3 results

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

FE-SEM

Mn-MOF powder · Powder

FESEM morphology of Mn-MOF at multiple magnifications.

Atmosphere
vacuum/electron microscope, not detailed
Geometry
powder specimen
Context
pristine_control
Measurement source
p003-p004 · Morphological Studies · Fig. 2a-c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Mn-MOF morphologyhomogeneous laminar structure bounded looselyText
Qualitative
p003 · Morphological Studies · Fig. 2a-c

FE-SEM

green Ni/Mn-MOF powder · Powder

FESEM morphology of Ni/Mn-MOF at various magnifications; sample gold sprayed for 3 min before FESEM.

Atmosphere
vacuum/electron microscope, not detailed
Geometry
powder specimen
Context
target pristine MOF powder
Measurement source
p003-p005 · Morphological Studies · Fig. 2g-l
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni/Mn-MOF morphologyvery regular spheroidal structure with porous inside and outer surface consisting of nanoparticlesText
Qualitative
p003 · Morphological Studies · Fig. 2g-l

FE-SEM

Ni-MOF powder · Powder

FESEM morphology of Ni-MOF microspheres.

Atmosphere
vacuum/electron microscope, not detailed
Geometry
powder specimen
Context
pristine_control
Measurement source
p003-p004 · Morphological Studies · Fig. 2d-f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-MOF morphologymicrospheres with smooth surfaceText
Qualitative
p003 · Morphological Studies · Fig. 2d-f