Microscopy Morphology — In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance

Measurement evidence

Microscopy Morphology

In-situ growth of electrically conductive MOFs in wood cellulose scaffold for flexible, robust and hydrophobic membranes with improved electrochemical performance · Wang Z., Sun B., Liao J. et al. · International Journal of Biological Macromolecules · 2024 · 127989

1 measurement group · 3 results

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

SEM/FE-SEM

50%-NiCAT@TOW membrane · Thin Film

FE-SEM at 2 kV for EC-MOF@TOW and EC-MOF powder; SEM images of surface and cross-section.

Context
composite membrane
Measurement source
p003 / journal page 3 · 2.4 Materials characterization · Fig. 2b-c,e
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
NiCAT nanoparticle end-face dimensionabout 30 nmaboutText
Approximate
p004 / journal page 4 · 3.1 Preparation of EC-MOF@TOW membrane · Fig. 2e
NiCAT nanoparticle length rangeabout 100 nm to 200 nmabout; rangeText
Range
p004 / journal page 4 · 3.1 Preparation of EC-MOF@TOW membrane · Fig. 2e
50%-NiCAT@TOW membrane thicknessabout 0.3 mmaboutText
Approximate
p004 / journal page 4 · 3.1 Preparation of EC-MOF@TOW membrane · Fig. 2c