Microscopy Morphology — Bottom-Up Fabrication of 1D Cu-based Conductive Metal–Organic Framework Nanowires as a High-Rate Anode towards Efficient Lithium Storage

Measurement evidence

Microscopy Morphology

Bottom-Up Fabrication of 1D Cu-based Conductive Metal–Organic Framework Nanowires as a High-Rate Anode towards Efficient Lithium Storage · Guo L., Sun J., Zhang W. et al. · ChemSusChem · 2019 · 5051-5058

1 measurement group · 3 results

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

FESEM, TEM, STEM, SAED, and EDS elemental mapping

as-obtained Cu-CAT NWs · Powder

Morphology and elemental distribution of as-obtained Cu-CAT NWs.

Context
pristine Cu-CAT NWs
Measurement source
main p.2 / article p.5052 · Physicochemical and structural characteristics · Figure 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EDS elemental distributionCu, O, and C uniformly dispersed throughout the whole NW architectureQualitative
Qualitative
main p.3 / article p.5053 · Physicochemical and structural characteristics · Figure 1e-h
nanowire diameterMarked as a best value within this paperapproximately 70 nmText
Approximate
main p.2 / article p.5052 · Physicochemical and structural characteristics · Figure 1b,c
nanowire lengthseveral micrometersText
Qualitative
main p.2 / article p.5052 · Physicochemical and structural characteristics · Figure 1a