Microscopy Morphology — Solar-driven ionic power generation: Via a film of nanocellulose @ conductive metal-organic framework

Measurement evidence

Microscopy Morphology

Solar-driven ionic power generation: Via a film of nanocellulose @ conductive metal-organic framework · Zhou S., Qiu Z., Stromme M. et al. · Energy and Environmental Science · 2021 · 900-905

1 measurement group · 5 results

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

TEM, HRTEM, SEM, contact-angle imaging

Freestanding CCM film · Thin Film

Morphology of CCM hybrid nanofibre and cross-section of freestanding film.

Geometry
freestanding film and individual hybrid nanofibres
Context
composite target sample
Measurement source
p002 · Preparation and characterization of the CCM film · Fig. 1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Typical CCM film thicknessapproximately 5 umText
Approximate
p002 · Preparation and characterization · Fig. 1d
Water contact angleapproximately 9.7 degreesText
Approximate
p002 · Preparation and characterization · Fig. 1c
Ordered Ni-HITP nanopore diameterapproximately 2 nmText
Approximate
p002 · Preparation and characterization · Fig. 1b
Ni-HITP nanolayer thickness on cellulose nanofibreapproximately 18 nmText
Approximate
p002 · Preparation and characterization · Fig. 1b
Physical stability in stirred NaCl solutionno deformation or breakage after one week in 1 M NaCl with stirringText
Qualitative
p002 · Preparation and characterization · Fig. S2f