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

Measurement evidence

Diffraction Structure

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 · 9 results

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

Powder XRD, TGA, XPS

Freestanding CCM film · Thin Film

XRD for Ni-HITP and cellulose reflections; TGA under air; Ni 2p3/2 XPS comparing CCM, pure Ni-HITP, and CC-Ni.

Atmosphere
air for TGA
Geometry
freestanding CCM film
Context
composite target sample compared with pure Ni-HITP and CC-Ni
Measurement source
p007-p008 · Supplementary Results · Fig. S2a-c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cellulose content in CCM film82.5 wt% cellulose nanofibersText
Rounded Reported
p008 · Supplementary Results · Fig. S2b
Ni-HITP content in CCM filmMarked as a best value within this paper~17.5 wt% Ni-HITPText
Approximate
p008 · Supplementary Results · Fig. S2b
Ni 2p3/2 binding energy in CC-Ni856.7 eVText
Exact Reported
p008 · Supplementary Results · Fig. S2c
CCM interfacial Ni 2p3/2 component856.5 eVText
Exact Reported
p008 · Supplementary Results · Fig. S2c
CCM Ni-HITP-like Ni 2p3/2 component855.5 eVText
Exact Reported
p008 · Supplementary Results · Fig. S2c
Ni 2p3/2 binding energy in pure Ni-HITP~855.5 eVText
Approximate
p008 · Supplementary Results · Fig. S2c
Ni-HITP XRD (001) peak2theta approximately 27.6 degreesText
Approximate
p007 · Supplementary Results · Fig. S2a
Ni-HITP XRD (100) peak2theta approximately 4.7 degreesText
Approximate
p007 · Supplementary Results · Fig. S2a
Ni-HITP XRD (200) peak2theta approximately 9.5 degreesText
Approximate
p007 · Supplementary Results · Fig. S2a