Diffraction Structure — Reversible Molecule Interactions Enable Ultrastretchable and Recyclable Ionogels for Wearable Piezoionic Sensors

Measurement evidence

Diffraction Structure

Reversible Molecule Interactions Enable Ultrastretchable and Recyclable Ionogels for Wearable Piezoionic Sensors · Chen Y., Chen Y., Gao R. et al. · ACS Applied Materials and Interfaces · 2024 · 50027-50035

2 measurement groups · 3 results

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

Powder X-ray diffraction with Cu Kalpha radiation

as-synthesised UiO-66-NH2 light-yellow powder · Powder

Room-temperature ambient XRD using X'Pert-Pro MPD at 50 kV and 50 mA.

Temperature
room temperature
Atmosphere
ambient
Geometry
powder
Context
pristine MOF component
Measurement source
50028-50029 · 2.1.2; 3.1 · Figure 1d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
UiO-66-NH2 XRD (002) peak8.6 deg 2theta assigned to (002)Text
Rounded Reported
50029 · 3.1 · Figure 1d
UiO-66-NH2 XRD (111) peak7.3 deg 2theta assigned to (111)Text
Rounded Reported
50029 · 3.1 · Figure 1d

Powder X-ray diffraction with Cu Kalpha radiation

UiO-66-NH2@PAA particles · Powder

Room-temperature ambient XRD using X'Pert-Pro MPD at 50 kV and 50 mA.

Temperature
room temperature
Atmosphere
ambient
Geometry
polymer-coated MOF powder/particles
Context
MOF/PAA composite component
Measurement source
50029 · 3.1 · Figure 1d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
UiO-66-NH2@PAA retained crystalline featurestypical crystal peaks still observed after PAA introductionText
Qualitative
50029 · 3.1 · Figure 1d