Diffraction Structure — Lithium Ion Diffusion in a Metal-Organic Framework Mediated by an Ionic Liquid

Measurement evidence

Diffraction Structure

Lithium Ion Diffusion in a Metal-Organic Framework Mediated by an Ionic Liquid · Fujie K., Ikeda R., Otsubo K. et al. · Chemistry of Materials · 2015 · 7355-7361

3 measurement groups · 19 results

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

X-ray powder diffraction (XRPD), Bruker D8 ADVANCE, Cu Kalpha radiation

ELT@Z100 · Pellet

Measured in air; data analysed by Le Bail method in TOPAS.

Temperature
ambient
Atmosphere
air
Context
guest-loaded ZIF-8
Measurement source
2 · Experimental Section
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ELT@Z100 cubic lattice parameter a17.04(1) AVisual Estimate
Rounded Reported
S3 · Supporting Information · Figure S3
ELT@Z100 crystallite diameter from Le Bail fit10.9(2) nmVisual Estimate
Rounded Reported
S3 · Supporting Information · Figure S3
ELT@Z100 Le Bail Rwp factor19.4%Visual Estimate
Rounded Reported
S3 · Supporting Information · Figure S3
ELT@Z100 Le Bail goodness-of-fit S1.37Visual Estimate
Rounded Reported
S3 · Supporting Information · Figure S3
ELT@Z100 cubic unit-cell volume V4950(9) A^3Visual Estimate
Rounded Reported
S3 · Supporting Information · Figure S3
Crystallite diameter from Le Bail profile fittingabout 10 nmText
Approximate
3 · Results and Discussion · Figure 3
ZIF-8 structure retained after lithium-doped IL loadingZIF-8 crystal structure was maintained after mixing with (EMI0.8Li0.2)TFSA and heatingText
Qualitative
3 · Results and Discussion · Figure 3
XRPD evidence for guest incorporationrelative intensity of 011 decreased and 013 increased after incorporationText
Qualitative
3 · Results and Discussion · Figure 3

X-ray powder diffraction (XRPD), Bruker D8 ADVANCE, Cu Kalpha radiation

ELT@Z75 · Pellet

Measured in air; data analysed by Le Bail method in TOPAS.

Temperature
ambient
Atmosphere
air
Context
guest-loaded ZIF-8
Measurement source
2 · Experimental Section
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ELT@Z75 cubic lattice parameter a17.012(9) AVisual Estimate
Rounded Reported
S2 · Supporting Information · Figure S2
ELT@Z75 crystallite diameter from Le Bail fit12.9(2) nmVisual Estimate
Rounded Reported
S2 · Supporting Information · Figure S2
ELT@Z75 Le Bail Rwp factor19.4%Visual Estimate
Rounded Reported
S2 · Supporting Information · Figure S2
ELT@Z75 Le Bail goodness-of-fit S1.37Visual Estimate
Rounded Reported
S2 · Supporting Information · Figure S2
ELT@Z75 cubic unit-cell volume V4923(8) A^3Visual Estimate
Rounded Reported
S2 · Supporting Information · Figure S2

X-ray powder diffraction (XRPD), Bruker D8 ADVANCE, Cu Kalpha radiation

ZIF-8 nanoparticles · Powder

Measured in air; data analysed by Le Bail method in TOPAS.

Temperature
ambient
Atmosphere
air
Context
pristine ZIF-8 host
Measurement source
2 · Experimental Section
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
ZIF-8 nanoparticles cubic lattice parameter a16.96(1) AVisual Estimate
Rounded Reported
S2 · Supporting Information · Figure S1
ZIF-8 nanoparticles crystallite diameter from Le Bail fit8.47(9) nmVisual Estimate
Rounded Reported
S2 · Supporting Information · Figure S1
ZIF-8 nanoparticles Le Bail Rwp factor16.4%Visual Estimate
Rounded Reported
S2 · Supporting Information · Figure S1
ZIF-8 nanoparticles Le Bail goodness-of-fit S1.37Visual Estimate
Rounded Reported
S2 · Supporting Information · Figure S1
ZIF-8 nanoparticles cubic unit-cell volume V4877(10) A^3Visual Estimate
Rounded Reported
S2 · Supporting Information · Figure S1
Synthesised ZIF-8 diffraction charactervery broad and weak diffraction because of small crystal sizesText
Qualitative
3 · Results and Discussion · Figure 3