Diffraction Structure — Si nanoparticles confined within a conductive 2D porous Cu-based metal–organic framework (Cu3(HITP)2) as potential anodes for high-capacity Li-ion batteries

Measurement evidence

Diffraction Structure

Si nanoparticles confined within a conductive 2D porous Cu-based metal–organic framework (Cu3(HITP)2) as potential anodes for high-capacity Li-ion batteries · Nazir A., Le H.T.T., Kasbe A. et al. · Chemical Engineering Journal · 2021 · 126963

2 measurement groups · 7 results

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

X-ray powder diffraction, D/MAX Ultima III

Si@Cu3(HITP)2-5 · Powder

XRD patterns for pure Si and Si@Cu3(HITP)2-5/10/15 composites.

Geometry
powder
Context
Composite plus pure Si control
Measurement source
4 · Results and discussion · Fig. 1a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Composite XRD phase assignmentAll composite XRD patterns indexed to cubic Si (JCPDS 27-1402) without impurity phase; Cu3(HITP)2 feature peaks not observed.Qualitative
Qualitative
4 · Results and discussion · Fig. 1a

X-ray powder diffraction, D/MAX Ultima III

pure Cu-MOF (Cu3(HITP)2) · Powder

Phase identification and purity of pure Cu3(HITP)2.

Geometry
powder
Context
Pristine Cu-MOF control
Measurement source
4 · Results and discussion · Fig. S1a
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu3(HITP)2 unit cell aa = 22.3 AText
Rounded Reported
4 · Results and discussion
Cu3(HITP)2 unit cell bb = 22.3 AText
Rounded Reported
4 · Results and discussion
Cu3(HITP)2 unit cell cc = 27.8 AText
Rounded Reported
4 · Results and discussion
Cu3(HITP)2 XRD (001) peak2theta = 27.8 degText
Rounded Reported
4 · Results and discussion · Fig. S1a
Cu3(HITP)2 XRD (100) peak2theta = 4.9 degText
Rounded Reported
4 · Results and discussion · Fig. S1a
Cu3(HITP)2 XRD (200) peak2theta = 9.7 degText
Rounded Reported
4 · Results and discussion · Fig. S1a