Microscopy Morphology — Immobilizing Redox-Active Tricycloquinazoline into a 2D Conductive Metal–Organic Framework for Lithium Storage

Measurement evidence

Microscopy Morphology

Immobilizing Redox-Active Tricycloquinazoline into a 2D Conductive Metal–Organic Framework for Lithium Storage · Yan J., Cui Y., Xie M. et al. · Angewandte Chemie - International Edition · 2021 · 24467-24472

2 measurement groups · 4 results

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

High-resolution transmission electron microscopy and FFT

Pristine Cu-HHTQ black powder · Powder

HRTEM along c direction and perpendicular to [001].

Context
pristine framework
Measurement source
main p.2-p.3 / article p.24468-p.24469 · Results and discussion · Figure 1d-g and Figure S7
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
HRTEM spacing perpendicular to [001]d100 = 2.3 nmText
Approximate
main p.3 / article p.24469 · Results and discussion · Figure 1g
Hexagonal pore size from HRTEMabout 2.52 nmText
Approximate
main p.2 / article p.24468 · Results and discussion · Figure 1e

SEM and EDS elemental mapping

Pristine Cu-HHTQ black powder · Powder

SEM morphology; EDS mapping for C, N, O, and Cu.

Context
pristine framework
Measurement source
main p.3 / article p.24469 · Results and discussion · Figures S9-S11
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
EDS elemental distributionC, N, O and Cu uniformly distributedQualitative
Qualitative
main p.3 / article p.24469 · Results and discussion · Figure S9
SEM morphologyapparently layer structures of stacked 2D flakesQualitative
Qualitative
main p.3 / article p.24469 · Results and discussion · Figure S11