Microscopy Morphology — Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions

Measurement evidence

Microscopy Morphology

Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions · Wu X., Wu H., Wu S. et al. · Chemical Communications · 2022 · 2702-2705

1 measurement group · 6 results

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

SEM, TEM and high-resolution TEM

MnHHB dark-blue powder · Powder

TEM with JEM 2100F at 120 kV; SEM images reported in Fig. S8.

Geometry
Powder/nanostructure imaging
Context
three pristine frameworks
Measurement source
p. 2 · Synchrotron powder XRD and structure determination · Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
HRTEM lattice spacing, MnCsTHBQ6.8 AText
Rounded Reported
p. 2 / journal p. 2703 · Results and discussion · Figure S8
MnCsTHBQ morphologyvarious morphologies of nanosheets and nanorodsCaption
Qualitative
p. 7 · Supporting figures and tables · Figure S8
HRTEM lattice spacing, MnHHB3.1 AText
Rounded Reported
p. 2 / journal p. 2703 · Results and discussion · Figure S8
MnHHB morphologyfusiform morphologyCaption
Qualitative
p. 7 · Supporting figures and tables · Figure S8
HRTEM lattice spacing, MnRbTHBQ6.8 AText
Rounded Reported
p. 2 / journal p. 2703 · Results and discussion · Figure S8
MnRbTHBQ morphologynanosheet morphologyCaption
Qualitative
p. 7 · Supporting figures and tables · Figure S8