Spectroscopy — Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu)

Measurement evidence

Spectroscopy

Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu) · Hinckley A.C., Park J., Gomes J. et al. · Journal of the American Chemical Society · 2020 · 11123-11130

1 measurement group · 7 results

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

Photoemission spectroscopy in air (PESA)

Co-HAB pressed-powder pellet · Pellet

MOF pellets; HOMO estimated by PESA and LUMO inferred with optical bandgap

Atmosphere
air
Geometry
pressed pellet
Context
representative M-HAB pristine MOF pellets
Measurement source
11126 · Experimental determination of electronic structure · Figure 3B
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
All M-HAB LUMO levels relative to water oxidation stability criterionHOMO and LUMO levels of all M-HABs lie below -4.02 eVText
Rounded Reported
11126 · Experimental determination of electronic structure · Figure 3B
Co-HAB HOMO level versus vacuumapproximately -4.95 eVFigure Axis
Approximate
11126 · Experimental determination of electronic structure · Figure 3B
Co-HAB previously reported optical bandgap0.87 eVText
Exact Reported
11124 · Results and Discussion
Cu-HAB HOMO level versus vacuumapproximately -5.30 eVFigure Axis
Approximate
11126 · Experimental determination of electronic structure · Figure 3B
Cu-HAB previously reported optical bandgap0.74 eVText
Exact Reported
11124 · Results and Discussion
Ni-HAB HOMO level versus vacuumapproximately -4.95 eVFigure Axis
Approximate
11126 · Experimental determination of electronic structure · Figure 3B
Ni-HAB previously reported optical bandgap0.57 eVText
Exact Reported
11124 · Results and Discussion