Spectroscopy — Conductivity, doping, and redox chemistry of a microporous dithiolene-based metal-organic framework

Measurement evidence

Spectroscopy

Conductivity, doping, and redox chemistry of a microporous dithiolene-based metal-organic framework · Kobayashi Y., Jacobs B., Allendorf M.D. et al. · Chemistry of Materials · 2010 · 4120-4122

1 measurement group · 3 results

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

Diffuse-reflectance UV-vis-NIR spectroscopy

Desolvated Cu[Ni(pdt)2] powder · Powder

Diffuse-reflectance spectra for Cu[Ni(pdt)2], I2-doped Cu[Ni(pdt)2], and Cu[Cu(pdt)2].

Context
pristine and iodine-doped frameworks
Measurement source
7 · Diffuse-reflectance UV-vis-NIR Spectra · Figure S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Spectral change after iodine dopingspectral features remain largely unchanged upon doping with iodineQualitative
Qualitative
7 · Diffuse-reflectance UV-vis-NIR Spectra · Figure S3
Cu[Cu(pdt)2] optical onset visual estimateabout 1.2 eV from Figure S3 black curve onsetvisual estimate from rendered spectrumFigure Axis
Uncertain
7 · Diffuse-reflectance UV-vis-NIR Spectra · Figure S3
Cu[Ni(pdt)2] optical bandgapapproximately 2 eV; SI states 2.0 eVapproximatelyText
Approximate
7 · Diffuse-reflectance UV-vis-NIR Spectra · Figure S3