Diffraction Structure — Novel Solid-State Solar Cell Based on Hole-Conducting MOF-Sensitizer Demonstrating Power Conversion Efficiency of 2.1%

Measurement evidence

Diffraction Structure

Novel Solid-State Solar Cell Based on Hole-Conducting MOF-Sensitizer Demonstrating Power Conversion Efficiency of 2.1% · Ahn D.Y., Lee D.Y., Shin C.Y. et al. · ACS Applied Materials and Interfaces · 2017 · 12930-12935

2 measurement groups · 3 results

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

X-ray diffraction

Co-DAPV thin film on glass, 8 LbL cycles · Thin Film

XRD comparison of Co-DAPV bulk powder and Co-DAPV thin film.

Geometry
thin film and bulk powder
Context
pristine Co-DAPV film compared with pristine bulk powder
Measurement source
12931 · Results · Figure 1d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
bulk powder and thin-film XRD matchwell-matched to each otherText
Qualitative
12931 · Results · Figure 1d
dominant Co-DAPV XRD peak2theta of 10.86 degreesText
Exact Reported
12931 · Results · Figure 1d

X-ray diffraction

2000 rpm TiO2/Co-DAPV device series, 5-30 LbL cycles · Electrode

XRD of TiO2 film deposited on FTO and sensitized with Co-DAPV.

Geometry
FTO/TiO2/Co-DAPV photoanode
Context
composite photoanode
Measurement source
S-9 · Figure S8 · Figure S8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Co-DAPV XRD signals on sensitised TiO2 photoanodesimilar XRD signals of single-crystalline Co-DAPV as Figure 1dText
Qualitative
12933 · Results · Figure S8