Diffraction Structure — Electronically Conductive Metal−Organic Framework With Photoelectric and Photothermal Effect as a Stable Cathode for High-Temperature Photo-Assisted Zn/Sn-Air Battery

Measurement evidence

Diffraction Structure

Electronically Conductive Metal−Organic Framework With Photoelectric and Photothermal Effect as a Stable Cathode for High-Temperature Photo-Assisted Zn/Sn-Air Battery · Chen J., Yang C., Dong Y. et al. · Carbon Energy · 2026 · e70103

1 measurement group · 3 results

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

FTIR and powder XRD

as-synthesised Ni2DDA black powder · Powder

FTIR coordination analysis; XRD compared with simulated pattern and measured at different temperatures.

Context
pristine Ni2DDA powder
Measurement source
p003-p004 · Results and Discussion · Figures S1-S3
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
new N-H stretching vibrational peak after Ni coordination3408 cm-1Text
Exact Reported
p003 · Results and Discussion · Figure S1
XRD pattern agreement with simulated Ni2DDAconsistent with simulated resultsQualitative
Qualitative
p003 · Results and Discussion · Figures S2-S3
XRD stability at elevated temperaturesminimal variation in XRD peak positions at 25, 40 and 80 degCText
Qualitative
p003-p004 · Results and Discussion · Figure S3