Diffraction Structure — Reaction-Type-Dependent Behavior of Redox-Hopping in MOFs─Does Charge Transport Have a Preferred Direction?

Measurement evidence

Diffraction Structure

Reaction-Type-Dependent Behavior of Redox-Hopping in MOFs─Does Charge Transport Have a Preferred Direction? · Yan M., Bowman Z., Knepp Z.J. et al. · Journal of Physical Chemistry Letters · 2024 · 11919-11926

1 measurement group · 1 results

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

Powder X-ray diffraction (PXRD)

Ru-NU-1000 particles · Powder

NU-1000 and Ru-NU-1000 PXRD patterns compared with simulated NU-1000; SI instrument Rigaku Miniflex, Cu Kalpha lambda = 1.5418 A, 2 mA, 40 kV.

Atmosphere
ambient/not reported
Geometry
powder/particle film comparison
Context
Pristine NU-1000 and Ru-loaded NU-1000 structural confirmation.
Measurement source
p002 / article page 11920 · Results and discussion · Figure 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
PXRD consistency with simulated NU-1000Ru-NU-1000 PXRD pattern shown with NU-1000 and simulated NU-1000; framework crystallinity retained qualitatively.Caption
Qualitative
p002 / article page 11920 · Results and discussion · Figure 2