Diffraction Structure — ChemFET Sensor: nanorods of nickel-substituted Metal–Organic framework for detection of SO2

Measurement evidence

Diffraction Structure

ChemFET Sensor: nanorods of nickel-substituted Metal–Organic framework for detection of SO2 · Ingle N., Sayyad P., Bodkhe G. et al. · Applied Physics A: Materials Science and Processing · 2020 · 723

1 measurement group · 6 results

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

GIXRD / X-ray diffraction, Bruker D8 Advance, Cu Kalpha

chemically synthesized Ni3HHTP2 nanorods · Powder

Cu Kalpha wavelength 1.5406 A; 40 kV; 40 mA.

Context
pristine Ni3HHTP2 MOF nanorods
Measurement source
2 · 3.1 X-Ray diffraction · Fig. 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Crystallinity48%Text
Exact Reported
2 · 3.1 X-Ray diffraction · Fig. 2
Scherrer crystallite size705.2 A70.52 nmText
Exact Reported
3 · 3.1 X-Ray diffraction · Eq. 1
Interatomic distance for (100)-associated peak19.6 AText
Rounded Reported
2 · 3.1 X-Ray diffraction · Fig. 2
Interatomic distance for (200)-associated peak9.39 AText
Exact Reported
2 · 3.1 X-Ray diffraction · Fig. 2
XRD (100) peak position2theta = 5 degText
Rounded Reported
2 · 3.1 X-Ray diffraction · Fig. 2
XRD (200) peak position2theta = 9.4 degText
Rounded Reported
2 · 3.1 X-Ray diffraction · Fig. 2