Diffraction Structure — High-performance non-enzymatic glucose detection: Using a conductive Ni-MOF as an electrocatalyst

Measurement evidence

Diffraction Structure

High-performance non-enzymatic glucose detection: Using a conductive Ni-MOF as an electrocatalyst · Qiao Y., Liu Q., Lu S. et al. · Journal of Materials Chemistry B · 2020 · 5411-5415

1 measurement group · 6 results

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

Powder X-ray diffraction (XRD)

Pristine conductive Ni-MOF black powder · Powder

Rigaku D/MAX 2550 with Cu Kalpha radiation (lambda = 1.5418 A); pristine conductive Ni-MOF and after long-term tests.

Context
pristine framework powder
Measurement source
SI p.2 · Characterizations · Fig. 1b; Fig. S2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
XRD after long-term testsPeaks show no obvious change after long-term testsText
Qualitative
main p.3, article p.5412 · Structure stability · Fig. S2
XRD peak assigned to (002) pi-pi stacking2theta = 27.3 deg, indexed to (002)Text
Rounded Reported
main p.3, article p.5412 · Structure characterisation · Fig. 1b
XRD peak assigned to (100)2theta = 4.5 deg, indexed to (100)Text
Rounded Reported
main p.2, article p.5411 · Structure characterisation · Fig. 1b
XRD peak assigned to (130)2theta = 12.6 deg, indexed to (130)Text
Rounded Reported
main p.2-main p.3, article p.5411-5412 · Structure characterisation · Fig. 1b
XRD peak assigned to (200)2theta = 9.5 deg, indexed to (200)Text
Rounded Reported
main p.2, article p.5411 · Structure characterisation · Fig. 1b
XRD peak assigned to (201)2theta = 17 deg, indexed to (201)Text
Rounded Reported
main p.2-main p.3, article p.5411-5412 · Structure characterisation · Fig. 1b