Diffraction Structure — ZnS/MnO2 metal organic framework based conductive hydrogel for highly selective and sensitive detection of glutathione in serum samples

Measurement evidence

Diffraction Structure

ZnS/MnO2 metal organic framework based conductive hydrogel for highly selective and sensitive detection of glutathione in serum samples · Singh P., Mukundan G., Badhulika S. · Microchemical Journal · 2024 · 109727

1 measurement group · 6 results

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

X-ray diffraction (XRD)

2 wt% ZnS/MnO2-MOF hydrogel electrode · Electrode

Cu-Kalpha source, wavelength 1.54 A; 2theta range 20-70 deg.

Context
Composite hydrogel with ZnS/MnO2-MOF on hydrogel surface.
Measurement source
p.3 · 2.5. Substrate fabrication and instrumentation · Fig. 3(a)
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
MnO2 XRD peak, (220) plane26.09 degText
Exact Reported
p.6 · 3.2. Structural and chemical analysis · Fig. 3(a)
MnO2 XRD peak, (211) plane37.07 degText
Exact Reported
p.6 · 3.2. Structural and chemical analysis · Fig. 3(a)
Phase assignmentZnS and MnO2 present; MOF lattice closely resembles a cubic arrangement; JCPDS 05-0566 and 44-0141Text
Qualitative
p.6 · 3.2. Structural and chemical analysis · Fig. 3(a)
ZnS XRD peak, (111) plane28.6 degText
Exact Reported
p.6 · 3.2. Structural and chemical analysis · Fig. 3(a)
ZnS XRD peak, (220) plane47.62 degText
Exact Reported
p.6 · 3.2. Structural and chemical analysis · Fig. 3(a)
ZnS XRD peak, (311) plane56.42 degText
Exact Reported
p.6 · 3.2. Structural and chemical analysis · Fig. 3(a)