Spectroscopy — Stacking growth of ionically conductive MOF on biofabrics enables reliable NH3 sensor for hepatic encephalopathy diagnosis

Measurement evidence

Spectroscopy

Stacking growth of ionically conductive MOF on biofabrics enables reliable NH3 sensor for hepatic encephalopathy diagnosis · Liu K., Xu Y., Tian X. et al. · npj Flexible Electronics · 2025 · 67

2 measurement groups · 4 results

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

XPS before/after NH3 adsorption

Zn-TCPP-6 sensor on alginate fabric · Thin Film

Zn 2p, N 1s, C 1s and O 1s spectra of Zn-TCPP-6 before and after NH3 exposure.

Atmosphere
NH3 exposure
Context
target MOF active-site analysis
Measurement source
p004-p005 · Sensing mechanism of Zn-TCPP · Figure 5a-b; Figure S6
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
N 1s Zn-Nx binding-energy shift after NH3 adsorptionshifted from 399.2 to 399.7 eVText
Exact Reported
p005 · Sensing mechanism of Zn-TCPP · Figure 5b
New Zn 2p peak after NH3 adsorption1039.7 eVText
Exact Reported
p004 · Sensing mechanism of Zn-TCPP · Figure 5a

Raman, FTIR and XPS

Zn-TCPP-6 sensor on alginate fabric · Thin Film

Vibrational and surface chemical-state characterisation of Zn-HHTP and Zn-TCPP.

Context
MOF structural assignment
Measurement source
p002 · Characteristics of Zn-HHTP and Zn-TCPP · Figure 2f-j
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Zn 2p binding energies1022.2 eV and 1045.1 eVText
Exact Reported
p002 · Characteristics of Zn-HHTP and Zn-TCPP · Figure 2j
Zn-TCPP FTIR diagnostic peaks1009, 1550, and 1680 cm-1Text
Exact Reported
p002 · Characteristics of Zn-HHTP and Zn-TCPP · Figure 2g