Spectroscopy — Benign preparation of metal–organic frameworks of trimesic acid and Cu, Co or Ni for potential sensor applications

Measurement evidence

Spectroscopy

Benign preparation of metal–organic frameworks of trimesic acid and Cu, Co or Ni for potential sensor applications · Sel K., Demirci S., Meydan E. et al. · Journal of Electronic Materials · 2015 · 136-143

6 measurement groups · 8 results

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

Fluorescence spectroscopy

TMA-Co(II) powder · Powder

ThermoScientific Lumina fluorescence spectrometer; excitation wavelength 270 nm.

Context
Pristine TMA-M powder
Measurement source
p004-p007 · Conductivity Measurements and Optical Analysis · Fig. 8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
primary broad emission peakaround 340 nmText
Approximate
p006-p007 · Conductivity Measurements and Optical Analysis · Fig. 8

ATR FT-IR spectroscopy

TMA-Co(II) powder · Powder

PerkinElmer Spectrum 100 with ATR accessory; spectra compared with TMA linker.

Context
Pristine TMA-M powder
Measurement source
p003-p006 · Characterization; MOF Characterization · Fig. 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
FT-IR evidence for metal-carboxylate interactionC=O stretch around 1700 cm^-1 shifted to lower wavenumbers; C-O at about 1440 and 1330 cm^-1; OH about 935 cm^-1 deformedText
Qualitative
p005-p006 · MOF Characterization · Fig. 4

Fluorescence spectroscopy

TMA-Cu(II) powder · Powder

ThermoScientific Lumina fluorescence spectrometer; excitation wavelength 270 nm.

Context
Pristine TMA-M powder
Measurement source
p004-p007 · Conductivity Measurements and Optical Analysis · Fig. 8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
primary broad emission peakaround 375 nmText
Approximate
p006-p007 · Conductivity Measurements and Optical Analysis · Fig. 8
additional emission peakaround 465 nmText
Approximate
p006-p007 · Conductivity Measurements and Optical Analysis · Fig. 8

ATR FT-IR spectroscopy

TMA-Cu(II) powder · Powder

PerkinElmer Spectrum 100 with ATR accessory; spectra compared with TMA linker.

Context
Pristine TMA-M powder
Measurement source
p003-p006 · Characterization; MOF Characterization · Fig. 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
FT-IR evidence for metal-carboxylate interactionC=O stretch around 1700 cm^-1 shifted to lower wavenumbers; C-O at about 1440 and 1330 cm^-1; OH about 935 cm^-1 deformedText
Qualitative
p005-p006 · MOF Characterization · Fig. 4

Fluorescence spectroscopy

TMA-Ni(II) powder · Powder

ThermoScientific Lumina fluorescence spectrometer; excitation wavelength 270 nm.

Context
Pristine TMA-M powder
Measurement source
p004-p007 · Conductivity Measurements and Optical Analysis · Fig. 8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
primary broad emission peakaround 337 nmText
Approximate
p006-p007 · Conductivity Measurements and Optical Analysis · Fig. 8
additional emission peakaround 465 nmText
Approximate
p006-p007 · Conductivity Measurements and Optical Analysis · Fig. 8

ATR FT-IR spectroscopy

TMA-Ni(II) powder · Powder

PerkinElmer Spectrum 100 with ATR accessory; spectra compared with TMA linker.

Context
Pristine TMA-M powder
Measurement source
p003-p006 · Characterization; MOF Characterization · Fig. 4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
FT-IR evidence for metal-carboxylate interactionC=O stretch around 1700 cm^-1 shifted to lower wavenumbers; C-O at about 1440 and 1330 cm^-1; OH about 935 cm^-1 deformedText
Qualitative
p005-p006 · MOF Characterization · Fig. 4