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FTIR spectroscopy (keyword)
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1
journal article EST
/
journal article ENG
Characterization and changes in the thermal behavior of the phosphorite sample from Toolse deposit (Estonia) along the drill-core
Kaljuvee, Tiit
;
Tõnsuaadu, Kaia
;
Kallaste, Toivo
;
Graul, Sophie
;
Hints, Rutt
;
Kivimäe, Eliise-Koidula
;
Petkova, Vilma
;
Trikkel, Andres
Journal of thermal analysis and calorimetry
2024
/
p. 12651 - 12664
https://doi.org/10.1007/s10973-024-13655-x
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journal article EST
/
journal article ENG
2
journal article EST
/
journal article ENG
The composition of kukersite shale oil
Baird, Zachariah Steven
;
Oja, Vahur
;
Järvik, Oliver
Oil shale
2023
/
p. 25-43 : ill
https://doi.org/10.3176/oil.2023.1.02
https://artiklid.elnet.ee/record=b2903562*est
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journal article EST
/
journal article ENG
3
journal article EST
/
journal article ENG
Multivariate models based on infrared spectra as a substitute for oil property correlations to predict thermodynamic properties : evaluated on the basis of the narrow-boiling fractions of Kukersite retort oil
Baird, Zachariah Steven
;
Oja, Vahur
Oil shale
2022
/
p. 20-36
https://doi.org/10.3176/oil.2022.1.02
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journal article EST
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journal article ENG
4
journal article
Structure and evolved gas analyses (TG/DTA-MS and TG-FTIR) of mer-trichlorotris(thiourea)-indium(III), a precursor for indium sulfide thin films
Otto, Kairi
;
Bombicz, Petra
;
Madarasz, Janos
;
Oja Acik, Ilona
;
Krunks, Malle
;
Pokol, György
Journal of thermal analysis and calorimetry
2011
/
p. 83-91
https://link.springer.com/article/10.1007/s10973-011-1524-7
journal article
5
journal article EST
/
journal article ENG
Thermal decomposition study of HAuCl4·3H2O and AgNO3 as precursors for plasmonic metal nanoparticles
Otto, Kairi
;
Oja Acik, Ilona
;
Krunks, Malle
;
Tõnsuaadu, Kaia
;
Mere, Arvo
Journal of thermal analysis and calorimetry
2014
/
p. 1065-1072 : ill
https://doi.org/10.1007/s10973-014-3814-3
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journal article EST
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journal article ENG
Number of records 5, displaying
1 - 5
keyword
65
1.
FTIR spectroscopy
2.
Fourier-transform infrared spectroscopy (FTIR)
3.
EGA-FTIR
4.
Ex situ FTIR and XRD
5.
Fluorescence and FTIR
6.
Fourier transform infrared (FTIR)
7.
FTIR
8.
FTIR-PLS method
9.
TG/DTA/EGA-FTIR
10.
TG-DTA-FTIR
11.
TG–DTA–FTIR
12.
TG-DTA-FTIR/MS
13.
µFTIR
14.
AC impedance spectroscopy
15.
admittance spectroscopy
16.
Auger electron spectroscopy
17.
bioimpedance spectroscopy
18.
broadband impedance spectroscopy
19.
C NMR spectroscopy
20.
Cavity Ring-down Spectroscopy
21.
chiroptical spectroscopy
22.
delayed time reversal-nonlinear elastic wave spectroscopy
23.
diffuse reflectance spectroscopy in near infrared region
24.
DNP-NMR spectroscopy
25.
electrical impedance spectroscopy
26.
electrical impedance spectroscopy (EIS)
27.
electrochemical impedance spectroscopy
28.
energy dispersive spectroscopy
29.
energy dispersive x-ray spectroscopy
30.
fast impedance spectroscopy
31.
fluorescence spectroscopy
32.
Fourier transform infrared spectroscopy
33.
FT-IR spectroscopy
34.
gamma spectroscopy
35.
impedance spectroscopy
36.
Inelastic neutron scattering spectroscopy
37.
infrared spectroscopy (IR)
38.
ion mobility spectroscopy
39.
IR-spectroscopy
40.
laser induced breakdown spectroscopy
41.
laser-induced breakdown spectroscopy
42.
mass spectroscopy (MS)
43.
Molecular spectroscopy
44.
muon spectroscopy
45.
muon spin spectroscopy
46.
near infrared spectroscopy (NIRS)
47.
NMR spectroscopy
48.
nuclear magnetic resonance spectroscopy
49.
optical spectroscopy
50.
photoemission spectroscopy
51.
photoluminescence spectroscopy
52.
PL spectroscopy
53.
Raman spectroscopy
54.
secondary ion mass spectroscopy
55.
solid-state NMR spectroscopy
56.
spectroscopy
57.
Terahertz absorption spectroscopy
58.
thermal desorption spectroscopy
59.
two-photon absorption spectroscopy
60.
ultraviolet-visible (UV-Vis) spectroscopy
61.
UV−vis spectroscopy
62.
UV–vis spectroscopy
63.
UV-Vis spectroscopy
64.
X-ray fluorescence spectroscopy
65.
X-ray photoelectron spectroscopy
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