19 Bio-applications of NIR Spectroscopy
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31. J. Grabska, K.B. Be´ c, M. Ishigaki, C.W. Huck, Y. Ozaki, NIR spectra simulations by anharmonic
DFT-saturated and unsaturated long-chain fatty acids. J. Phys. Chem. B 122, 6931–6944 (2018)
32. K.B. Be´ c, J. Grabska, Y. Ozaki, M.A. Czarnecki, C.W. Huck, Simulated NIR spectra as sensitive
markers of the structure and interactions in nucleobases. Sci. Rep. 9, 17398 (2019)
33. K.R. Counsell, C.K. Vance, Recent advances of near infrared spectroscopy in wildlife and
ecology studies. NIR News 27, 29–32 (2016)
34. K.C. Elliot, R. Montgomery, D.B. Resnik, R. Godvin, T. Mudumba, J. Booth, K. Whyte, Drone
use for environmental research. IEEE Geosc. Rem. Sen. M. 7, 106–111 (2019)
35. V.H. Segtnan, S. Šaši´ c, T. Isaksson, Y. Ozaki, Studies on the structure of water using twodimensional near-infrared correlation spectroscopy and principal component analysis. Anal.
Chem. 73, 3153–3161 (2001)
36. S. Czarnik-Matusewicz, J.P. Pilorz, Hawranek, Temperature-dependent water structural transitions examined by near-IR and mid-IR spectra analyzed by multivariate curve resolution and
two-dimensional correlation spectroscopy. Anal. Chim. Acta 544, 15–25 (2005)
37. J. Muncan, R. Tsenkova, Aquaphotomics—From innovative knowledge to integrative platform
in science and technology. Molecules 24, 2742 (2019)
38. K.B. Be´ c, J. Grabska, C.G. Kirchler, C.W. Huck, NIR spectra simulation of thymol for
better understanding of the spectra forming factors, phase and concentration effects and PLS
regression features. J. Mol. Liq. 268, 895–902 (2018)
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