249
8 Two-Dimensional Mid-Infrared Correlation Spectroscopy in Protein Research
mical methods in the study of biomembranes. Subcellular Biochemistry, vol 23. Springer,
pp 363–403
130. dzwolak W, Kato m, taniguchi Y (2002) Fourier transform infrared spectroscopy in highpressure studies on proteins. Biochim Biophys Acta 1595(1–2):131–144
131. Barth A, Zscherp C (2002) What vibrations tell us about proteins. Quaterly Rev Biophys
35(4):369–430
132. Jung Ym, Czarnik-matusewicz B, Kim SB (2004) Characterization of concentration-dependent infrared spectral variations of urea aqueous solutions by principal component analysis and two-dimensional correlation spectroscopy. J Phys Chem 108(34):13008–13014
133. Barton FE, himmelsbach dS, duckworth Jh, Smith mJ (1992) two-dimensional vibration
spectroscopy: correlation of mid- and near-infrared regions. Appl Spectrosc 46(3):420–429
134. mcClure WF, maeda h, dong J, Liu Y, ozaki Y (1996) two-dimensional correlation of
fourier transform near-infrared and fourier transform raman spectra i: mixtures of sugar and
protein. Appl Spectrosc 50(4):467–475
135. Wu Y, Jiang J h, ozaki Y (2002) A new possibility of generalized two-dimensional correlation spectroscopy: hybrid two-dimensional correlation spectroscopy. J Phys Chem A
106(11) 2422–2429
136. thomas m, Richardson hh (2000) two-dimensional Ft-IR correlation analysis of the
phase transitions in a liquid crystal, 4′-n-octyl-4-cyanobiphenyl (8CB). Vib Spectrosc
24(1):137–146
137. Elmore DL, Dluhy RA (2001) βν-Correlation analysis: a modified two-dimensional infrared correlation method for determining relative rates of intensity change. J Phys Chem B
105(45):11377–11386
138. Shanmukh S, Dluhy RA (2004) kν correlation analysis. a quantitative two-dimensional IR
correlation method for analysis of rate processes with exponential functions. J Phys Chem
A 108(26):5625–5634
139. Elmore dL, Shanmukh S, dluhy RA (2002) A study of binary phospholipid mixtures at the
air-water interface using infrared reflection-absorption spectroscopy and 2D IR βν correlation analysis. J Phys Chem A 106(14):3420–3428
140. Litwińczuk A, Petrus J, Czarnik-Matusewicz B (2012) Orientation of solid supported lipid
bilayers examined by βν-correlation analysis. Vib Spectrosc 60:173–179
141. Shanmukh S, dluhy RA (2004) 2d IR analyses of rate processes in lipid–antibiotic monomolecular films. vib Spectrosc 36(2):167–177
142. Czarnik-matusewicz, Pilorz S, hawranek JP (2005) 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(1–2):15–25
143. muik B, Lendl B, molina-diaz A, valcarcel m, Ayora-Cañada mJ (2007) two-dimensional
correlation spectroscopy and multivariate curve resolution for the study of lipid oxidation
in edible oils monitored by FtIR and Ft-Raman spectroscopy. Anal Chim Acta 593(1):54–
67
144. himmelsbach d, holser RA (2009) Application of 2d correlation spectroscopy with mCR
in the preparation of glycerol polyesters. vib Spectrosc 51(1):142–145
145. Spegazzini N (2010) two-dimensional infrared correlation spectroscopy and multivariate
curve resolution methods: application to quantitative monitoring of curing process. Phd
thesis. http://hdl.handle.net/10803/9043. Accessed 10 Apr 2013
146. Navea S, de Juan A, tauler R (2003) modeling temperature-dependent protein structural
transitions by combined near-IR and mid-IR spectroscopies and multivariate curve resolution. Anal Chem 75(20):5592–5601
147. Szyc L, Pilorz S, Czarnik-Matusewicz B (2008) FTIR-ATR investigations of an α-helix to
β-sheet conformational transition in poly(l-lysine). J Mol Liq 141(3):155–159
148. Jung Jm (2003) Principal component analysis based two-dimensional (PCA-2d) correlation spectroscopy: PCA denoising for 2d correlation spectroscopy. Bull Korean Chem Soc
24(9):1345–1350
8 Two-Dimensional Mid-Infrared Correlation Spectroscopy in Protein Research
mical methods in the study of biomembranes. Subcellular Biochemistry, vol 23. Springer,
pp 363–403
130. dzwolak W, Kato m, taniguchi Y (2002) Fourier transform infrared spectroscopy in highpressure studies on proteins. Biochim Biophys Acta 1595(1–2):131–144
131. Barth A, Zscherp C (2002) What vibrations tell us about proteins. Quaterly Rev Biophys
35(4):369–430
132. Jung Ym, Czarnik-matusewicz B, Kim SB (2004) Characterization of concentration-dependent infrared spectral variations of urea aqueous solutions by principal component analysis and two-dimensional correlation spectroscopy. J Phys Chem 108(34):13008–13014
133. Barton FE, himmelsbach dS, duckworth Jh, Smith mJ (1992) two-dimensional vibration
spectroscopy: correlation of mid- and near-infrared regions. Appl Spectrosc 46(3):420–429
134. mcClure WF, maeda h, dong J, Liu Y, ozaki Y (1996) two-dimensional correlation of
fourier transform near-infrared and fourier transform raman spectra i: mixtures of sugar and
protein. Appl Spectrosc 50(4):467–475
135. Wu Y, Jiang J h, ozaki Y (2002) A new possibility of generalized two-dimensional correlation spectroscopy: hybrid two-dimensional correlation spectroscopy. J Phys Chem A
106(11) 2422–2429
136. thomas m, Richardson hh (2000) two-dimensional Ft-IR correlation analysis of the
phase transitions in a liquid crystal, 4′-n-octyl-4-cyanobiphenyl (8CB). Vib Spectrosc
24(1):137–146
137. Elmore DL, Dluhy RA (2001) βν-Correlation analysis: a modified two-dimensional infrared correlation method for determining relative rates of intensity change. J Phys Chem B
105(45):11377–11386
138. Shanmukh S, Dluhy RA (2004) kν correlation analysis. a quantitative two-dimensional IR
correlation method for analysis of rate processes with exponential functions. J Phys Chem
A 108(26):5625–5634
139. Elmore dL, Shanmukh S, dluhy RA (2002) A study of binary phospholipid mixtures at the
air-water interface using infrared reflection-absorption spectroscopy and 2D IR βν correlation analysis. J Phys Chem A 106(14):3420–3428
140. Litwińczuk A, Petrus J, Czarnik-Matusewicz B (2012) Orientation of solid supported lipid
bilayers examined by βν-correlation analysis. Vib Spectrosc 60:173–179
141. Shanmukh S, dluhy RA (2004) 2d IR analyses of rate processes in lipid–antibiotic monomolecular films. vib Spectrosc 36(2):167–177
142. Czarnik-matusewicz, Pilorz S, hawranek JP (2005) 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(1–2):15–25
143. muik B, Lendl B, molina-diaz A, valcarcel m, Ayora-Cañada mJ (2007) two-dimensional
correlation spectroscopy and multivariate curve resolution for the study of lipid oxidation
in edible oils monitored by FtIR and Ft-Raman spectroscopy. Anal Chim Acta 593(1):54–
67
144. himmelsbach d, holser RA (2009) Application of 2d correlation spectroscopy with mCR
in the preparation of glycerol polyesters. vib Spectrosc 51(1):142–145
145. Spegazzini N (2010) two-dimensional infrared correlation spectroscopy and multivariate
curve resolution methods: application to quantitative monitoring of curing process. Phd
thesis. http://hdl.handle.net/10803/9043. Accessed 10 Apr 2013
146. Navea S, de Juan A, tauler R (2003) modeling temperature-dependent protein structural
transitions by combined near-IR and mid-IR spectroscopies and multivariate curve resolution. Anal Chem 75(20):5592–5601
147. Szyc L, Pilorz S, Czarnik-Matusewicz B (2008) FTIR-ATR investigations of an α-helix to
β-sheet conformational transition in poly(l-lysine). J Mol Liq 141(3):155–159
148. Jung Jm (2003) Principal component analysis based two-dimensional (PCA-2d) correlation spectroscopy: PCA denoising for 2d correlation spectroscopy. Bull Korean Chem Soc
24(9):1345–1350
