10 Chemometric Analysis of Raman and IR Spectra of Natural Dyes
305
32. Bruni S, gugliemi v, Pozzi F (2011) historical organic dyes: a surface-enhanced Raman scattering (SERS) spectral database on Ag Lee–meisel colloids aggregated by NaClo4. J Raman
Spectrosc 42:1267–1281
33. Pozzi F, Lombardi JR, Bruni S, Leona m (2012) Sample treatment considerations in the analysis of organic colorants by surface-enhanced Raman scattering. Anal Chem 84:3751–3757
34. Casadio F, Leona m, Lombardi JR, van duyne R (2010) Identification of organic colorants in
fibers, paints, and glazes by surface enhanced Raman spectroscopy. Acc Chem Res 43:782–791
35. hering K, Cialla d, Ackermann K et al (2008) SERS: a versatile tool in chemical and biochemical diagnostics. Anal Bioanal Chem 390:113–124
36. madariaga Jm (2012) Identification of dyes and pigments by vibrational spectroscopy. In:
Chalmers Jm, Edwards hgm, hargreaves md (eds) Infrared and Raman Spectroscopy in
forensic science. Wiley, Chichester
37. dent g (2006) vibrational spectroscopy of colors dyes and pigments In: griffiths P, Chalmers Jm (eds) handbook of vibrational spectroscopy. Wiley, Chichester
38. mirabella Fm (2006) Principles, theory and practice of internal reflection spectroscopy. In:
griffiths P, Chalmers Jm (eds) handbook of vibrational spectroscopy. Wiley, Chichester
39. Kokot S, Crawford K, Rintoul L, meyer u (1997) A dRIFtS study of reactive dye states on
cotton fabric. vib Spectrosc 15:103–111
40. Navas N, Romero-Pastor J, manzano E, Cardell C (2008) Benefits of applying combined
diffuse reflectance FtIR spectroscopy and principal component analysis for the study of blue
tempera historical painting. Anal Chim Acta 630:141–149
41. Baran A, Fiedler A, Schulz h, Baranska m (2010) In situ Raman and IR spectroscopic analysis of indigo dye. Anal methods 2:1372–1376
42. Bruni S, Caglio S, guglielmi v, Poldi g (2008) the joined use of n.i. spectroscopic analyses—FtIR, Raman, visible reflectance spectrometry and EdXRF—to study drawings and
illuminated manuscripts. Appl Phys A 92:103–108
43. Rubio-diaz dE, Francis dm, Rodriguez-Saona LE (2011) External calibration models for the
measurement of tomato carotenoids by infrared spectroscopy. J Food Comp Anal 24:121–126
44. Casadio F, toniolo L (2001) the analysis of polychrome works of art: 40 years of infrared
spectroscopic investigations, J Cult herit 2:71–78
45. Wang XF, Yu J, Zhang AL et al (2012) Nondestructive identification for red ink entries of
seals by Raman and Fourier transform infrared spectrometry. Spectrochim Acta A 97:986–994
46. Koperska m, Lojewski t, Lojewska J (2011) vibrational spectroscopy techniques to study
degradation of natural dyes. Assessment of oxygen-free cassette for safe exposition of artefacts. Anal Bioanal Chem 399:3271–3283
47. miliani C, domenici d, Clementi C et al (2012) Colouring materials of pre-Columbian codices: non-invasive in situ spectroscopic analysis of the Codex Cospi. J Archaeol Sci 39:672–679
48. Saurina J (2010) Characterization of wines using compositional profiles and chemometrics.
trAC-trend Anal Chem 29:234–245
49. Pappas CS, takidelli C, tsantili E et al (2011) Quantitative determination of anthocyanins
in three sweet cherry varieties using diffuse reflectance infrared Fourier transform spectroscopy. J Food Comp Anal 24:17–21
50. Bauer R, Nieuwoudt h, Bauer FF et al (2008) FtIR spectroscopy for grape and wine analysis. Anal Chem 80:1371–1379
51. Strachan CJ, Rades t, gordon KC, Ranten J (2007) Raman spectroscopy for quantitative
analysis of pharmaceutical solids. J Pharm Pharmacol 59:179–192
52. Blanco m, villarroya I (2002) NIR spectroscopy: a rapid-response analytical tool. trACtrends Anal Chem 21:240–250
53. davey mW, Saeys W, hof E et al (2009) Application of visible and Near-Infrared Reflectance Spectroscopy (vis/NIRS) to determine carotenoid contents in banana (musa spp.) fruit
pulp. J Agric Food Chem 57:1742–1751
54. Sharpe PJh, Barber hN (1972) Near infrared reflectance of colored fruits. Appl opt 11:2902–
2906
55. Næs t, Isaksson t, Fearn t, davies t (2002) A user-friendly guide to multivariate calibration
and classification. NIR Publications, Chichester
305
32. Bruni S, gugliemi v, Pozzi F (2011) historical organic dyes: a surface-enhanced Raman scattering (SERS) spectral database on Ag Lee–meisel colloids aggregated by NaClo4. J Raman
Spectrosc 42:1267–1281
33. Pozzi F, Lombardi JR, Bruni S, Leona m (2012) Sample treatment considerations in the analysis of organic colorants by surface-enhanced Raman scattering. Anal Chem 84:3751–3757
34. Casadio F, Leona m, Lombardi JR, van duyne R (2010) Identification of organic colorants in
fibers, paints, and glazes by surface enhanced Raman spectroscopy. Acc Chem Res 43:782–791
35. hering K, Cialla d, Ackermann K et al (2008) SERS: a versatile tool in chemical and biochemical diagnostics. Anal Bioanal Chem 390:113–124
36. madariaga Jm (2012) Identification of dyes and pigments by vibrational spectroscopy. In:
Chalmers Jm, Edwards hgm, hargreaves md (eds) Infrared and Raman Spectroscopy in
forensic science. Wiley, Chichester
37. dent g (2006) vibrational spectroscopy of colors dyes and pigments In: griffiths P, Chalmers Jm (eds) handbook of vibrational spectroscopy. Wiley, Chichester
38. mirabella Fm (2006) Principles, theory and practice of internal reflection spectroscopy. In:
griffiths P, Chalmers Jm (eds) handbook of vibrational spectroscopy. Wiley, Chichester
39. Kokot S, Crawford K, Rintoul L, meyer u (1997) A dRIFtS study of reactive dye states on
cotton fabric. vib Spectrosc 15:103–111
40. Navas N, Romero-Pastor J, manzano E, Cardell C (2008) Benefits of applying combined
diffuse reflectance FtIR spectroscopy and principal component analysis for the study of blue
tempera historical painting. Anal Chim Acta 630:141–149
41. Baran A, Fiedler A, Schulz h, Baranska m (2010) In situ Raman and IR spectroscopic analysis of indigo dye. Anal methods 2:1372–1376
42. Bruni S, Caglio S, guglielmi v, Poldi g (2008) the joined use of n.i. spectroscopic analyses—FtIR, Raman, visible reflectance spectrometry and EdXRF—to study drawings and
illuminated manuscripts. Appl Phys A 92:103–108
43. Rubio-diaz dE, Francis dm, Rodriguez-Saona LE (2011) External calibration models for the
measurement of tomato carotenoids by infrared spectroscopy. J Food Comp Anal 24:121–126
44. Casadio F, toniolo L (2001) the analysis of polychrome works of art: 40 years of infrared
spectroscopic investigations, J Cult herit 2:71–78
45. Wang XF, Yu J, Zhang AL et al (2012) Nondestructive identification for red ink entries of
seals by Raman and Fourier transform infrared spectrometry. Spectrochim Acta A 97:986–994
46. Koperska m, Lojewski t, Lojewska J (2011) vibrational spectroscopy techniques to study
degradation of natural dyes. Assessment of oxygen-free cassette for safe exposition of artefacts. Anal Bioanal Chem 399:3271–3283
47. miliani C, domenici d, Clementi C et al (2012) Colouring materials of pre-Columbian codices: non-invasive in situ spectroscopic analysis of the Codex Cospi. J Archaeol Sci 39:672–679
48. Saurina J (2010) Characterization of wines using compositional profiles and chemometrics.
trAC-trend Anal Chem 29:234–245
49. Pappas CS, takidelli C, tsantili E et al (2011) Quantitative determination of anthocyanins
in three sweet cherry varieties using diffuse reflectance infrared Fourier transform spectroscopy. J Food Comp Anal 24:17–21
50. Bauer R, Nieuwoudt h, Bauer FF et al (2008) FtIR spectroscopy for grape and wine analysis. Anal Chem 80:1371–1379
51. Strachan CJ, Rades t, gordon KC, Ranten J (2007) Raman spectroscopy for quantitative
analysis of pharmaceutical solids. J Pharm Pharmacol 59:179–192
52. Blanco m, villarroya I (2002) NIR spectroscopy: a rapid-response analytical tool. trACtrends Anal Chem 21:240–250
53. davey mW, Saeys W, hof E et al (2009) Application of visible and Near-Infrared Reflectance Spectroscopy (vis/NIRS) to determine carotenoid contents in banana (musa spp.) fruit
pulp. J Agric Food Chem 57:1742–1751
54. Sharpe PJh, Barber hN (1972) Near infrared reflectance of colored fruits. Appl opt 11:2902–
2906
55. Næs t, Isaksson t, Fearn t, davies t (2002) A user-friendly guide to multivariate calibration
and classification. NIR Publications, Chichester
