17. Hecht L, Phillips AL, Barron LD (1995) Determination of enantiomeric excess using Raman
optical activity. J Raman Spectrosc 26:727–732
18. Blanch EW, Bell AF, Hecht L, Day LA, Barron LD (1999) Raman optical activity of
filamentous bacteriophages: hydration of a-helices. J Mol Biol 290:1–7
19. Wen ZQ, Barron LD, Hecht L (1993) Vibrational Raman optical activity of monosaccharides. J Am Chem Soc 115:285–292
20. Bell AF, Hecht L, Barron LD (1994) Disaccharide solution stereochemistry from vibrational
Raman optical activity. J Am Chem Soc 116:5155–5161
21. Bell AF, Hecht L, Barron LD (1995) Vibrational Raman optical activity of ketose
monosaccharides. Spectrochim Acta A 51:1367–1378
22. Blanch EW, Hecht L, Barron LD (2003) Vibrational Raman optical activity of proteins,
nucleic acids, and viruses. Methods 29:196–209
23. Kessler J, Yamamoto S, Bouř P (2017) Establishing the link between fibril formation and
Raman optical activity spectra of insulin. Phys Chem Chem Phys 19:13614–13621
24. Gąsior-Głogowska M, Malek K, Zajac G, Baranska M (2016) A new insight into the
interaction of cisplatin with DNA: ROA spectroscopic studies on the therapeutic effect of the
drug. Analyst 141:291–296
25. Polavarapu PL (1990) Ab initio vibrational Raman and Raman optical activity spectra.
J Phys Chem 94:8106–8112
26. Bose PK, Polavarapu PL, Barron LD, Hecht L (1990) Ab initio and experimental Raman
optical activity in (+)-(R)-methyloxirane. J Phys Chem 94:1734–1740
27. Ruud K, Helgaker T, Bouř P (2002) Gauge-origin independent density-functional theory
calculations of vibrational Raman optical activity. J Phys Chem A 106:7448–7455
28. Jovan Jose KV, Raghavachari K (2016) Raman optical activity spectra for large molecules
through molecules-in-molecules fragment-based approach. J Chem Theory Comput 12:585–
594
29. Kessler J, Kapitán J, Bouř P (2015) First-principles predictions of vibrational Raman optical
activity of globular proteins. J Phys Chem Lett 6:3314–3319
30. Abdali S, Blanch EW (2008) Surface enhanced Raman optical activity (SEROA). Chem Soc
Rev 37:980–992
31. Hiramatsu K, Leproux P, Couderc V, Nagata T, Kano H (2015) Raman optical activity
spectroscopy by visible-excited coherent anti-Stokes Raman scattering. Opt Lett 40:4170–
4173
32. Tatarkovič M, Miškovičová M, Šťovíčková L, Synytsya A, Petruželka L, Setnička V (2015)
The potential of chiroptical and vibrational spectroscopy of blood plasma for the
discrimination between colon cancer patients and the control group. Analyst 140:2287–2293
33. Šebestík J, Teplý F, Císařová I, Vávra J, Koval D, Bouř P (2016) Intense chirality induction
in nitrile solvents by a helquat dye monitored by near resonance Raman scattering. Chem
Commun 52:6257–6260
34. Šebestík J, Bouř P (2011) Raman optical activity of methyloxirane gas and liquid. J Phys
Chem Lett 2:498–502
35. Šebestík J, Kapitán J, Pačes O, Bouř P (2016) Diamagnetic Raman optical activity of
chlorine, bromine, and iodine gases. Angew Chem—Int Ed 55:3504–3508
36. Šebestík J, Bouř P (2014) Observation of paramagnetic Raman optical activity of nitrogen
dioxide. Angew Chem—Int Ed 53:9236–9239
37. Wu T, Kapitán J, Mašek V, Bouř P (2015) Detection of circularly polarized luminescence of
a Cs–Eu
III complex in Raman optical activity experiments. Angew Chem—Int Ed
54:14933–14936
38. Nafie LA (1996) Theory of resonance Raman optical activity: the single electronic state
limit. Chem Phys 205:309–322
39. Vargek M, Freedman TB, Lee E, Nafie L (1998) Experimental observation of resonance
Raman optical activity. Chem Phys Lett 287:359–364
40. Merten C, Li H, Nafie LA (2012) Simultaneous resonance Raman optical activity involving
two electronic states. J Phys Chem A 116:7329–7336
6 Small and Large Molecules Investigated by Raman Spectroscopy
189
Précédent

- 199/528

Suivant