Resonance Raman Optical Activity (RROA) appeared as a natural extension of the nonresonance branch. It combines the structural sensitivity of chiroptical spectroscopy with the signal enhancement coming from the resonance of molecular electronic transitions with the excitation laser light. However, the idea has been hampered by many technical and theoretical problems that are being clarified only in recent years. We provide the theoretical basis and several examples documenting the problems, achievements, and potential of RROA, in particular in biomolecular studies
Traditionally, spectroscopic studies of chiral molecules have centered on electronic optical activit...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
This chapter discusses optical activity measurements. Chiroptical spectroscopic techniques are parti...
The monosignate character of resonance Raman optical activity (RROA) spectra has been often taken as...
The monosignate character of resonance Raman optical activity (RROA) spectra has been often taken as...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
Raman optical activity measures vibrational optical activity by means of a small difference in the i...
The theory and applications of Raman optical activity (ROA), which measures vibrational optical acti...
By looking back on the history of Raman Optical Activity (ROA), the present article shows that the s...
This chapter introduces Raman spectroscopy and the concept of resonance enhancement of Raman scatter...
This chapter introduces Raman spectroscopy and the concept of resonance enhancement of Raman scatter...
Determination of the solution structure and function of biomolecules such as proteins, carbohydrates...
Raman optical activity (ROA) measures vibrational optical activity by means of a small difference in...
Resonance Raman optical activity (RROA) possesses all aspects of a sensitive tool for molecular dete...
Traditionally, spectroscopic studies of chiral molecules have centered on electronic optical activit...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
This chapter discusses optical activity measurements. Chiroptical spectroscopic techniques are parti...
The monosignate character of resonance Raman optical activity (RROA) spectra has been often taken as...
The monosignate character of resonance Raman optical activity (RROA) spectra has been often taken as...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
Raman optical activity measures vibrational optical activity by means of a small difference in the i...
The theory and applications of Raman optical activity (ROA), which measures vibrational optical acti...
By looking back on the history of Raman Optical Activity (ROA), the present article shows that the s...
This chapter introduces Raman spectroscopy and the concept of resonance enhancement of Raman scatter...
This chapter introduces Raman spectroscopy and the concept of resonance enhancement of Raman scatter...
Determination of the solution structure and function of biomolecules such as proteins, carbohydrates...
Raman optical activity (ROA) measures vibrational optical activity by means of a small difference in...
Resonance Raman optical activity (RROA) possesses all aspects of a sensitive tool for molecular dete...
Traditionally, spectroscopic studies of chiral molecules have centered on electronic optical activit...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
This chapter discusses optical activity measurements. Chiroptical spectroscopic techniques are parti...