Raman optical activity measures vibrational optical activity by means of a small difference in the intensity of Raman scattering from chiral molecules in right and left circularly polarized incident light. The sensitivity of ROA to chirality makes it an incisive probe of biomolecular structure and dynamics in aqueous solution. This article reviews the basic theory and instrumentation of ROA, and describes recent results which illustrate how ROA provides new insight into current biomedical problems including protein misfolding and disease, and virus structure at the molecular level
A vibrational Raman optical activity (ROA) study of a range of different structural types of virus e...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
Recent advances in Raman optical activity (ROA) instrumentation are outlined which have enhanced sig...
Raman optical activity (ROA) measures vibrational optical activity by means of a small difference in...
Determination of the solution structure and function of biomolecules such as proteins, carbohydrates...
The theory and applications of Raman optical activity (ROA), which measures vibrational optical acti...
On account of its sensitivity to chirality Raman optical activity (ROA), which may be measured as a ...
It has long been appreciated that water, the natural biological medium, plays a central role in dete...
Following its first observation over 40 years ago, Raman optical activity (ROA), which may be measur...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
The vlue of vibrational spectroscopy in the study of biopolymers has been greatly enhanced by adding...
Vibrational Raman optical activity (ROA) which is the difference in the Raman scattering of left and...
Vibrational Raman optical activity (ROA) is measured in our laboratory as a small intensity differen...
Advances in Raman optical activity (ROA) instrumentation based on the employment of a backscattering...
Advances in Raman optical activity (ROA) instrumentation have enhanced the sensitivity to the level ...
A vibrational Raman optical activity (ROA) study of a range of different structural types of virus e...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
Recent advances in Raman optical activity (ROA) instrumentation are outlined which have enhanced sig...
Raman optical activity (ROA) measures vibrational optical activity by means of a small difference in...
Determination of the solution structure and function of biomolecules such as proteins, carbohydrates...
The theory and applications of Raman optical activity (ROA), which measures vibrational optical acti...
On account of its sensitivity to chirality Raman optical activity (ROA), which may be measured as a ...
It has long been appreciated that water, the natural biological medium, plays a central role in dete...
Following its first observation over 40 years ago, Raman optical activity (ROA), which may be measur...
Raman optical activity (ROA), which measures a small difference in the intensity of Raman scattering...
The vlue of vibrational spectroscopy in the study of biopolymers has been greatly enhanced by adding...
Vibrational Raman optical activity (ROA) which is the difference in the Raman scattering of left and...
Vibrational Raman optical activity (ROA) is measured in our laboratory as a small intensity differen...
Advances in Raman optical activity (ROA) instrumentation based on the employment of a backscattering...
Advances in Raman optical activity (ROA) instrumentation have enhanced the sensitivity to the level ...
A vibrational Raman optical activity (ROA) study of a range of different structural types of virus e...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
Recent advances in Raman optical activity (ROA) instrumentation are outlined which have enhanced sig...