Traditionally, spectroscopic studies of chiral molecules have centered on electronic optical activity, usually measured as optical rotation or circular dichroism of visible and near-ultraviolet radiation. However, over the past two decades advances in optical and electronic technology have enabled optical activity measurements to be extended into the vibrational spectrum using both infrared and Raman techniques (Barron, 1982; Diem, 1993). It is now well established that vibrational optical activity opens up a whole new world of fundamental studies and practical applications
It has long been appreciated that water, the natural biological medium, plays a central role in dete...
Vibrational optical activity (VOA) is a research field in full expansion. The two main areas where V...
The vlue of vibrational spectroscopy in the study of biopolymers has been greatly enhanced by adding...
This chapter discusses optical activity measurements. Chiroptical spectroscopic techniques are parti...
Determination of the solution structure and function of biomolecules such as proteins, carbohydrates...
This article reviews all the published work concerned with the study of vibrational optical activity...
The theory and applications of Raman optical activity (ROA), which measures vibrational optical acti...
Following its first observation over 40 years ago, Raman optical activity (ROA), which may be measur...
Raman optical activity (ROA) measures vibrational optical activity by means of a small difference in...
Raman optical activity measures vibrational optical activity by means of a small difference in the i...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
Support from NSF Grants MPS-04656-A01 and CHE76-21294 is gratefully acknowledged.Author Institution:...
Chiral molecules can exist in two forms that are mirror images of each other. Discrimination of both...
Advances in Raman optical activity (ROA) instrumentation based on the employment of a backscattering...
Vibrational Raman optical activity (ROA) is measured in our laboratory as a small intensity differen...
It has long been appreciated that water, the natural biological medium, plays a central role in dete...
Vibrational optical activity (VOA) is a research field in full expansion. The two main areas where V...
The vlue of vibrational spectroscopy in the study of biopolymers has been greatly enhanced by adding...
This chapter discusses optical activity measurements. Chiroptical spectroscopic techniques are parti...
Determination of the solution structure and function of biomolecules such as proteins, carbohydrates...
This article reviews all the published work concerned with the study of vibrational optical activity...
The theory and applications of Raman optical activity (ROA), which measures vibrational optical acti...
Following its first observation over 40 years ago, Raman optical activity (ROA), which may be measur...
Raman optical activity (ROA) measures vibrational optical activity by means of a small difference in...
Raman optical activity measures vibrational optical activity by means of a small difference in the i...
We present here an introductory review of Raman optical activity (ROA), a newly developed version of...
Support from NSF Grants MPS-04656-A01 and CHE76-21294 is gratefully acknowledged.Author Institution:...
Chiral molecules can exist in two forms that are mirror images of each other. Discrimination of both...
Advances in Raman optical activity (ROA) instrumentation based on the employment of a backscattering...
Vibrational Raman optical activity (ROA) is measured in our laboratory as a small intensity differen...
It has long been appreciated that water, the natural biological medium, plays a central role in dete...
Vibrational optical activity (VOA) is a research field in full expansion. The two main areas where V...
The vlue of vibrational spectroscopy in the study of biopolymers has been greatly enhanced by adding...