A fully quantitative theory of the relationship between protein conformation and optical spectroscopy would facilitate deeper insights into biophysical and simulation studies of protein dynamics and folding. In contrast to intense bands in the far-ultraviolet, near-UV bands are much weaker and have been challenging to compute theoretically. We report some advances in the accuracy of calculations in the near-UV, which were realised through the consideration of the vibrational structure of the electronic transitions of aromatic side chains
Two-photon circular dichroism (TPCD) has been recognized for its exceptional spectroscopic ability f...
Both far- and near-UV electronic circular dichroism (ECD) spectra have bands sensitive to thermal un...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
A fully quantitative theory of the relationship between protein conformation and optical spectroscop...
A fully quantitative theory connecting protein conformation and optical spectroscopy would facilitat...
Vibrational structure in the near-UV circular dichroism (CD) spectra of proteins is an important sou...
A fully quantitative theory connecting protein conformation and optical spectroscopy would facilitat...
Herein, we report on the calculation and the comparative analysis of the theoretical two-photon circ...
Circular dichroism (CD) spectroscopy is an important technique in studying protein structure, especi...
The Franck–Condon effect is considered and the vibrational structure of the πnbπ* transition of the ...
Trp is the most spectroscopically informative aromatic amino acid of proteins. However, the near-UV ...
Circular dichroism (CD) is known to be an excellent tool for the determination of protein secondary ...
Herein, we report on the calculation and the comparative analysis of the theoretical two-photon circ...
Circular dichroism (CD) is an important spectroscopic technique that enables the characterization of...
ABSTRACT: Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have...
Two-photon circular dichroism (TPCD) has been recognized for its exceptional spectroscopic ability f...
Both far- and near-UV electronic circular dichroism (ECD) spectra have bands sensitive to thermal un...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
A fully quantitative theory of the relationship between protein conformation and optical spectroscop...
A fully quantitative theory connecting protein conformation and optical spectroscopy would facilitat...
Vibrational structure in the near-UV circular dichroism (CD) spectra of proteins is an important sou...
A fully quantitative theory connecting protein conformation and optical spectroscopy would facilitat...
Herein, we report on the calculation and the comparative analysis of the theoretical two-photon circ...
Circular dichroism (CD) spectroscopy is an important technique in studying protein structure, especi...
The Franck–Condon effect is considered and the vibrational structure of the πnbπ* transition of the ...
Trp is the most spectroscopically informative aromatic amino acid of proteins. However, the near-UV ...
Circular dichroism (CD) is known to be an excellent tool for the determination of protein secondary ...
Herein, we report on the calculation and the comparative analysis of the theoretical two-photon circ...
Circular dichroism (CD) is an important spectroscopic technique that enables the characterization of...
ABSTRACT: Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have...
Two-photon circular dichroism (TPCD) has been recognized for its exceptional spectroscopic ability f...
Both far- and near-UV electronic circular dichroism (ECD) spectra have bands sensitive to thermal un...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...