ABSTRACT: Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been recently extended to the optical domain in the ultraviolet (UV) spectral region. UV-active aromatic side chains can thus be used as local highly specific markers for tracking dynamics and structural rearrangements of proteins. Here we demonstrate that 2D electronic spectra of a model proteic system, a tetrapeptide with two aromatic side chains, contain enough structural information to distinguish between two different configurations with distant and vicinal side chains. For accurate simulations of the 2DUV spectra in solution, we combine a quantum mechanics/molecular mechanics approach based on wave function methods, accounting for inte...
none4siFirst-principles simulations of two-dimensional electronic spectroscopy in the ultraviolet re...
Theoretical descriptions of two-dimensional (2D) vibrational and electronic spectroscopy are present...
A fully quantitative theory of the relationship between protein conformation and optical spectroscop...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
The ability of nonlinear electronic spectroscopy to track folding/unfolding processes of proteins in...
The ability of nonlinear electronic spectroscopy to track folding/unfolding processes of proteins in...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
Understanding the exciton dynamics in biological systems is crucial for the manipulation of their fu...
© 2014 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. he ability of nonlinear electronic spectrosco...
none5siTwo-dimensional electronic spectroscopy (2DES) is a cutting-edge technique for investigating ...
none4siFirst-principles simulations of two-dimensional electronic spectroscopy in the ultraviolet re...
Theoretical descriptions of two-dimensional (2D) vibrational and electronic spectroscopy are present...
A fully quantitative theory of the relationship between protein conformation and optical spectroscop...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
Two-dimensional (2D) optical spectroscopy techniques based on ultrashort laser pulses have been rece...
The ability of nonlinear electronic spectroscopy to track folding/unfolding processes of proteins in...
The ability of nonlinear electronic spectroscopy to track folding/unfolding processes of proteins in...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
We introduce the basic concepts of two-dimensional electronic spectroscopy (2DES) and a general theo...
Understanding the exciton dynamics in biological systems is crucial for the manipulation of their fu...
© 2014 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. he ability of nonlinear electronic spectrosco...
none5siTwo-dimensional electronic spectroscopy (2DES) is a cutting-edge technique for investigating ...
none4siFirst-principles simulations of two-dimensional electronic spectroscopy in the ultraviolet re...
Theoretical descriptions of two-dimensional (2D) vibrational and electronic spectroscopy are present...
A fully quantitative theory of the relationship between protein conformation and optical spectroscop...