AbstractPhotothermal methods permit measurement of molecular volume changes of solvated molecules over nanosecond timescales. Such experiments are an important tool in investigating complex biophysical phenomena including identifying transient species in solution. Developing a microscopic understanding of the origin of volume changes in the condensed phase is needed to complement the experimental measurements. A molecular dynamics (MD) method exploiting available simulation methodology is demonstrated here that both mimics experimental measurements and provides microscopic resolution to the thermodynamic measurements. To calculate thermodynamic volume changes over time, isothermal-isobaric (NPT) MD is performed on a solution for a chosen le...
To decipher the biomolecular interaction mechanism play an important role in understanding the myste...
To assess the feasibility of high-pressure simulation of biomolecular systems, we discuss some pract...
1 Introduction Chapter 1 contains a basic introduction to solvation models. Special attention is ...
AbstractPhotothermal methods permit measurement of molecular volume changes of solvated molecules ov...
Molecular dynamics (MD) is an appropriate method for investigation of biomolecular systems and helps...
Molecular dynamics (MD) solves a system of ordinary differential equations governing the mo-tion of ...
Molecular dynamics (MD) is an appropriate method for investigation of biomolecular systems and helps...
Molecular dynamics (MD) is an appropriate method for investigation of biomolecular systems and helps...
Molecular simulation is increasingly used in many theoretical as well applicative fields in both Lif...
Molecular Dynamics (MD) simulations were used in conjunction with the Kirkwood-Buff (KB) theory to c...
The dynamics of water molecules near the protein surface are different from those of bulk water and ...
Developments in computing hardware and algorithms have made direct molecular dynamics simulation wit...
Molecular Dynamics (MD) simulations were used in conjunction with the Kirkwood-Buff (KB) theory to c...
Since most experimental observations are performed at constant temperature and pressure, the isother...
Molecular dynamics studies of chemical processes in solution are of great value in a wide spectrum o...
To decipher the biomolecular interaction mechanism play an important role in understanding the myste...
To assess the feasibility of high-pressure simulation of biomolecular systems, we discuss some pract...
1 Introduction Chapter 1 contains a basic introduction to solvation models. Special attention is ...
AbstractPhotothermal methods permit measurement of molecular volume changes of solvated molecules ov...
Molecular dynamics (MD) is an appropriate method for investigation of biomolecular systems and helps...
Molecular dynamics (MD) solves a system of ordinary differential equations governing the mo-tion of ...
Molecular dynamics (MD) is an appropriate method for investigation of biomolecular systems and helps...
Molecular dynamics (MD) is an appropriate method for investigation of biomolecular systems and helps...
Molecular simulation is increasingly used in many theoretical as well applicative fields in both Lif...
Molecular Dynamics (MD) simulations were used in conjunction with the Kirkwood-Buff (KB) theory to c...
The dynamics of water molecules near the protein surface are different from those of bulk water and ...
Developments in computing hardware and algorithms have made direct molecular dynamics simulation wit...
Molecular Dynamics (MD) simulations were used in conjunction with the Kirkwood-Buff (KB) theory to c...
Since most experimental observations are performed at constant temperature and pressure, the isother...
Molecular dynamics studies of chemical processes in solution are of great value in a wide spectrum o...
To decipher the biomolecular interaction mechanism play an important role in understanding the myste...
To assess the feasibility of high-pressure simulation of biomolecular systems, we discuss some pract...
1 Introduction Chapter 1 contains a basic introduction to solvation models. Special attention is ...