Water exchange between the first and second hydration shell is essential for the role of Mg2+ in biochemical processes. In order to provide microscopic insights into the exchange mechanism, we resolve the exchange pathways by all-atom molecular dynamics simulations and transition path sampling. Since the exchange kinetics relies on the choice of the water model and the ionic force field, we systematically investigate the influence of seven different polarizable and non-polarizable water and three different Mg2+ models. In all cases, water exchange can occur either via an indirect or direct mechanism (exchanging molecules occupy different/same position on the water octahedron). In addition, the results reveal a crossover from an interchange ...
We have performed constrained molecular dynamics simulations of magnesium chloride in water-ethanol ...
[[abstract]]Density functional theory and continuum dielectric methods have been employed to evaluat...
This cumulative thesis discusses the development of optimized force field parameters for Magnesium a...
Water exchange between the coordination shells of metal cations in aqueous solutions is fundamental ...
Magnesium is essential in many vital processes. To correctly describe Mg2+ in physiological processe...
Magnesium ions have an important role in the structure and folding mechanism of ribonucleic systems....
Magnesium plays a vital role in a large variety of biological processes. To model such processes by ...
Abstract: The hydration of Mg2+ and Zn2+ is examined using molecular dynamics simulations using thre...
The alkaline earth metals calcium and magnesium are critically involved in many biomolecular process...
Magnesium and zinc dications possess the same charge and have an almost identical size, yet they beh...
Metal cations are essential in many vital processes. In order to capture the role of different catio...
Quantum mechanical studies point to the importance of polarization and charge transfer (CT) in zinc ...
Therapeutic implications of Li+, in many cases, stem from its ability to inhibit certain Mg2+-depend...
The water mobility in single crystals of MgCl2 hydrates has been investigated with molecular dynamic...
Monte Carlo simulations of the hydration of Ca2+ and Mg2+ were performed. The interaction potential ...
We have performed constrained molecular dynamics simulations of magnesium chloride in water-ethanol ...
[[abstract]]Density functional theory and continuum dielectric methods have been employed to evaluat...
This cumulative thesis discusses the development of optimized force field parameters for Magnesium a...
Water exchange between the coordination shells of metal cations in aqueous solutions is fundamental ...
Magnesium is essential in many vital processes. To correctly describe Mg2+ in physiological processe...
Magnesium ions have an important role in the structure and folding mechanism of ribonucleic systems....
Magnesium plays a vital role in a large variety of biological processes. To model such processes by ...
Abstract: The hydration of Mg2+ and Zn2+ is examined using molecular dynamics simulations using thre...
The alkaline earth metals calcium and magnesium are critically involved in many biomolecular process...
Magnesium and zinc dications possess the same charge and have an almost identical size, yet they beh...
Metal cations are essential in many vital processes. In order to capture the role of different catio...
Quantum mechanical studies point to the importance of polarization and charge transfer (CT) in zinc ...
Therapeutic implications of Li+, in many cases, stem from its ability to inhibit certain Mg2+-depend...
The water mobility in single crystals of MgCl2 hydrates has been investigated with molecular dynamic...
Monte Carlo simulations of the hydration of Ca2+ and Mg2+ were performed. The interaction potential ...
We have performed constrained molecular dynamics simulations of magnesium chloride in water-ethanol ...
[[abstract]]Density functional theory and continuum dielectric methods have been employed to evaluat...
This cumulative thesis discusses the development of optimized force field parameters for Magnesium a...