The interaction of water with alkanethiolate chains is studied from first principles. A detailed analysis is performed by optimizing the structure of small water clusters, one-dimensional water chains, and ordered and disordered thin water layers adsorbed on hydroxyl(OH)- and methyl(CH3)-terminated alkanethiol monolayers. The hydrophilic/hydrophobic character of these two different substrates is investigated by means of an energetic analysis combined with hydrogen-bond counting. On the hydrophilic OH-terminated alkanethiol surface, zigzag, one-dimensional water chains and disordered thin water layers are the energetically favored structures. The ab initio results con be used to determine the optimal value of the empirical parameters charact...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
We study the interaction of water with oligo(ethylene glycol) (OEG)-terminated alkane thiolate self-...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
The interaction of water with alkanethiolate chains is studied from first principles. A detailed ana...
A Grand canonical Monte Carlo technique is used to simulate the behavior of the TIP4P model of water...
A Grand canonical Monte Carlo technique is used to simulate the behavior of the TIP4P model of water...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Hydrocarbon chains are important intermediates in various aqueous-phase surface processes, such as C...
The hydration forces operating between two parallel methoxy tri(ethylene glycol)-terminated alkaneth...
The hydration forces operating between two parallel methoxy tri(ethylene glycol)-terminated alkaneth...
Molecular dynamics (MD) computer simulations of liquid water adsorbed on the muscovite (001) surface...
Interfaces involving aqueous fluid phases play critical roles in natural and technologically importa...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
The grand canonical Monte Carlo technique and atomistic force fields are used to calculate the force...
We study the interaction of water with oligo(ethylene glycol) (OEG)-terminated alkane thiolate self-...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
We study the interaction of water with oligo(ethylene glycol) (OEG)-terminated alkane thiolate self-...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
The interaction of water with alkanethiolate chains is studied from first principles. A detailed ana...
A Grand canonical Monte Carlo technique is used to simulate the behavior of the TIP4P model of water...
A Grand canonical Monte Carlo technique is used to simulate the behavior of the TIP4P model of water...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Hydrocarbon chains are important intermediates in various aqueous-phase surface processes, such as C...
The hydration forces operating between two parallel methoxy tri(ethylene glycol)-terminated alkaneth...
The hydration forces operating between two parallel methoxy tri(ethylene glycol)-terminated alkaneth...
Molecular dynamics (MD) computer simulations of liquid water adsorbed on the muscovite (001) surface...
Interfaces involving aqueous fluid phases play critical roles in natural and technologically importa...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
The grand canonical Monte Carlo technique and atomistic force fields are used to calculate the force...
We study the interaction of water with oligo(ethylene glycol) (OEG)-terminated alkane thiolate self-...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...
We study the interaction of water with oligo(ethylene glycol) (OEG)-terminated alkane thiolate self-...
Water is ubiquitous in nature and ordinary to us. However, no matter how common it is, water is uniq...