Surface hydration has been proposed as the key antifouling mechanism of antifouling materials. However, molecular-level details of the structure, dynamics, and interactions of interfacial water around antifouling polymers still remain elusive. In this work, using all-atom molecular dynamics (MD) simulations, we studied four different acrylamides (AMs) for their interfacial water behaviors and their interactions with a protein, with special attention to the effect of carbon spacer lengths (CSLs) on the hydration properties of AMs. Collective MD simulation data revealed that although all four AMs displayed strong hydration, N-hydroxymethyl acrylamide (HMAA) and N-(2-hydroxyethyl)acrylamide (HEAA) with shorter CSLs displayed a longer residenc...
Molecular dynamics simulations were used to investigate the solubility and permeability of H2O in a ...
Understanding how material properties affect hydrophobic interactionsthe water-mediated interaction...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
Antifouling materials with different molecular structures have shown their promising roles in avoidi...
Numerous biocompatible antifouling polymers have been developed for a wide variety of fundamental an...
Biofouling is a multibillion dollar problem in the modern world, stimulating a large research effort...
We perform all-atom molecular dynamics simulations of the adsorption of amino acid side-chain analog...
Antifouling materials with different molecular structures have been designed, synthesized, and evalu...
Using molecular dynamics (MD) simulations, we study the molecular behavior and hydration properties ...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Using molecular dynamics (MD) simulations, we study the molecular behavior and hydration properties ...
Hydrophobic interactions guide important molecular self-assembly processes such as protein folding. ...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
Molecular dynamics simulations were used to investigate the solubility and permeability of H2O in a ...
Understanding how material properties affect hydrophobic interactionsthe water-mediated interaction...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
Antifouling materials with different molecular structures have shown their promising roles in avoidi...
Numerous biocompatible antifouling polymers have been developed for a wide variety of fundamental an...
Biofouling is a multibillion dollar problem in the modern world, stimulating a large research effort...
We perform all-atom molecular dynamics simulations of the adsorption of amino acid side-chain analog...
Antifouling materials with different molecular structures have been designed, synthesized, and evalu...
Using molecular dynamics (MD) simulations, we study the molecular behavior and hydration properties ...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Using molecular dynamics (MD) simulations, we study the molecular behavior and hydration properties ...
Hydrophobic interactions guide important molecular self-assembly processes such as protein folding. ...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
First-principles molecular dynamics simulations are used to gain an atomistic-level insight into how...
Understanding and manipulating the behavior of water is a crucial component of designing materials a...
Molecular dynamics simulations were used to investigate the solubility and permeability of H2O in a ...
Understanding how material properties affect hydrophobic interactionsthe water-mediated interaction...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...