Molecular dynamics simulations can provide the means to visualize and understand the role of intermolecular interactions in the mechanisms involved in molecular aggregation. Along these lines, simulations can allow the study of how surface chemical modifications can influence nanomaterial assembly at the molecular level. Layered silicate clays have been of significant interest for some time, particularly with regard to their use in organic/inorganic nanocomposites. However, despite numerous reports on the covalent linkage of organic moieties via silanol condensation, the theoretical understanding of these systems has heretofore been limited to noncovalent interactions, specifically ionic interactions at the charged basal surfaces. Herein, a...
The abundance and reactivity of 2:1 phyllosilicate minerals (e.g. mica, vermiculite, smectite, illit...
The agglomeration of silica nanoparticles in aqueous solution is investigated from molecular simulat...
Computer simulations of silica-alumina interface formation by a sol-gel process were performed using...
Molecular dynamics simulations can provide the means to visualize and understand the role of intermo...
We report on molecular dynamics simulations of solvent and ion distribution at a prototypic alkyl-mo...
The use of bioinspired templates, such as polyamines and polypeptides, could lead to significant imp...
Computer-aided materials science and engineering provides novel opportunities to hasten the explorat...
In this paper we have applied the molecular dynamics simulations in order to analyse the role of the...
Classical molecular dynamics (MD) simulations have been performed to investigate the effects of subs...
The agglomeration of silica nanoparticles in aqueous solution is investigated from molecular simulat...
The swelling behavior of clay minerals is widely known for its importance in soil and environmental ...
Due to the wide application of silica based systems ranging from microelectronics to nuclear waste d...
International audienceWe report a molecular simulation study of aqueous solutions at montmorillonite...
Understanding the interfacial interactions and structure is important to better design and manufactu...
The abundance and reactivity of 2:1 phyllosilicate minerals (e.g. mica, vermiculite, smectite, illit...
The agglomeration of silica nanoparticles in aqueous solution is investigated from molecular simulat...
Computer simulations of silica-alumina interface formation by a sol-gel process were performed using...
Molecular dynamics simulations can provide the means to visualize and understand the role of intermo...
We report on molecular dynamics simulations of solvent and ion distribution at a prototypic alkyl-mo...
The use of bioinspired templates, such as polyamines and polypeptides, could lead to significant imp...
Computer-aided materials science and engineering provides novel opportunities to hasten the explorat...
In this paper we have applied the molecular dynamics simulations in order to analyse the role of the...
Classical molecular dynamics (MD) simulations have been performed to investigate the effects of subs...
The agglomeration of silica nanoparticles in aqueous solution is investigated from molecular simulat...
The swelling behavior of clay minerals is widely known for its importance in soil and environmental ...
Due to the wide application of silica based systems ranging from microelectronics to nuclear waste d...
International audienceWe report a molecular simulation study of aqueous solutions at montmorillonite...
Understanding the interfacial interactions and structure is important to better design and manufactu...
The abundance and reactivity of 2:1 phyllosilicate minerals (e.g. mica, vermiculite, smectite, illit...
The agglomeration of silica nanoparticles in aqueous solution is investigated from molecular simulat...
Computer simulations of silica-alumina interface formation by a sol-gel process were performed using...