Molecular dynamics simulation of organic-inorganic nanocomposites: Layering behavior and interlayer structure of organoclays


Autoria(s): Zeng, QH; Yu, AB; Lu, GQ; Standish, RK
Data(s)

01/01/2003

Resumo

Isothermal-isobaric (NPT) molecular dynamics simulation has been performed to investigate the layering behavior and structure of nanoconfined quaternary alkylammoniums in organoclays. This work is focused on systems consisting of two clay layers and a number of alkylammoniums, and involves the use of modified Dreiding force field. The simulated basal spacings of organoclays agree satisfactorily with the experimental results in the literature. The atomic density profiles in the direction normal to the clay surface indicate that the alkyl chains within the interlayer space of montmorillonite exhibit an obvious layering behavior. The headgroups of long alkyl chains are distributed within two layers close to the clay surface, whereas the distributions of methyl and methylene groups are strongly dependent on the alkyl chain length and clay layer charge. Monolayer, bilayer, and pseudo-trilayer structures are found in organoclays modified with single long alkyl chains, which are identical to the structural models based on the measured basal spacings. A pseudo-quadrilayer structure, for the first time to our knowledge, is also identified in organoclays with double long alkyl chains. In the mixture structure of paraffin-type and multilayer, alkyl chains do not lie flat within a single layer but interlace, and also jump to the next layer in pseudo-trilayer as well as next nearest layer in pseudo-quadrilayer.

Identificador

http://espace.library.uq.edu.au/view/UQ:66602

Idioma(s)

eng

Publicador

Amer Chemical Soc

Palavras-Chave #Materials Science, Multidisciplinary #Silicate Nanocomposites #Clay-minerals #Montmorillonite #Ions #Mobility #Smectite #Water #Chemistry, Physical #C1 #291804 Nanotechnology #620107 Cotton
Tipo

Journal Article