Computer modelling of glucoside system with water: article

Mohamad Silan, Nur Farina and Anuar, Nornizar and Kamalul Aripin, Nurul Fadhilah (2019) Computer modelling of glucoside system with water: article. pp. 1-4.

Abstract

Lauryl glucoside is a surfactant that exhibits selfassembly. Lauryl glucoside has relatively simple molecular structure of 12 carbons chains makes it easier to be simulated with molecular dynamics (MD) simulation. From previous study, it was found that the amount of water molecules plays an important role in the stability of intermolecular interaction between glucoside and water molecules. In this research, MD simulation was applied to discover the interaction of glucoside system in water by using COMPASS force field. The objective of this research is to study the stability effect of different number of water molecules on glucoside. The simulation was performed by using Material Studio (MS) software at 2 ns simulation time. From the trajectory output files, the Radial Distribution Function (RDF) were analysed. By using MD simulation, various possible hydrogen bonds can be determined and the interactions between lauryl glucoside and water molecules can be investigated. Thus, the simulation lead to a discussion of the effects of interaction between a single lauryl glucoside molecule and different number of water molecules, and the stability on the interaction between lauryl glucosidewater system. These finding also analysed the difference of simulation between lauryl glucoside and stearyl glucoside.

Metadata

Item Type: Article
Creators:
Creators
Email / ID Num.
Mohamad Silan, Nur Farina
2015263522
Anuar, Nornizar
UNSPECIFIED
Kamalul Aripin, Nurul Fadhilah
UNSPECIFIED
Subjects: Q Science > QD Chemistry > Organic chemistry
T Technology > TP Chemical technology > Biotechnology > Processes, operations, and techniques > Mathematical models
Divisions: Universiti Teknologi MARA, Shah Alam > Faculty of Chemical Engineering
Page Range: pp. 1-4
Keywords: Glucoside, Molecular modelling, Hydrogen bonds, Intermolecular interaction
Date: 2019
URI: https://ir.uitm.edu.my/id/eprint/120728
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