The strength of adhesion of polybutylene terephthalate (PBT) on aluminium is investigated using density functional theory-based energy calculations. The aluminium atom is connected to a PBT monomer at different orientations, and total energies are calculated and compared to determine the most stable orientation. The binding is strongest when the Al is oriented at 180° to the ester group of the monomer. Using this orientation as a basis, PBT adhesion on Ti, Ag, and Au is also investigated. © 2006 IOP Publishing Ltd
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
none4noThe adsorption properties on PdAu surface alloys of ethylene and acetic acid molecules along ...
We explore the adsorption of pyridine on Cu, Ag, Au, and Pt(110) surfaces using density functional t...
We investigate the adhesion strength of poly(butylene terephthalate) or PBT on aluminum using densit...
We investigate the adhesion of PBT on aluminum using density functional theory-based calculations. T...
We investigate the adhesion mechanism of metal atoms (Al, Cu Ag, Au and Pt) on polyethylene terephth...
Density functional theory-based calculations on representative cluster models have been performed to...
The chemical bonding at a metal/polymer interface is believed to play an important role in adhesion....
We present a theoretical study of the interactions between isolated aluminium atoms and a polyimide ...
The aim of this project is to investigate the nucleation of aluminium off the substrate titanium dib...
We calculate the minimum energy paths and reaction energies of the adsorption of the epoxide adhesiv...
ABSTRACT: Lightweight mechanically strong composite Al/BN nanotube materials may find applications i...
Density Functional Theory (DFT) is a powerful tool that can be used to model various systems in mate...
Density Functional Theory (DFT) is a powerful tool that can be used to model various systems in mate...
International audienceTo improve lubricant formulation, a better understanding of the wettability pr...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
none4noThe adsorption properties on PdAu surface alloys of ethylene and acetic acid molecules along ...
We explore the adsorption of pyridine on Cu, Ag, Au, and Pt(110) surfaces using density functional t...
We investigate the adhesion strength of poly(butylene terephthalate) or PBT on aluminum using densit...
We investigate the adhesion of PBT on aluminum using density functional theory-based calculations. T...
We investigate the adhesion mechanism of metal atoms (Al, Cu Ag, Au and Pt) on polyethylene terephth...
Density functional theory-based calculations on representative cluster models have been performed to...
The chemical bonding at a metal/polymer interface is believed to play an important role in adhesion....
We present a theoretical study of the interactions between isolated aluminium atoms and a polyimide ...
The aim of this project is to investigate the nucleation of aluminium off the substrate titanium dib...
We calculate the minimum energy paths and reaction energies of the adsorption of the epoxide adhesiv...
ABSTRACT: Lightweight mechanically strong composite Al/BN nanotube materials may find applications i...
Density Functional Theory (DFT) is a powerful tool that can be used to model various systems in mate...
Density Functional Theory (DFT) is a powerful tool that can be used to model various systems in mate...
International audienceTo improve lubricant formulation, a better understanding of the wettability pr...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
none4noThe adsorption properties on PdAu surface alloys of ethylene and acetic acid molecules along ...
We explore the adsorption of pyridine on Cu, Ag, Au, and Pt(110) surfaces using density functional t...