TY - JOUR
T1 - Atomic insights into adsorption of thiophenol derivatives as corrosion inhibitors for mild steel in hydrochloric acid solution
AU - Li, J.
AU - Zhang, M.
PY - 2014/2
Y1 - 2014/2
N2 - Molecular dynamics simulation was used to investigate the inhibitive adsorption of four thiophenol derivatives (namely, 2-aminothiophenol, 4-aminothiophenol, 2,2'-diaminodiphenyl disulphide and 4,4'-diaminodiphenyl disulphide) on Fe(001) surface in 0.1M hydrochloric acid solution. Moreover, their active sites of adsorption were investigated using density functional theory method. The results indicated that corrosion inhibition performance mainly depends on the interaction between polar groups (heteroatom and benzene ring) and metal surface, while good accordance among adsorption strength (binding energy, deformation energy), frontier molecule orbital parameters and experimental inhibition efficiency is observed, and the feasibility of predicting their inhibition performance using these parameters is verified.
AB - Molecular dynamics simulation was used to investigate the inhibitive adsorption of four thiophenol derivatives (namely, 2-aminothiophenol, 4-aminothiophenol, 2,2'-diaminodiphenyl disulphide and 4,4'-diaminodiphenyl disulphide) on Fe(001) surface in 0.1M hydrochloric acid solution. Moreover, their active sites of adsorption were investigated using density functional theory method. The results indicated that corrosion inhibition performance mainly depends on the interaction between polar groups (heteroatom and benzene ring) and metal surface, while good accordance among adsorption strength (binding energy, deformation energy), frontier molecule orbital parameters and experimental inhibition efficiency is observed, and the feasibility of predicting their inhibition performance using these parameters is verified.
KW - Computer simulation
KW - Corrosion inhibitor
KW - Inhibition performance
KW - Inhibitive adsorption
KW - Thiophenol
UR - http://www.scopus.com/inward/record.url?scp=84893243458&partnerID=8YFLogxK
U2 - 10.1179/1433075X13Y.0000000111
DO - 10.1179/1433075X13Y.0000000111
M3 - 文章
AN - SCOPUS:84893243458
SN - 1432-8917
VL - 18
SP - 38
EP - 42
JO - Materials Research Innovations
JF - Materials Research Innovations
IS - 1
ER -