The SAM model for wear inhibitor performance of dithiophosphates on iron oxide

被引:40
作者
Jiang, SY
Frazier, R
Yamaguchi, ES
Blanco, M
Dasgupta, S
Zhou, YH
Cagin, T
Tang, YC
Goddard, WA
机构
[1] CALTECH,MAT & PROC SIMULAT CTR,BECKMAN INST 13974,DIV CHEM & CHEM ENGN,PASADENA,CA 91125
[2] CHEVRON RES & TECHNOL CO,RICHMOND,CA 94802
[3] CHEVRON CHEM CO,ORONITE TECHNOL GRP,RICHMOND,CA 94802
[4] CHEVRON PETR TECHNOL CO,LA HABRA,CA 90631
来源
JOURNAL OF PHYSICAL CHEMISTRY B | 1997年 / 101卷 / 39期
关键词
D O I
10.1021/jp963835y
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Zinc dithiophosphate (DTP) molecules have long been used as wear inhibitor oil additives for automotive engines. In order to obtain an atomistic understanding of the mechanism by which these molecules inhibit wear, we examined the geometries, energetics, and vibrations of an oxidized iron surface [(001) surface of alpha-Fe2O3] using the MSX force field (FF) based on ab initio quantum chemistry (QC) calculations, The DTP molecules studied include (RO)(2)PS2 with R = methyl, isobutyl, isopropyl, and phenyl. The alpha-Fe2O3 surface is described using the generalized valence bond (GVB) model of bonding. The geometries, binding energies, and vibrational frequencies from ab initio calculations on simple clusters art used with the biased Hessian method to develop the MSX FF suitable for describing the binding of DTP molecules to the surfaces. We find that the cohesive energies for the self-assembled monolayers (SAM) of the DTP molecules on the Fe2O3 surface correlate with the antiwear performance observed in experimental engine tests. This suggests that the search for more effective and environmentally benign wear inhibitors can use the cohesive energies for SAM formation as a criterion in selecting and prioritizing compounds for experimental testing.
引用
收藏
页码:7702 / 7709
页数:8
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