首页|Molecular Mechanism and Molecular Design of Lubricating Oil Antioxidants

Molecular Mechanism and Molecular Design of Lubricating Oil Antioxidants

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To overcome the limitations of traditional experimental"trial and error"methods in lubricant additive design,a new molecular design method based on molecular structure parameters is established here.The molecular mechanism of the antioxidant reaction of hindered phenol,diphenylamine,and alkyl sulfide are studied via molecular simulations.Calculation results show that the strong electron-donating ability and high hydrogen-donating activity of the antioxidant molecule and the low hydrogen-abstracting activity of free radicals formed after dehydrogenation are the internal molecular causes of the shielding of phenol and diphenylamine from scavenging peroxy free radicals,and the strong electron-donating ability is the internal molecular cause of the high activity of thioether in decomposing alkyl hydrogen peroxide.Based on this antioxidant molecular mechanism,a molecular design rule of antioxidant is proposed,namely"high EHOMO,large Q(S),low bond dissociation energy BDE(O—H)and BDE(N—H)".Two new antioxidants,PAS-I and PAS-II,are designed and prepared by chemical bonding of hindered phenol,diphenylamine,and sulfur atoms.Experimental results show that these antioxidants both have excellent antioxidant effects in lubricating oil,and that PAS-II is the superior antioxidant,consistent with theoretical predictions.

lubricating oilantioxidantmolecular mechanismmolecular designantioxidant performance

Su Shuo、Long Jun、Duan Qinghua、Zhou Han、Zhao Yi

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SINOPEC Research Institute of Petroleum Processing Co.,Ltd.,Beijing100083

2024

中国炼油与石油化工(英文版)
中国石化集团石油化工科学研究院

中国炼油与石油化工(英文版)

影响因子:1.199
ISSN:1008-6234
年,卷(期):2024.26(2)