Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.

Benzotriazole and borate derivatives have long been used as multifunctional additives to lubricants. A novel, environmentally friendly additive borate ester (NHB), which contains boron, ethanolamine, and benzotriazole groups in one molecule, was synthesized by a multi-step reaction, and its tribolog...

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Main Authors: Xiong Liping, He Zhongyi, Qian Liang, Mu Lin, Chen Aixi, Han Sheng, Qiu Jianwei, Fu Xisheng
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3898952?pdf=render
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spelling doaj-c1af0d22d7e14657816e5ffa01e57af02020-11-25T01:02:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0191e8350110.1371/journal.pone.0083501Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.Xiong LipingHe ZhongyiQian LiangMu LinChen AixiHan ShengQiu JianweiFu XishengBenzotriazole and borate derivatives have long been used as multifunctional additives to lubricants. A novel, environmentally friendly additive borate ester (NHB), which contains boron, ethanolamine, and benzotriazole groups in one molecule, was synthesized by a multi-step reaction, and its tribological properties in rapeseed oil (RSO) were investigated by a four-ball tribometer. The hydrolysis stability of the additive was investigated by half-time and open observation methods, and the mechanism of hydrolysis stability was discussed through Gaussian calculation. The novel compound NHB showed excellent performance under extreme pressure, against wearing, and in reducing friction, and its hydrolysis time is more than 1,220 times, which is better than that of triethyl borate. The mass ratio of NHB is bigger than that of the mixed liquid of triethyl borate and ethanolamine. The lone electron of amino N atoms forms a coordination effect with the B atom to compensate for the shortage of electrons in the B atom and to improve the hydrolysis stability of NHB. The surface morphology and the traces of different elements in the tribofilms formed with 1.0 wt.% NHB in were detected with scanning electron microscopy(SEM), energy dispersive X-ray spectroscopy (EDX)and X-ray photoelectron spectroscopy(XPS). The results shown that the additive caused a tribochemical reaction with the steel ball surface during the lubricating process. A mixed boundary lubrication film that contains organic nitrogen and inorganic salts, such as BN, B2O3, FeOx, Fe-O-B, and FeB, was also formed, and the formation of the lubricating film improved the tribological properties of the base oil.http://europepmc.org/articles/PMC3898952?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Xiong Liping
He Zhongyi
Qian Liang
Mu Lin
Chen Aixi
Han Sheng
Qiu Jianwei
Fu Xisheng
spellingShingle Xiong Liping
He Zhongyi
Qian Liang
Mu Lin
Chen Aixi
Han Sheng
Qiu Jianwei
Fu Xisheng
Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
PLoS ONE
author_facet Xiong Liping
He Zhongyi
Qian Liang
Mu Lin
Chen Aixi
Han Sheng
Qiu Jianwei
Fu Xisheng
author_sort Xiong Liping
title Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
title_short Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
title_full Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
title_fullStr Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
title_full_unstemmed Synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
title_sort synthesis, tribological and hydrolysis stability study of novel benzotriazole borate derivative.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Benzotriazole and borate derivatives have long been used as multifunctional additives to lubricants. A novel, environmentally friendly additive borate ester (NHB), which contains boron, ethanolamine, and benzotriazole groups in one molecule, was synthesized by a multi-step reaction, and its tribological properties in rapeseed oil (RSO) were investigated by a four-ball tribometer. The hydrolysis stability of the additive was investigated by half-time and open observation methods, and the mechanism of hydrolysis stability was discussed through Gaussian calculation. The novel compound NHB showed excellent performance under extreme pressure, against wearing, and in reducing friction, and its hydrolysis time is more than 1,220 times, which is better than that of triethyl borate. The mass ratio of NHB is bigger than that of the mixed liquid of triethyl borate and ethanolamine. The lone electron of amino N atoms forms a coordination effect with the B atom to compensate for the shortage of electrons in the B atom and to improve the hydrolysis stability of NHB. The surface morphology and the traces of different elements in the tribofilms formed with 1.0 wt.% NHB in were detected with scanning electron microscopy(SEM), energy dispersive X-ray spectroscopy (EDX)and X-ray photoelectron spectroscopy(XPS). The results shown that the additive caused a tribochemical reaction with the steel ball surface during the lubricating process. A mixed boundary lubrication film that contains organic nitrogen and inorganic salts, such as BN, B2O3, FeOx, Fe-O-B, and FeB, was also formed, and the formation of the lubricating film improved the tribological properties of the base oil.
url http://europepmc.org/articles/PMC3898952?pdf=render
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