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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Alkylamine-functionalized hexagonal boron nitride nanoplatelets as a novel material for the reduction of friction and wear
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Alkylamine-functionalized hexagonal boron nitride nanoplatelets as a novel material for the reduction of friction and wear

机译:烷基胺官能化的六方氮化硼六方氮化硼纳米片作为减少摩擦和磨损的新型材料

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摘要

Hexagonal boron nitride nanoplatelets (h-BNNPs), which are structurally analogous to graphene, were prepared via the ultrasound-assisted exfoliation of h-BN powder using N-methyl pyrrolidone as the solvent. The alkylamines with variable alkyl chains and electron-rich nitrogen atoms were grafted onto the boron sites of the h-BNNPs based on Lewis acid-base chemistry. The grafting of the alkylamines onto the h-BNNPs was confirmed using FTIR, XPS, TGA and C-13 SSNMR analyses. The crystalline and structural features of the alkylamine-functionalized h-BNNPs were studied using XRD and HRTEM analyses. The TGA and FTIR results revealed a higher grafting of octadecylamine (ODA) on the h-BNNPs compared to trioctylamine (TOA). The cohesive interaction between the alkyl chains grafted onto the h-BNNPs and the hydrocarbon chains of mineral lube base oil facilitates the dispersion of the alkylaminefunctionalized h-BNNPs. The TOA-grafted h-BNNPs (h-BNNPs-TOA) exhibited long-term dispersion stability compared to the ODA-grafted h-BNNPs and this was attributed to a higher degree of van der Waals interactions between the octyl chains of the TOA molecules grafted onto the h-BNNPs and the hydrocarbon chains of the mineral lube base oil. The tribo-performance of the h-BNNPs-TOA as an additive to mineral lube base oil was evaluated in terms of the coefficient of friction and wear using ballon- disc contact geometry. A minute dosing (0.02 mg mL(-1)) of h-BNNPs-TOA significantly improved the lubrication characteristics of the mineral lube base oil and showed a 35 and 25% reduction of friction and wear, respectively. The presence of boron and nitrogen on the worn scar of an aluminium disc, as deduced from elemental mapping, confirmed the formation of a tribo-chemical thin film of h-BN lamellae on the contact interfaces, which not only reduced the friction but also protected the contact interfaces against undesirable wear events.
机译:在结构上类似于石墨烯的六方氮化硼纳米片(h-BNNP)是通过使用N-甲基吡咯烷酮作为溶剂对h-BN粉末进行超声辅助剥离而制备的。基于路易斯酸碱化学,将具有可变烷基链和富电子氮原子的烷基胺接枝到h-BNNPs的硼位上。使用FTIR,XPS,TGA和C-13 SSNMR分析确认了烷基胺在h-BNNP上的接枝。使用XRD和HRTEM分析研究了烷基胺官能化的h-BNNP的晶体和结构特征。 TGA和FTIR结果表明,与三辛胺(TOA)相比,h-BNNP上的十八烷基胺(ODA)接枝率更高。接枝到h-BNNPs上的烷基链与矿物润滑油基础油的烃链之间的内聚相互作用促进了烷基胺官能化的h-BNNPs的分散。与ODA接枝的h-BNNPs相比,TOA接枝的h-BNNPs(h-BNNPs-TOA)表现出长期的分散稳定性,这归因于TOA分子的辛基链之间更高的范德华相互作用接枝到h-BNNPs和矿物润滑油基础油的烃链上。使用圆盘接触几何结构,根据摩擦系数和磨损系数评估了h-BNNPs-TOA作为矿物润滑油基础油添加剂的摩擦性能。微量添加h-BNNPs-TOA(0.02 mg mL(-1))可以显着改善矿物润滑油基础油的润滑特性,并分别减少35%和25%的摩擦和磨损。由元素图谱推断,铝盘磨损痕迹上存在硼和氮,这证实了h-BN薄片的摩擦化学薄膜在接触界面上形成,这不仅减少了摩擦,而且提供了保护接触面可防止不良磨损事件。

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