首页> 外文期刊>Journal of Materials Science >One-step rapid fabrication of high-purity onion-like carbons as efficient lubrication additives
【24h】

One-step rapid fabrication of high-purity onion-like carbons as efficient lubrication additives

机译:一步快速制备高纯度洋葱状碳作为高效润滑添加剂

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Onion-like carbons (OLCs), as a dazzling star of carbon nanomaterials, have been applied in various fields, such as lubrication, biomedicine, catalysis and energy storage. However, it is still a challenge to prepare OLCs using a solvent-free, time-saving and efficient strategy. Herein, the high-purity OLCs in high reproducibility without any post-treatment are prepared within 3-5 ms by a one-step gaseous detonation approach using untreated benzoic acid as the precursor, as well as acetylene (C2H2) and oxygen (O-2) as explosion sources. The as-prepared OLCs with an average diameter ofca. 50.5 nm possess near-spherical and multi-layered concentric structure, which is highly beneficial for lubrication. Based on the characteristics of gaseous detonation and the morphology of OLCs, the formation mechanism of OLCs is speculated. Moreover, using a four-ball tester, the tribological properties of OLCs as lubricant additives for 150SN mineral oil are investigated. Strikingly, compared with those of neat 150SN mineral oil, the mean friction coefficient (f), wear scar diameter (d), wear scar depth (D) and wear rate (delta) of lower balls of OLCs/150SN suspensions with the concentration of 0.8 wt under 392 N are reduced by 47.2, 30.7, 56.7 and 77.0, respectively, indicating that OLCs can serve as excellent lubrication additives. This research not only provides a one-pot, rapid and facile gaseous detonation route to fabricate high-purity and high-reproducibility OLCs on a large scale, but also demonstrates the potential application of OLCs in lubrication.
机译:洋葱状碳(OLCs)作为碳纳米材料的一颗耀眼之星,已应用于润滑、生物医药、催化、储能等各个领域。然而,使用无溶剂、省时和高效的策略制备OLC仍然是一个挑战。本文以未经处理的苯甲酸为前驱体,以乙炔(C2H2)和氧气(O-2)为爆炸源,通过一步气态爆轰法,在3-5 ms内制备了无需任何后处理的高重现性高纯度OLC。制备的OLCs平均直径为ofca。50.5 nm具有近球形和多层同心结构,对润滑非常有利。根据气态爆发的特点和OLCs的形貌,推测了OLCs的形成机理。此外,使用四球测试仪研究了OLCs作为150SN矿物油润滑剂添加剂的摩擦学特性。与纯150SN矿物油相比,浓度为0.8 wt%的OLCs/150SN悬浮液在392 N下的平均摩擦系数(f)、磨损疤痕直径(d)、磨损疤痕深度(D)和磨损速率(delta)分别降低了47.2%、30.7%、56.7%和77.0%,表明OLCs可以作为优良的润滑添加剂。本研究不仅为大规模制备高纯度、高重现性的OLC提供了一锅、快速、简便的气态爆轰路线,还证明了OLCs在润滑中的潜在应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号