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Carbon nanotubes grease with high electrical conductivity

机译:具有高导电性的碳纳米管润滑脂

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While most commercial greases are used to prevent wear and tear in machinery, many specialized applications require electrically conducive grease. Applications include, but are not limited to, use in next generation electric vehicles (NGEVs), superb electric motor bearing protection, and electrical contact improvement. Using recently new invented methods, electrically conducive greases have been prepared. Petro-Canada N650HT oil with 7.5 wt% hydroxyl functionalized multiwall carbon nanotubes (MWNT-OH), yielded a surprising resistivity of 22.4 Omega cm, compared to the resistivity of 7880 Omega cm of an almost identical sample made with multiwall nanotube (MWNT). Another sample, 75 % Glycerol, 25 % Water, 4.5 wt% MWNT-OH, yielded the lowest resistivity of all samples measured, at 10.0 Omega cm. Hydrogen bonding is believed to be attributed to the best performing samples. The introduction of hydrogen bonding in any form into the grease increases electrical conductivity. This finding can be extended with further research to other nanomaterials with functional groups like OH, COOH, F, and NH.
机译:虽然大多数商业润滑脂用于防止机械的磨损,但许多专业应用需要电气电气的润滑脂。应用包括但不限于在下一代电动车辆(NGEV),精湛的电动机轴承保护和电接触改进中使用。采用最近的新发明方法,已经制备了电气实施的润滑脂。与7.5wt%羟基官能化多壁碳纳米管(MWNT-OH)的Petro-Canada N650Ht油产生22.4Ω22.4ωcm的令人惊讶的电阻率与用多壁纳米管(MWNT)的几乎相同样品的电阻率相比。另一个样品,75%甘油,25%水,4.5wt%MWNT-OH,在10.0ωcm下测量所有样品的最低电阻率。据信氢键被归因于最佳性能的样品。以任何形式引入氢粘合到润滑脂增加了电导率。该发现可以通过进一步研究其他纳米材料,其具有官能团,如OH,COOH,F和NH。

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