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Li+/Na+ Co-Assisted Hydrothermal Exfoliation for Graphite into Few- Layer Graphene Nanosheets and Their Excellent Friction-Reducing Performance

机译:Li + / Na +共同辅助水热剥离,用于石墨到几层石墨烯纳米片及其优异的摩擦降低性能

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摘要

We have successfully developed Li+/Na+ cointercalated exfoliation for graphene nanosheets by a hydrothermal method without the participation of any organic solvents. The effect of the Li+/Na+ ratio on the exfoliation of graphite was intensively studied. The chemical structure of the as-prepared graphene nanosheets was confirmed by the characterizations. Moreover, the results verified that the thickness of the as-prepared graphene nanosheets was 2.65- 2.78 nm (about 7-8 layers). The potential application of the as-prepared graphene nanosheets in antifriction and antiwear behaviors was investigated in castor oil. The results demonstrated that the antifriction and antiwear performance of the castor oil with 0.04 wt % as-prepared graphene nanosheets was significantly enhanced, up to 36.84% and 48.57%, respectively. The antifriction mechanism was probed by detecting the morphologies and Raman spectra of worn surfaces.
机译:我们已经成功开发了Li + / Na +通过水热法的Li + / Na + Cointercalated剥离,无需任何有机溶剂的参与。 Li + / Na +比率对石墨剥离的影响进行了深入研究。 通过表征证实了AS制备的石墨烯纳米片的化学结构。 此外,结果证实了制备的石墨烯纳米片的厚度为2.65-2.78nm(约7-8层)。 在蓖麻油中研究了AS制备的石墨烯纳米片的潜在应用。 结果表明,蓖麻油的抗磨损性能与0.04wt%的石墨烯纳米片显着提高,分别高达36.84%和48.57%。 通过检测磨损表面的形态和拉曼光谱来探讨抗膛机制。

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