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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Towards low temperature thermal exfoliation of graphite oxide for graphene production
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Towards low temperature thermal exfoliation of graphite oxide for graphene production

机译:走向石墨烯生产用氧化石墨的低温热剥离

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摘要

Realizing mass production of graphene materials at low cost and high quality is urgently required for their real applications. Thermal exfoliation of graphite oxide (GO) is considered as a promising strategy though it normally requires a high exfoliation temperature together with a fast heating rate, making the produced graphenes suffer from high cost and concentrated topological defects. A mild exfoliation of GO at a far lower temperature than the predicted minimum temperature, has been demonstrated by introducing a high vacuum to exert an outward drawing force which helps effective exfoliation of the stacked graphene layers. In this contribution, together with a discussion on the foundation of thermal exfoliation and the general principle for low-temperature exfoliation, we review current strategies and indicate possible novel approaches. Low cost and easy operability are highlighted for the low-temperature exfoliation and the resulting graphene materials are characterized by low defect concentration, and unique and tunable surface chemistry to promote potential mass applications in energy-related areas.
机译:迫切需要以低成本和高质量实现石墨烯材料的大规模生产。尽管通常需要高的剥离温度和快速的加热速率,但是氧化石墨(GO)的热剥离却被认为是一种有前途的策略,这使得制得的石墨烯具有高成本和集中的拓扑缺陷。通过引入高真空以施加向外的拉力来证明GO在比预计的最低温度低得多的温度下发生温和的剥离,这有助于有效堆叠石墨烯层的剥离。在本文中,结合对热剥落的基础和低温剥落的一般原理的讨论,我们回顾了当前的策略并指出了可能的新颖方法。低成本和易于操作的特点是低温剥离,所得石墨烯材料的特点是缺陷浓度低,独特且可调节的表面化学性质,以促进潜在的大规模应用在能源相关领域。

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