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Low-temperature exfoliated graphenes: Vacuum-promoted exfoliation and electrochemical energy storage

机译:低温剥落石墨烯:真空促进剥落和电化学储能

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摘要

A preheated high-temperature environment is believed to be critical for a chemical-exfoliation-based production of graphenes starting from graphite oxide, a belief that is based on not only experimental but also theoretical viewpoints. A novel exfoliation approach is reported in this study, and the exfoliation process is realized at a very low temperature, which is far below the proposed critical exfoliation temperature, by introducing a high vacuum to the exfoliation process. Owing to unique surface chemistry, low-temperature exfoliated graphenes demonstrate an excellent energy storage performance, and the electrochemical capacitance is much higher than that of the high-temperature exfoliated ones. The low-temperature exfoliation approach presents us with a possibility for a mass production of graphenes at low cost and great potentials in energy storage applications of graphene-based materials.
机译:人们认为,预热的高温环境对于从石墨氧化物开始的基于化学剥落的石墨烯生产至关重要,这一信念不仅基于实验而且还基于理论观点。在这项研究中报道了一种新颖的剥落方法,通过在剥落过程中引入高真空,可以在非常低的温度下实现剥落过程,该温度远远低于建议的临界剥落温度。由于独特的表面化学性质,低温剥落的石墨烯表现出优异的储能性能,并且电化学电容比高温剥落的石墨烯高得多。低温剥离法为我们提供了以低成本大规模生产石墨烯的可能性,并且在石墨烯基材料的储能应用中具有很大的潜力。

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