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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Production of thin graphite sheets for a high electrical conductivity film by the mechanical delamination of ternary graphite intercalation compounds
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Production of thin graphite sheets for a high electrical conductivity film by the mechanical delamination of ternary graphite intercalation compounds

机译:通过三元石墨插层化合物的机械分层生产用于高电导率薄膜的薄石墨片

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摘要

Herein we propose a production scheme for conductive films composed of thin graphite sheets with high crystallinity and polymeric resin. The crystalline graphite sheets were successfully produced from natural graphite powder by solution-phase synthesis of graphite intercalation compounds (GICs), following a wet planetary-ball milling under mild conditions. The shear forces in the milling pot lead to a peeling of graphite flakes. Taking into consideration the interlayer bonding force, the delamination should be preferentially done from the expanded GICs interlayer rather than intrinsic graphite one. Some composite films derived from the phenolic resin and flaky graphite sheets displayed much higher electrical conductivities compared to the film from the feed graphite particles. We also demonstrate the stage structure of synthetic GICs affected the film conductivity. The composite films made from exfoliated products of ground (around stage IV) GICs exhibited high electrical conductivity with a small amount of the graphite sheets.
机译:本文中,我们提出了一种导电膜的生产方案,该导电膜由具有高结晶度的薄石墨片和聚合树脂组成。在温和条件下进行湿式行星球磨之后,通过固溶合成石墨插层化合物(GIC),成功地从天然石墨粉末中生产出结晶石墨片。研磨罐中的剪切力导致石墨薄片的剥落。考虑到层间键合力,应优先从膨胀的GIC中间层进行剥离,而不是从固有石墨层开始。与来自进料石墨颗粒的薄膜相比,某些衍生自酚醛树脂和片状石墨片的复合薄膜显示出更高的电导率。我们还证明了合成GIC的阶段结构会影响薄膜的电导率。由地面GIC的剥落产物制成的复合膜(在IV阶段左右)显示出高电导率以及少量的石墨片。

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