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Longitudinal Unzipping Of Carbon Nanotubes To Form Graphene Nanoribbons

机译:碳纳米管的纵向解压缩形成石墨烯纳米带

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Graphene, or single-layered graphite, with its high crystallinity and interesting semimetal electronic properties, has emerged as an exciting two-dimensional material showing great promise for the fabrication of nanoscale devices. Thin, elongated strips of graphene that possess straight edges, termed graphene ribbons, gradually transform from semiconductors to semimetals as their width increases, and represent a particularly versatile variety of graphene. Several lithographic, chemical and synthetic procedures are known to produce microscopic samples of graphene nanoribbons, and one chemical vapour deposition process has successfully produced macroscopic quantities of nanoribbons at 950 ℃. Here we describe a simple solution-based oxidative process for producing a nearly 100% yield of nanoribbon structures by lengthwise cutting and unravelling of multiwalled carbon nano-tube (MWCNT) side walls. Although oxidative shortening of MWCNTs has previously been achieved, lengthwise cutting is hitherto unreported. Ribbon structures with high water solubility are obtained. Subsequent chemical reduction of the nanoribbons from MWCNTs results in restoration of electrical conductivity. These early results affording nanoribbons could eventually lead to applications in fields of electronics and composite materials where bulk quantities of nanoribbons are required.
机译:具有高结晶度和有趣的半金属电子特性的石墨烯或单层石墨已成为一种令人兴奋的二维材料,显示出制造纳米级器件的巨大希望。石墨烯薄而细长的条带具有直边,称为石墨烯带,随着其宽度的增加而逐渐从半导体转变为半金属,并代表了多种多样的石墨烯。已知几种平版印刷,化学和合成程序可产生石墨烯纳米带的微观样品,并且一种化学气相沉积工艺已成功地在950℃下产生了宏观量的纳米带。在这里,我们描述了一种简单的基于溶液的氧化工艺,该工艺通过纵向切割和拆开多壁碳纳米管(MWCNT)侧壁来生产近100%的纳米带结构。尽管以前已经实现了MWCNTs的氧化缩短,但迄今尚未报道过纵向切割。获得具有高水溶性的带状结构。随后从MWCNTs化学还原纳米带导致电导率恢复。这些提供纳米带的早期结果最终可以导致在需要大量纳米带的电子和复合材料领域中的应用。

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