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Nanostructured superhard carbon phase obtained under high pressure with shear deformation from single-wall nanotubes HiPco

机译:由单壁纳米管HiPco在高压下通过剪切变形获得的纳米结构超硬碳相

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摘要

Raman spectra of single-wall nanotubes under high pressure combined with shear deformation are investigated in situ in a diamond cell. Shear deformation applied under 3 5 GPa led to pressure multiplication up to 60 GPa, and increased the intensity of Raman bands more than ten times without essential change of G-mode position while causing its essential broadening. The G-mode remained broad after pressure unloading and shifted to 1534 cm(-1). The hardness of the superhard material was 58 +/- 6 GPa, comparable to the hardness of carbo-boro-nitride. A broad band appeared in the photoluminescence spectrum with a maximum at about 2 eV, which allowed to assume a high content of sp(3)-bonds in the sample. The large dispersion of the G-mode almost vanished after pressure unloading. However, a noticeable dispersion of the D-mode was found, which is a sign of certain ordering in the superhard phase. TEM study of the superhard phase detected clusters with graphene sheets with a size about 1 nm. (c) 2006 Elsevier B.V. All rights reserved.
机译:在金刚石池中原位研究了高压下单壁纳米管的拉曼光谱和剪切变形。在3 5 GPa下施加的剪切变形导致压力倍增高达60 GPa,并且拉曼谱带的强度增加了十倍以上,而G模式位置没有本质变化,同时引起其基本展宽。 G模式在压力卸载后仍保持较宽,并移至1534 cm(-1)。超硬材料的硬度为58 +/- 6 GPa,与碳硼氮化物的硬度相当。一条宽带出现在光致发光光谱中,最大值约为2 eV,这使样品中的sp(3)-键含量较高。卸载压力后,G模式的大分散几乎消失了。但是,发现了D模式的明显分散,这是超硬相中某些有序的迹象。用超硬相的TEM研究检测到的簇具有石墨烯片,尺寸约为1 nm。 (c)2006 Elsevier B.V.保留所有权利。

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