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首页> 外文期刊>Journal of Materials Science >Super-high interlayer spacing of graphite oxide obtained by γ-ray irradiation in air
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Super-high interlayer spacing of graphite oxide obtained by γ-ray irradiation in air

机译:空气中γ射线辐照获得的氧化石墨的超高层间距

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摘要

We produced a type of graphite oxide with the interlayer spacing of 2.09 nm by treating conventional graphite oxide with c-rays at an absorbed dose of 200 kGy in air. The expansion of interlayer distance should be attributed to the increased amounts of topological defects and then the improved steric hindrance between interlayers. Due to the decomposition of water molecules in graphite oxide by c-rays, the reductive species were produced so that graphite oxide was partially reduced. It is also speculated to be the main mechanisms for alteration of oxygen groups. The change of carbon chain structures and oxygen groups were further supported by X-ray photoelectron spectroscopy, X-ray diffraction, and Fourier transform infrared spectroscopy. This simple and effective method of making graphite oxide with d-spacing of 2.09 nm by irradiating it in air is of interest not only for its easier intercalation and exfoliation than pristine one, but also for its potential to prepare graphene sheets with high percent of monolayers.
机译:我们通过在空气中以200 kGy的吸收剂量用c射线处理常规的氧化石墨,生产了一种层间距2.09 nm的氧化石墨。层间距离的扩大应归因于拓扑缺陷数量的增加,以及层间空间位阻的改善。由于c-射线分解了氧化石墨中的水分子,产生了还原性物质,从而氧化石墨被部分还原。还推测这是改变氧基团的主要机理。 X射线光电子能谱,X射线衍射和傅里叶变换红外光谱进一步支持了碳链结构和氧基团的变化。这种简单有效的方法是通过在空气中辐照来制造d间距为2.09 nm的氧化石墨,这不仅因为其比原始的更容易嵌入和剥落,而且还因为其具有制备单层百分比高的石墨烯片的潜力而备受关注。

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