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一种用于还原独立氧化石墨烯的新型绿色方法:电学和电子结构研究。

A novel green approach for reduction of free standing graphene oxide: electrical and electronic structural investigations.

作者信息

Saravanan K, Panigrahi B K, Suresh K, Sundaravel B, Magudapathy P, Gupta Mukul

机构信息

Materials Science Group, Indira Gandhi Centre for Atomic Research, HBNI, Kalpakkam-603102, Tamilnadu, India.

出版信息

Nanotechnology. 2018 Aug 24;29(34):345204. doi: 10.1088/1361-6528/aac9b4. Epub 2018 Jun 1.

DOI:10.1088/1361-6528/aac9b4
PMID:29856728
Abstract

Ion beam irradiation technique has been proposed, for efficient, fast and eco-friendly reduction of graphene oxide (GO), as an alternative to the conventional methods. 5 MeV, Au ion beam has been used to reduce the free standing GO flake. Both electronic and nuclear energy loss mechanisms of the irradiation process play a major role in removal of oxygen moieties and recovery of graphene network. Atomic resolution scanning tunnelling microscopy analysis of the irradiated GO flake shows the characteristic honeycomb structure of graphene. X-ray absorption near edge structure analysis at C K-edge reveals that the features of the irradiated GO flake resemble the few layer graphene. Resonant Rutherford backscattering spectrometry analysis evidenced an enhanced C/O ratio of ∼23 in the irradiated GO. In situ sheet resistance measurements exhibit a sharp decrease of resistance (few 100 s of Ω) at a fluence of 6.5 × 10 ions cm. Photoluminescence spectroscopic analysis of irradiated GO shows a sharp blue emission, while pristine GO exhibits a broad emission in the visible-near IR region. Region selective reduction, tunable electrical and optical properties by controlling C/O ratio makes ion irradiation as a versatile tool for the green reduction of GO for diverse applications.

摘要

离子束辐照技术已被提出,作为传统方法的替代方案,用于高效、快速且环保地还原氧化石墨烯(GO)。5兆电子伏特的金离子束已被用于还原独立的GO薄片。辐照过程中的电子和核能损失机制在去除氧部分和恢复石墨烯网络方面都起着主要作用。对辐照后的GO薄片进行原子分辨率扫描隧道显微镜分析,显示出石墨烯特有的蜂窝状结构。在碳K边进行的X射线吸收近边结构分析表明,辐照后的GO薄片的特征类似于少层石墨烯。共振卢瑟福背散射光谱分析证明,辐照后的GO中碳/氧比提高到了约23。原位薄层电阻测量显示,在通量为6.5×10离子/平方厘米时,电阻急剧下降(几百欧姆)。对辐照后的GO进行光致发光光谱分析,显示出尖锐的蓝色发射,而原始的GO在可见光-近红外区域呈现出宽泛的发射。通过控制碳/氧比实现区域选择性还原、可调的电学和光学性质,使得离子辐照成为一种用于绿色还原GO以实现多种应用的通用工具。

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