Zhen Xiaojuan, Huang Yifan, Yang Shengsheng, Feng Zhanzu, Ba Dedong, Zhuang Jianhong, Wang Yi, Qin Xiaogang
Lanzhou Institute of Physics 730000 China.
Lanzhou City University 730000 China.
RSC Adv. 2019 Sep 26;9(52):30519-30525. doi: 10.1039/c9ra05389a. eCollection 2019 Sep 23.
A graphene oxide paper (GOP) was irradiated with 500 keV proton for total fluence of 2 × 10 cm to 2 × 10 cm in a ground-based irradiation simulator. The spacing of layer, surface chemical composition, structural defects, thermal conductivity and electrical property of the GOP before and after irradiation was measured. The results indicated that the spacing of layer decreased after irradiation. The ratio of total carbon atom and total oxygen atom increased from 2.40 to 4.31 as well as the sp hybridized carbons obviously increased after 2 × 10 cm irradiation. The XPS analysis suggested the occurrence of reduction, and the Raman spectra indicated that the defects were produced after proton irradiation. Furthermore, the thermal conductivity of GOP decreased, and then increased smoothly as the irradiation fluences were increased, and the electrical property showed the similar trend. The change in the thermal and electrical properties for GOP could be attributed to the defects and the removal of oxygen-containing functional groups, which lead to the phonon conduct path and scattering centers changed under proton irradiation. This study could promote the application of GOP in future space expeditions.
在地面辐照模拟器中,用500 keV质子辐照氧化石墨烯纸(GOP),总注量为2×10¹⁵cm⁻²至2×10¹⁶cm⁻²。测量了辐照前后GOP的层间距、表面化学成分、结构缺陷、热导率和电学性能。结果表明,辐照后层间距减小。在2×10¹⁶cm⁻²辐照后,总碳原子与总氧原子之比从2.40增加到4.31,同时sp²杂化碳明显增加。XPS分析表明发生了还原反应,拉曼光谱表明质子辐照后产生了缺陷。此外,GOP的热导率先降低,然后随着辐照注量的增加而平稳增加,电学性能呈现类似趋势。GOP热学和电学性能的变化可归因于缺陷和含氧官能团的去除,这导致质子辐照下声子传导路径和散射中心发生变化。本研究可促进GOP在未来太空探索中的应用。