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应用超声波技术评价氧化膜类缺陷检出率的可行性研究
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作者 陈志强 李丽菲 温丽娟 《轻合金加工技术》 CAS 北大核心 2008年第12期32-34,52,共4页
重点讨论了超声波技术检测铝合金预拉伸板材中氧化膜类缺陷的可行性和检出率,从理论和实际两个方面分析了影响氧化膜缺陷检出率的主要因素,并提出科研性结论。
关键词 铝合金 预拉伸板材 氧化膜类缺陷 超声波技术
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Towards full repair of defects in reduced graphene oxide films by two-step graphitization 被引量:11
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作者 Ruben Rozada Juan I, Paredes Silvia Villar-Rodil Amelia Marlinez-Alonso Juan M. D. Tascon 《Nano Research》 SCIE EI CAS CSCD 2013年第3期216-233,共18页
The complete restoration of a perfect carbon lattice has been a central issue in the research on graphene derived from graphite oxide since this preparation route was first proposed several years ago, but such a goal ... The complete restoration of a perfect carbon lattice has been a central issue in the research on graphene derived from graphite oxide since this preparation route was first proposed several years ago, but such a goal has so far remained elusive. Here, we demonstrate that the highly defective structure of reduced graphene oxide sheets assembled into free-standing, paper-like films can be fully repaired by means of high temperature annealing (graphitization). Characterization of the films by X-ray photoelectron and Raman spectroscopy, X-ray diffraction and scanning tunneling microscopy indicated that the main stages in the transformation of the films were (i) complete removal of oxygen functional groups and generation of atomic vacancies (up to 1,500 ~C), and (ii) vacancy annihilation and coalescence of adjacent overlapping sheets to yield continuous polycrystalline layers (1,800-2,700 ~C) similar to those of highly oriented graphites. The prevailing type of defect in the polycrystalline layers were the grain boundaries separating neighboring domains, which were typically a few hundred nanometers in lateral size, exhibited long-range graphitic order and were virtually free of even atomic-sized defects. The electrical conductivity of the annealed films was as high as 577,000 S-m-1, which is by far the largest value reported to date for any material derived from graphene oxide, and strategies for further improvement without the need to resort to higher annealing temperatures are suggested. Overall, this work opens the prospect of truly achieving a complete restoration of the carbon lattice in graphene oxide materials. 展开更多
关键词 graphene graphene oxide FILMS ANNEALING defect
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