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首页> 外文期刊>MATEC Web of Conferences >Fractal microgeometry of original and hydgrogen-charged graphene multilayer films surface: research by the low-temperature sorption of nitrogen method
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Fractal microgeometry of original and hydgrogen-charged graphene multilayer films surface: research by the low-temperature sorption of nitrogen method

机译:原始和水性通电石墨烯的分形微型测定法表面:通过氮法的低温吸附研究

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Changes in the surface microgeometry of multilayer graphene films, as a result of hydrogen adsorption (1% mass.), have been examined by the method of low-temperature fractal sorption of nitrogen. It is established that hydrogen atmosphere treatment leads to the significant development of graphene surface and lowers the first layer heat adsorption from 289 down to 260J/kg. There have been found out as well the overall mesopores concentration growth and pore size distribution function broadening. At that, the surface fractal dimension value has grown from 2,52 up to 2,67, which is to give us an evidence of the surface chaotization as a result of hydrogen withdrawal into the atmosphere and the graphene surface erosion.
机译:由于氢吸附(1%质量),通过低温分形吸附的方法对多层石墨烯薄膜的表面微观测定法的变化进行了氮的方法。建立氢气氛处理导致石墨烯表面的显着发展,并将第一层热吸附从289降至260J / kg。已经发现总体疏松浓度生长和孔径分布函数拓宽。此时,表面分形尺寸值​​从2,52增加到2,67,这是给我们作为氢脱落到大气中的氢和石墨烯表面腐蚀的结果的证据。

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