首页> 外国专利> COMPOSITION CONDUCTING MATERIAL, ENERGY ACCUMULATION DEVICE, CONDUCTING DISPERSION, CONDUCTING DEVICE, CONDUCTING COMPOSITE, HEAT CONDUCTING COMPOSITE AND METHOD FOR OBTAINING THE COMPOSITIVE SAMPLE.

COMPOSITION CONDUCTING MATERIAL, ENERGY ACCUMULATION DEVICE, CONDUCTING DISPERSION, CONDUCTING DEVICE, CONDUCTING COMPOSITE, HEAT CONDUCTING COMPOSITE AND METHOD FOR OBTAINING THE COMPOSITIVE SAMPLE.

机译:组成导电材料,能量积累装置,分布,传导装置,传导复合材料,导热复合材料以及获得该复合样品的方法。

摘要

A composite conductive material with excellent conductivity is proposed. The composite conductive material comprises at least a graphene-like material peeled off from a carbon material based on graphite and a conductive material dispersed in the base material. The carbon material based on graphite is characterized by the presence of a rhombohedral layer of graphite (3R) and a hexagonal layer of graphite (2H), where the ratio (3R) of the rhombohedral layer of graphite (3R) and a hexagonal layer of graphite (2H), based on the results of X-ray diffraction, which is determined by The following equation 1 is 31% or more: where P3 is the intensity of the peak (101) of the plane of the rhombohedral graphite layer (3R) based on the results of the X-ray diffraction method, and P4 is the intensity of the peak (1 01) plane of the hexagonal graphite layer (2H) based on the results of the X-ray diffraction method.
机译:提出了一种导电性优异的复合导电材料。所述复合导电材料至少包括从基于石墨的碳材料剥离的石墨烯状材料和分散在所述基材中的导电材料。基于石墨的碳材料的特征在于存在石墨的菱面层(3R)和石墨的六边形层(2H),其中石墨的菱形面层(3R)和六方的石墨层的比率(3R)石墨(2H),基于X射线衍射的结果,由下式1确定为31%或更高:其中P3是菱面体石墨层(3R)的平面的峰(101)的强度)基于X射线衍射法的结果,而P4是基于X射线衍射法的结果的六角形石墨层(2H)的峰(1 01)平面的强度。

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