发明名称 Carbon material and method for producing same
摘要 (Problem);A porous carbon material having excellent graphite crystallinity, good carrier mobility and proper porosity, a porous carbon material having edges of carbon hexagonal planes located on outer surfaces of particle and structure, and flaky graphite being similar to graphene are produced.;(Means to Solve);By subjecting a carbon material, in which a closed-pore-ratio and an amount of remaining hydrogen in the material are set to be within a proper range, to hot isostatic pressing treatment, a vapor phase growth reaction of graphite is generated in closed pores as nuclei using hydrogen and hydrocarbon generated from the carbon material, thereby producing a large amount of targeted porous carbon material at low cost. Flaky graphite being similar to graphene is produced by applying physical impact to the obtained porous carbon material or by generating a graphite intercalation compound using the porous carbon material as a host and then quickly heating the compound.
申请公布号 US9379385(B2) 申请公布日期 2016.06.28
申请号 US201414504033 申请日期 2014.10.01
申请人 INCUBATION ALLIANCE, INC. 发明人 Muramatsu Kazuo;Toyoda Masahiro
分类号 C01B31/00;H01M4/587;C01B31/04;C04B35/52;C04B35/645;C04B35/524;C04B35/626;C04B38/00;C04B111/00 主分类号 C01B31/00
代理机构 Kratz, Quintos & Hanson, LLP 代理人 Kratz, Quintos & Hanson, LLP
主权项 1. A vapor-phase-grown porous carbon material comprising edges of carbon hexagonal planes on an outer surface thereof, having a total porosity of 40% or more, and having an R value (a peak intensity ratio represented by I1360/I1580) measured by a laser Raman spectroscopy of less than 0.2, wherein the carbon material has a structure having a portion comprising a spherical form or an elliptical form, wherein substantially whole outer surface of the carbon material is composed of edges of carbon hexagonal planes, wherein the carbon hexagonal planes are vapor-phase-grown radially and are stacked, and thicknesses of the carbon hexagonal planes in the stacking direction are within the range of 0.001 to 0.2 microns.
地址 Kobe-shi JP