剥脱关节
石墨
熔盐
共晶体系
表面张力
材料科学
碱金属
盐(化学)
化学工程
润湿
石墨烯
无机化学
化学
矿物学
复合材料
冶金
有机化学
纳米技术
微观结构
热力学
工程类
物理
作者
Adi Lavi,Michael Pyrikov,Avia Ohayon‐Lavi,Rafael Tadmor,G. Shachar,Yelena Leibovitch,Efrat Ruse,Leonid Vradman,Oren Regev
摘要
The exfoliation of graphite to graphene nanoplatelets (GnP) in a molten salt medium is investigated in this study. It is shown that this mechanical force-free process yielded a large-sized GnP product (>15 microns) with a low defect density. The effect of the surface tension of the molten salt on graphite exfoliation efficiency was investigated for a series of alkali chloride salts (CsCl, KCl, NaCl and eutectic NaCl-KCl) at 850 °C. It was demonstrated that the produced GnP could be completely and easily separated from the salt. Molten salt with the lowest value of surface tension (CsCl) displayed the highest wettability of the graphitic layers and hence facilitated total exfoliation of the graphite to GnP. The exfoliation of graphite in molten salts is applicable in the thermal energy storage field, as well as in exfoliation of other layered materials. Herein, it is demonstrated that the thermal conductivity of the GnP-CsCl composite is enhanced by ∼300% compared to the neat salt.
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