氢
化学
无定形碳
结晶
碳纤维
氢气储存
化学工程
石墨烯
无定形固体
亚稳态
纳米晶材料
拉曼光谱
结晶学
材料科学
有机化学
复合数
复合材料
物理
光学
工程类
作者
Angela D. Lueking,Humberto R. Gutiérrez,Dania A. Fonseca,Deepa L. Narayanan,Dirk Van Essendelft,Puja Jain,Caroline E. Burgess Clifford
摘要
We provide evidence of low-temperature hydrogen evolution and possible hydrogen trapping in an anthracite coal derivative, formed via reactive ball milling with cyclohexene. No molecular hydrogen is added to the process. Raman-active molecular hydrogen vibrations are apparent in samples at atmospheric conditions (300 K, 1 bar) for samples prepared 1 year previously and stored in ambient air. Hydrogen evolves slowly at room temperature and is accelerated upon sample heating, with a first increase in hydrogen evolution occurring at approximately 60 degrees C. Subsequent chemical modification leads to the observation of crystalline carbons, including nanocrystalline diamond surrounded by graphene ribbons, other sp2-sp3 transition regions, purely graphitic regions, and a previously unidentified crystalline carbon form surrounded by amorphous carbon. The combined evidence for hydrogen trapping and carbon crystallization suggests hydrogen-induced crystallization of the amorphous carbon materials, as metastable hydrogenated carbons formed via the high-energy milling process rearrange into more thermodynamically stable carbon forms and molecular hydrogen.
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