首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Graphene Curvature on Hydrogen Adsorption: Toward Hydrogen Storage Devices
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Influence of Graphene Curvature on Hydrogen Adsorption: Toward Hydrogen Storage Devices

机译:石墨烯曲率对氢吸附的影响:向储氢装置发展

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摘要

The ability of atomic hydrogen to chemisorb on graphene makes the latter a promising material for hydrogen storage. On the basis of scanning tunneling microscopy techniques, we report on site-selective adsorption of atomic hydrogen on convexly curved regions of monolayer graphene grown on SiC(0001). This system exhibits an intrinsic curvature owing to the interaction with the substrate. We show that at low coverage hydrogen is found on convex areas of the graphene lattice. No hydrogen is detected on concave regions. These findings are in agreement with theoretical models which suggest that both binding energy and adsorption barrier can be tuned by controlling the local curvature of the graphene lattice. This curvature dependence combined with the known graphene flexibility may be exploited for storage and controlled release of hydrogen at room temperature, making it a valuable candidate for the implementation of hydrogen-storage devices.
机译:原子氢化学吸附在石墨烯上的能力使后者成为一种有前途的储氢材料。在扫描隧道显微镜技术的基础上,我们报道了在SiC(0001)上生长的单层石墨烯的凸形弯曲区域上原子氢的位置选择性吸附。由于与基底的相互作用,该系统表现出固有的曲率。我们表明,在低覆盖率下,在石墨烯晶格的凸面上会发现氢。在凹形区域没有检测到氢。这些发现与理论模型一致,该理论模型表明可以通过控制石墨烯晶格的局部曲率来调节结合能和吸附势垒。这种曲率依赖性与已知的石墨烯柔韧性相结合可用于室温下氢的存储和氢的受控释放,使其成为实施氢存储装置的有价值的候选者。

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