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首页> 外文期刊>ACS nano >Geometry controls conformation of graphene sheets: Membranes, ribbons, and scrolls
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Geometry controls conformation of graphene sheets: Membranes, ribbons, and scrolls

机译:几何形状控制石墨烯片的构形:膜,色带和卷轴

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摘要

Graphene features a two-dimensional structure, where applications from electronic building blocks to reinforced composites are emerging, enabled through the utilization of its intriguing electrical, mechanical, and thermal properties. These properties are controlled by the structural makeup of graphene, which is known to display multiple morphologies that change under thermal fluctuations and variations of its geometry. However, as of now, a systematic understanding of the relationship between the conformation of graphene and its geometry remains unknown, preventing rational bottom-up design of materials, structures, and devices. Here, we present a conformational phase diagram for rectangular graphene sheets, defined by their geometry (size and aspect ratio), boundary conditions, and the environmental conditions such as supporting substrates and chemical modifications, as well as changes in temperature. We discover the occurrence of three major structural arrangements in membrane, ribbon, and scroll phases as the aspect ratio of the graphene nanoribbon increases. A theoretical and computational analysis of governing mechanisms for each conformation is provided.
机译:石墨烯具有二维结构,通过利用其有趣的电气,机械和热性能,可以实现从电子构建块到增强复合材料的应用。这些性质由石墨烯的结构组成控制,已知石墨烯会显示出多种形态,这些形态会随着热波动和几何形状的变化而变化。但是,到目前为止,对石墨烯构象及其几何形状之间关系的系统理解仍然未知,这阻碍了材料,结构和器件的合理的自下而上设计。在这里,我们提供了矩形石墨烯片的构象相图,该矩形相由其几何形状(尺寸和长宽比),边界条件和环境条件(例如,支撑基板和化学修饰以及温度变化)定义。我们发现,随着石墨烯纳米带的长宽比增加,在膜,带和涡旋相中出现了三种主要的结构排列。提供了针对每种构型的调控机制的理论和计算分析。

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