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Mechanical properties of monolayer graphene oxide

机译:单层氧化石墨烯的机械性能

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摘要

Mechanical properties of ultrathin membranes consisting of one layer, two overlapped layers, and three overlapped layers of graphene oxide platelets were investigated by atomic force microscopy (AFM) imaging in contact mode. In order to evaluate both the elastic modulus and prestress of thin membranes, the AFM measurement was combined with the finite element method (FEM) in a new approach for evaluating the mechanics of ultrathin membranes. Monolayer graphene oxide was found to have a lower effective Young's modulus (207.6 ± 23.4 GPa when a thickness of 0.7 nm is used) as compared to the value reported for "pristine" graphene. The prestress (39.7-76.8 MPa) of the graphene oxide membranes obtained by solution-based deposition was found to be 1 order of magnitude lower than that obtained by others for mechanically cleaved graphene. The novel AFM imaging and FEM-based mapping methods presented here are of general utility for obtaining the elastic modulus and prestress of thin membranes.
机译:通过原子力显微镜(AFM)成像以接触模式研究了由一层,两层重叠的层和三层重叠的氧化石墨烯薄片组成的超薄膜的力学性能。为了评估薄膜的弹性模量和预应力,AFM测量与有限元方法(FEM)相结合,以一种新的方法评估超薄膜的力学性能。与报道的“原始”石墨烯的值相比,发现单层氧化石墨烯具有较低的有效杨氏模量(当使用0.7nm的厚度时为207.6±23.4GPa)。发现通过溶液基沉积获得的氧化石墨烯膜的预应力(39.7-76.8 MPa)比通过机械裂解的石墨烯获得的预应力低1个数量级。这里介绍的新颖的AFM成像和基于FEM的映射方法对于获得薄膜的弹性模量和预应力具有普遍的实用性。

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