氧官能团对具有边缘和中间裂纹的石墨烯裂纹生长行为的影响:分子动力学研究

Arman Salehi, Samrand Rash-Ahmadi
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摘要

近十年来,石墨烯以其非凡的性能在纳米复合材料和纳米器件中发挥了广泛的作用和应用。然而,由于其断裂韧性和脆性较低,石墨烯很脆,裂纹生长迅速。因此,裂纹生长行为及其进展控制非常重要。本研究利用分子动力学建模研究了不同氧化物基团(羟基、环氧基和羧基)在不同氧化石墨烯比例(0-3 wt.%)下的功能化石墨烯(中间和边缘裂纹)的裂纹生长行为和机械性能。结果表明,带有氧化物基团的功能化石墨烯改变了石墨烯的特性,有效地减少了裂纹的增长,如裂纹长度(4.9 Å)、裂纹开口位移(1.4 Å)、边缘裂纹的抗拉强度(74 至 54 Gpa)和中间裂纹的抗拉强度(128 至 63 Gpa)。此外,羧基和环氧基对裂纹增长速度、开裂位移增长速度和应力集中也有较大的降低作用。此外,初始裂纹(半径为 13 Å)周围氧化物基团原子数的增加也会降低裂纹增长率、开口位移增长率和应力集中度。这项研究为了解带有氧化物基团的功能化石墨烯的裂纹生长行为提供了更广泛的视角。
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Influence of oxygen functional groups on the crack growth behavior of graphene with edge and middle crack: A molecular dynamics study
In the last decade, graphene has found a wide role and application in nanocomposites and nanodevices for its extraordinary properties. However, due to its low fracture toughness and brittleness, graphene is brittle, and crack growth occurs rapidly. As a result, crack growth behavior and control of its progression are important. In this study, molecular dynamics modeling was used to investigate the crack growth behavior and mechanical properties in functionalized graphene (with middle and edge crack) with different oxide groups (hydroxyl, epoxide, and carboxyl) at different percentages of graphene oxide (0–3 wt. %). The results show that functionalized graphene with oxide groups changes the properties of graphene, effectively reducing the crack growth in crack length (4.9 Å), crack opening displacement (1.4 Å), tensile strength for edge crack (74 to 54 Gpa), and middle crack (128 to 63 Gpa). Also, carboxyl and epoxide groups have a greater reduction in crack growth rate, opening displacement growth rate, and stress concentration. In addition, increase in the number of atoms in oxide groups around the initial crack (with radius 13 Å) reduces crack growth rate, opening displacement growth rate, and stress concentration. This study provides a broader insight into crack growth behavior in functionalized graphene with oxide groups.
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