石墨烯
气泡
拉伤
材料科学
应变工程
耐久性
领域(数学)
纳米技术
化学物理
复合材料
机械
物理
光电子学
医学
内科学
数学
纯数学
硅
作者
Chuanli Yu,Jiacong Cao,Shuze Zhu,Zhaohe Dai
出处
期刊:Materials
[MDPI AG]
日期:2024-06-13
卷期号:17 (12): 2889-2889
被引量:7
摘要
It has been both theoretically predicted and experimentally demonstrated that strain can effectively modulate the electronic states of graphene sheets through the creation of a pseudomagnetic field (PMF). Pressurizing graphene sheets into bubble-like structures has been considered a viable approach for the strain engineering of PMFs. However, the bubbling technique currently faces limitations such as long manufacturing time, low durability, and challenges in precise control over the size and shape of the pressurized bubble. Here, we propose a rapid bubbling method based on an oxygen plasma chemical reaction to achieve rapid induction of out-of-plane deflections and in-plane strains in graphene sheets. We introduce a numerical scheme capable of accurately resolving the strain field and resulting PMFs within the pressurized graphene bubbles, even in cases where the bubble shape deviates from perfect spherical symmetry. The results provide not only insights into the strain engineering of PMFs in graphene but also a platform that may facilitate the exploration of the strain-mediated electronic behaviors of a variety of other 2D materials.
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