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Engineered piezoelectricity in graphene

机译:石墨烯中的工程压电性

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摘要

We discover that piezoelectric effects can be engineered into nonpiezoelectric graphene through the selective surface adsorption of atoms. Our calculations show that doping a single sheet of graphene with atoms on one side results in the generation of piezoelectricity by breaking inversion symmetry. Despite their 2D nature, piezoelectric magnitudes are found to be comparable to those in 3D piezoelectric materials. Our results elucidate a designer piezoelectric phenomenon, unique to the nanoscale, that has potential to bring dynamical control to nanoscale electromechanical devices.
机译:我们发现,可以通过原子的选择性表面吸附将压电效应设计到非压电石墨烯中。我们的计算表明,单面石墨烯的一侧掺杂原子会破坏反演对称性,从而产生压电性。尽管具有2D性质,但压电幅度却可与3D压电材料相媲美。我们的结果阐明了纳米级独有的设计师压电现象,它有可能为纳米级机电设备带来动态控制。

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