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Piezoelectric effect in chemical vapour deposition-grown atomic-monolayer triangular molybdenum disulfide piezotronics

机译:化学气相沉积生长的原子单层三角二硫化钼压电中的压电效应

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摘要

High-performance piezoelectricity in monolayer semiconducting transition metal dichalcogenides is highly desirable for the development of nanosensors, piezotronics and photo-piezotransistors. Here we report the experimental study of the theoretically predicted piezoelectric effect in triangle monolayer MoS2 devices under isotropic mechanical deformation. The experimental observation indicates that the conductivity of MoS2 devices can be actively modulated by the piezoelectric charge polarization-induced built-in electric field under strain variation. These polarization charges alter the Schottky barrier height on both contacts, resulting in a barrier height increase with increasing compressive strain and decrease with increasing tensile strain. The underlying mechanism of strain-induced in-plane charge polarization is proposed and discussed using energy band diagrams. In addition, a new type of MoS2 strain/force sensor built using a monolayer MoS2 triangle is also demonstrated. Our results provide evidence for strain-gating monolayer MoS2 piezotronics, a promising avenue for achieving augmented functionalities in next-generation electronic and mechanical–electronic nanodevices.
机译:对于纳米传感器,压电和光​​电压电晶体管的开发,单层半导电过渡金属二卤化二硅化物中的高性能压电是非常需要的。在这里,我们报告在各向同性机械变形下三角形单层MoS2器件中理论预测的压电效应的实验研究。实验观察表明,在应变变化下,压电电荷极化诱导的内置电场可以有效地调制MoS2器件的电导率。这些极化电荷会改变两个触点上的肖特基势垒高度,从而导致势垒高度随着压缩应变的增加而增加,而随着拉伸应变的增加而减小。利用能带图提出并讨论了应变引起的面内电荷极化的潜在机理。此外,还展示了使用单层MoS2三角形构建的新型MoS2应变/力传感器。我们的结果为应变门控单层MoS2压电电子学提供了证据,这是在下一代电子和机械电子纳米设备中实现增强功能的有前途的途径。

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