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Piezoelectric monolayers as nonlinear energy harvesters

机译:压电单层作为非线性能量收集器

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摘要

We study the dynamics of h-BN monolayers by first performing ab-initio calculations of the deformation potential energy and then solving numerically a Langevine-type equation to explore their use in nonlinear vibration energy harvesting devices. An applied compressive strain is used to drive the system into a nonlinear bistable regime, where quasi-harmonic vibrations are combined with low-frequency swings between the minima of a double-well potential. Due to its intrinsic piezoelectric response, the nonlinear mechanical harvester naturally provides an electrical power that is readily available or can be stored by simply contacting the monolayer at its ends. Engineering the induced nonlinearity, a 20 nm~2 device is predicted to harvest an electrical power of up to 0.18 pW for a noisy vibration of 5 pN.
机译:我们首先通过对形变势能进行从头算,然后通过数值求解兰格文型方程来研究h-BN单层的动力学,以探索其在非线性振动能量收集装置中的应用。施加的压缩应变用于将系统驱动到非线性双稳态状态,其中准谐波振动与双阱势极值之间的低频摆动结合在一起。由于其固有的压电响应,非线性机械收割机自然会提供易于获得的电能,也可以通过在单层的两端进行简单接触来存储电能。通过工程化感应的非线性,预计20 nm〜2的器件将在噪声为5 pN的情况下获得高达0.18 pW的电功率。

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