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Nonlinear thermoelectric transport: A class of nanodevices for high efficiency and large power output

机译:非线性热电传输:一类纳米器件,可实现高效率和大功率输出

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摘要

Molecular junctions and similar devices described by an energy dependent transmission coefficient can have a high linear response thermoelectric figure of merit. Since such devices are inherently nonlinear, the full thermodynamic efficiency valid for any temperature and chemical potential difference across the leads is calculated. The general features in the energy dependence of the transmission function that lead to high efficiency and also high power output are determined. It is shown that the device with the highest efficiency does not necessarily lead to large power output. To illustrate this, we use a model called the t-stub model representing tunneling through an energy level connected to another energy level. Within this model both high efficiency and high power output are achievable. Futhermore, by connecting many nanodevices it is shown to be possible to scale up the power output without compromising efficiency in an (exactly solvable) n-channel model even with tunneling between the devices.
机译:由能量依赖的传输系数描述的分子结和类似器件可以具有高线性响应热电性能。由于此类设备本质上是非线性的,因此可以计算出对导线上任何温度和化学势差有效的全部热力学效率。确定了传递函数的能量依赖性中导致高效率以及高功率输出的一般特征。结果表明,具有最高效率的设备并不一定会导致大功率输出。为了说明这一点,我们使用了一个称为t-stub模型的模型,该模型表示通过与另一个能级相连的一个能级进行隧穿。在该模型中,既可以实现高效率又可以实现高功率输出。此外,通过连接许多纳米器件,即使在器件之间建立隧道,在(完全可解决的)n通道模型中,显示出有可能在不损害效率的情况下扩大功率输出。

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