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Molecular electronic refrigeration against parallel phonon heat leakage channels

机译:分子电子制冷与平行声子热泄漏通道

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摘要

Due to their structured density of states, molecular junctions provide rich resources to filter and control the flow of electrons and phonons. Here we compute the out of equilibrium current-voltage characteristics and dissipated heat of some recently synthesized oligophenylenes (OPE3) using the Density Functional based Tight-Binding (DFTB) method within Non-Equilibrium Green's Function Theory (NEGF). We analyze the Peltier cooling power for these molecular junctions as function of a bias voltage and investigate the parameters that lead to optimal cooling performance. In order to quantify the attainable temperature reduction, an electro-thermal circuit model is presented, in which the key electronic and thermal transport parameters enter. Overall, our results demonstrate that the studied OPE3 devices are compatible with temperature reductions of several K. Based on the results, some strategies to enable high performance devices for cooling applications are briefly discussed.
机译:由于其结构态密度,分子连接提供丰富的资源过滤和控制电子和流动声子。电流电压特性和消散最近一些热合成oligophenylenes使用基于密度泛函(OPE3)在紧束缚(DFTB)方法非平衡格林函数理论(NEGF)。我们分析的珀尔帖冷却能力分子连接在一个偏置电压的函数并研究了参数导致最优的冷却性能。实现温度降低,电热模型电路,给出了电子和热传输的关键参数输入。证明OPE3设备进行了研究与温度降低几个兼容k .根据结果,一些策略使高性能设备进行冷却简要讨论了应用程序。

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