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首页> 外文期刊>Applied Physics Letters >Designing π-stacked molecular structures to control heat transport through molecular junctions
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Designing π-stacked molecular structures to control heat transport through molecular junctions

机译:设计π堆叠分子结构以控制通过分子结的热传递

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摘要

We propose and analyze a way of using π stacking to design molecular junctions that either enhance or suppress a phononic heat current, but at the same time remain conductors for an electric current. Such functionality is highly desirable in thermoelectric energy converters, as well as in other electronic components where heat dissipation should be minimized or maximized. We suggest a molecular design consisting of two masses coupled to each other with one mass coupled to each lead. By having a small coupling (spring constant) between the masses, it is possible to either reduce or perhaps more surprisingly enhance the phonon conductance. We investigate a simple model system to identify optimal parameter regimes and then use first principle calculations to extract model parameters for a number of specific molecular realizations, confirming that our proposal can indeed be realized using standard molecular building blocks.
机译:我们提出并分析了一种使用π堆叠设计可增强或抑制声子热电流,但同时又保持电流导体的分子结的方法。在热电能量转换器以及应当最小化或最大化散热的其他电子部件中,这种功能是高度期望的。我们建议一种分子设计,该分子设计包括两个相互耦合的质量以及一个与每个引线耦合的质量。通过在质量块之间具有小的耦合(弹簧常数),可以减小或可能更令人惊讶地提高声子电导。我们研究了一个简单的模型系统,以确定最佳的参数体系,然后使用第一性原理计算来提取用于许多特定分子实现的模型参数,从而确认我们的建议确实可以使用标准分子构件来实现。

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