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High-Performance Solid-State Thermionic Energy Conversion Based on 2D van der Waals Heterostructures: A First-Principles Study

机译:基于二维范德华异质结构的高性能固态热电子能量转换:第一性原理研究

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摘要

Two-dimensional (2D) van der Waals heterostructures (vdWHs) have shown multiple functionalities with great potential in electronics and photovoltaics. Here, we show their potential for solid-state thermionic energy conversion and demonstrate a designing strategy towards high-performance devices. We propose two promising thermionic devices, namely, the p-type Pt-G-WSe2-G-Pt and n-type Sc-WSe2-MoSe2-WSe2-Sc. We characterize the thermionic energy conversion performance of the latter using first-principles GW calculations combined with real space Green’s function (GF) formalism. The optimal barrier height and high thermal resistance lead to an excellent performance. The proposed device is found to have a room temperature equivalent figure of merit of 1.2 which increases to 3 above 600 K. A high performance with cooling efficiency over 30% of the Carnot efficiency above 450 K is achieved. Our designing and characterization method can be used to pursue other potential thermionic devices based on vdWHs.
机译:二维(2D)范德华异质结构(vdWH)具有多种功能,在电子和光伏领域具有巨大潜力。在这里,我们展示了其固态热电子能量转换的潜力,并展示了针对高性能器件的设计策略。我们提出了两种有希望的热电子器件,即p型Pt-G-WSe2-G-Pt和n型Sc-WSe2-MoSe2-WSe2-Sc。我们使用第一性原理GW计算结合实际空间格林函数(GF)形式主义来表征后者的热电子能量转换性能。最佳的阻隔高度和高耐热性带来了出色的性能。发现所提出的装置的室温等效品质因数为1.2,在600 K以上时增加到3,在450 K以上的卡诺效率下,冷却效率超过30%的高性能。我们的设计和表征方法可用于追求其他基于vdWHs的潜在热电子器件。

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