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Thermionic transport across gold-graphene-WSe2 van der Waals heterostructures.


ABSTRACT: Solid-state thermionic devices based on van der Waals structures were proposed for nanoscale thermal to electrical energy conversion and integrated electronic cooling applications. We study thermionic cooling across gold-graphene-WSe2-graphene-gold structures computationally and experimentally. Graphene and WSe2 layers were stacked, followed by deposition of gold contacts. The I-V curve of the structure suggests near-ohmic contact. A hybrid technique that combines thermoreflectance and cooling curve measurements is used to extract the device ZT. The measured Seebeck coefficient, thermal and electrical conductance, and ZT values at room temperatures are in agreement with the theoretical predictions using first-principles calculations combined with real-space Green's function formalism. This work lays the foundation for development of efficient thermionic devices.

SUBMITTER: Rosul MG 

PROVIDER: S-EPMC6839940 | biostudies-literature | 2019 Nov

REPOSITORIES: biostudies-literature

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Thermionic transport across gold-graphene-WSe<sub>2</sub> van der Waals heterostructures.

Rosul Md Golam MG   Lee Doeon D   Olson David H DH   Liu Naiming N   Wang Xiaoming X   Hopkins Patrick E PE   Lee Kyusang K   Zebarjadi Mona M  

Science advances 20191108 11


Solid-state thermionic devices based on van der Waals structures were proposed for nanoscale thermal to electrical energy conversion and integrated electronic cooling applications. We study thermionic cooling across gold-graphene-WSe<sub>2</sub>-graphene-gold structures computationally and experimentally. Graphene and WSe<sub>2</sub> layers were stacked, followed by deposition of gold contacts. The <i>I</i>-<i>V</i> curve of the structure suggests near-ohmic contact. A hybrid technique that comb  ...[more]

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