Cited 7 time in
Graphene thermocouple fabricated on a flexible and transparent substrate
| DC Field | Value | Language |
|---|---|---|
| dc.contributor.author | Nam, Youngwoo | - |
| dc.contributor.author | Gu, Daewon | - |
| dc.contributor.author | Khan, Munis | - |
| dc.contributor.author | Yurgens, August | - |
| dc.date.accessioned | 2024-06-17T08:00:21Z | - |
| dc.date.available | 2024-06-17T08:00:21Z | - |
| dc.date.issued | 2024-06 | - |
| dc.identifier.issn | 2158-3226 | - |
| dc.identifier.issn | 2158-3226 | - |
| dc.identifier.uri | https://scholarworks.gnu.ac.kr/handle/sw.gnu/70822 | - |
| dc.description.abstract | We demonstrate the realization of reliable, high-quality, micro-sized graphene-based field-effect devices on a flexible and transparent substrate, ethylene vinyl acetate (EVA)/polyethylene terephthalate (PET), using a convenient hot-press lamination transfer and employing parylene-N as a dielectric material for gating. Using this technique, we fabricate a graphene thermocouple on the EVA/PET substrate. Specifically, the graphene is patterned in a U-shape, and its legs are equipped with two independent top gates. Full control of the carrier density and type by electrostatic gating in the two graphene regions allow the formation of a thermocouple layout, exhibiting an enlarged thermovoltage signal when the two regions are doped with opposite types of carriers and leading to a maximum sensitivity with a thermopower of similar to 73 mu V/K. This agrees well with the working principle of thermocouple, and it proves the good compatibility and functionality of the graphene thermocouple on the EVA/PET substrate. Our findings suggest possible applications for producing scalable and reliable graphene-based electronic devices on flexible and transparent substrates in a simple way. | - |
| dc.language | 영어 | - |
| dc.language.iso | ENG | - |
| dc.publisher | American Institute of Physics Inc. | - |
| dc.title | Graphene thermocouple fabricated on a flexible and transparent substrate | - |
| dc.type | Article | - |
| dc.publisher.location | 미국 | - |
| dc.identifier.doi | 10.1063/5.0203178 | - |
| dc.identifier.scopusid | 2-s2.0-85195400336 | - |
| dc.identifier.wosid | 001239605500001 | - |
| dc.identifier.bibliographicCitation | AIP Advances, v.14, no.6 | - |
| dc.citation.title | AIP Advances | - |
| dc.citation.volume | 14 | - |
| dc.citation.number | 6 | - |
| dc.type.docType | Article | - |
| dc.description.isOpenAccess | Y | - |
| dc.description.journalRegisteredClass | scie | - |
| dc.description.journalRegisteredClass | scopus | - |
| dc.relation.journalResearchArea | Science & Technology - Other Topics | - |
| dc.relation.journalResearchArea | Materials Science | - |
| dc.relation.journalResearchArea | Physics | - |
| dc.relation.journalWebOfScienceCategory | Nanoscience & Nanotechnology | - |
| dc.relation.journalWebOfScienceCategory | Materials Science, Multidisciplinary | - |
| dc.relation.journalWebOfScienceCategory | Physics, Applied | - |
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