Vapor–solid synthesis and enhanced thermoelectric properties of non-planar bismuth selenide nanoplates on graphene substrate
In this work, stoichiometric separate bismuth selenide (Bi 2 Se 3 ) nanoplates and continuous Bi 2 Se 3 coatings are synthesized on graphene substrate by catalyst-free vapor–solid deposition method. The orientation of synthesized nanoplates relative to the substrate surface varies from heteroepitaxi...
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Veröffentlicht in: | Journal of materials science 2016-09, Vol.51 (17), p.8224-8232 |
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Hauptverfasser: | , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In this work, stoichiometric separate bismuth selenide (Bi
2
Se
3
) nanoplates and continuous Bi
2
Se
3
coatings are synthesized on graphene substrate by catalyst-free vapor–solid deposition method. The orientation of synthesized nanoplates relative to the substrate surface varies from heteroepitaxial (planar) to oriented under different angles (non-planar). The non-planar growth of the nanoplates was achieved for the first time by short-term carrier inert gas flow in certain temperature interval of the synthesis process. The crystallographic growth directions of non-planar nanoplates were determined from HRTEM images as well as estimated from the slope angles of non-planar nanoplates. Bi
2
Se
3
coatings consisting of combination of planar and non-planar nanoplates exhibit significantly enhanced in comparison with coating consisting of only planar coalescent Bi
2
Se
3
nanoplates thermoelectric properties. Demonstrated graphene/Bi
2
Se
3
/graphene devices may find applications in thermoelectric and photo-detection sensors. |
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ISSN: | 0022-2461 1573-4803 |
DOI: | 10.1007/s10853-016-0097-z |