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Variable range hopping electric and thermoelectric transport in anisotropic black phosphorus

Author(s)
Liu, HuiliChoe, Hwan SungChen, YabinSuh, JoonkiKo, ChanghyunTongay, SefaattinWu, Junqiao
Issued Date
2017-09
DOI
10.1063/1.4985333
URI
https://scholarworks.unist.ac.kr/handle/201301/27081
Fulltext
https://aip.scitation.org/doi/10.1063/1.4985333
Citation
APPLIED PHYSICS LETTERS, v.111, no.10, pp.102101
Abstract
Black phosphorus (BP) is a layered semiconductor with a high mobility of up to similar to 1000 cm(2) V(-1)s(-1) and a narrow bandgap of similar to 0.3 eV, and shows potential applications in thermoelectrics. In stark contrast to most other layered materials, electrical and thermoelectric properties in the basal plane of BP are highly anisotropic. To elucidate the mechanism for such anisotropy, we fabricated BP nanoribbons (similar to 100 nm thick) along the armchair and zigzag directions, and measured the transport properties. It is found that both the electrical conductivity and Seebeck coefficient increase with temperature, a behavior contradictory to that of traditional semiconductors. The three-dimensional variable range hopping model is adopted to analyze this abnormal temperature dependency of electrical conductivity and Seebeck coefficient. The hopping transport of the BP nanoribbons, attributed to high density of trap states in the samples, provides a fundamental understanding of the anisotropic BP for potential thermoelectric applications.
Publisher
AMER INST PHYSICS
ISSN
0003-6951
Keyword
FIELD-EFFECT TRANSISTORSPOWERCONDUCTIVITYHEATMOS2

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