Temperature- and diameter-dependent electrical conductivity of nitrogen doped ZnO nanowires
Creators
- 1. Key Laboratory for Microstructural Material Physics of Hebei Province, School of Science, Yanshan University (China)
- 2. School of Aerospace Engineering, Beijing Institute of Technology (China)
- 3. School of Materials Science and Engineering, Beijing Institute of Technology (China)
Description
A modified formula to calculate the axial conductivity of nanowires was proposed based on the one-dimensional quantum state density distribution and Boltzmann transport theory. Numerical simulations of the ZnO nanowires (ZnONWs) and Nitrogen-doped ZnO nanowires (N-ZnONWs) were implemented using data from the first principles calculation. The results indicate that ZnONWs are low-conductivity wide band-gap semiconductors owing to their low carrier concentrations at room temperature, with N-doping increasing the conductivity. The N-ZnONWs carrier concentrations increased with increasing temperature, and possessed significantly higher carrier concentrations than ZnONWs. With an increase in diameter, the ZnONWs conductivities increased, whereas the N-ZnONWs conductivities decreased. Graphical abstract:
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Additional details
Identifiers
Publishing Information
- Journal Title
- European Physical Journal. B, Condensed Matter Physics
- Journal Volume
- 92
- Journal Issue
- 7
- Journal Page Range
- p. 1-7
- ISSN
- 1434-6028
INIS
- Country of Publication
- France
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 54082538
- Subject category
- S77: NANOSCIENCE AND NANOTECHNOLOGY; S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY;
- Descriptors DEI
- COMPUTERIZED SIMULATION; DOPED MATERIALS; ELECTRIC CONDUCTIVITY; NANOWIRES; NITROGEN; ONE-DIMENSIONAL CALCULATIONS; QUANTUM STATES; SEMICONDUCTOR MATERIALS; TRANSPORT THEORY; ZINC OXIDES
- Descriptors DEC
- CHALCOGENIDES; ELECTRICAL PROPERTIES; ELEMENTS; MATERIALS; NANOSTRUCTURES; NONMETALS; OXIDES; OXYGEN COMPOUNDS; PHYSICAL PROPERTIES; SIMULATION; ZINC COMPOUNDS
Optional Information
- Copyright
- Copyright (c) 2019 EDP Sciences / Societ#Latin Small Letter A With Grave# Italiana di Fisica / Springer-Verlag GmbH Germany, part of Springer Nature