Strain dependence of the thermoelectric performance of porous armchair silicene nanoribbons
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- Type
- article
- Published
- 2019-11-11
- Cited by
- 2
- References
- 26
- OpenAlex
- https://openalex.org/W2984847720
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:210239044
Keywords
Materials science, Silicene, Thermoelectric effect, Porosity, Strain (injury)
References
- Theoretical investigation of armchair silicene nanoribbons with application in stretchable electronics
- Two- and one-dimensional honeycomb structures of silicon and germanium.
- Strain dependence of the heat transport properties of graphene nanoribbons
- Atomic structure of silicene nanoribbons on Ag(110)
- A review on silicene - New candidate for electronics
- Vacancy Effects on Electric and Thermoelectric Properties of Zigzag Silicene Nanoribbons
- Band-gap modulations of armchair silicene nanoribbons by transverse electric fields
- Tunable gaps and enhanced mobilities in strain-engineered silicane
- Formation of one-dimensional self-assembled silicon nanoribbons on Au(110)-(2 × 1)
- Stretching-enhanced ballistic thermal conductance in graphene nanoribbons
- Tuning the thermal conductivity of silicene with tensile strain and isotopic doping: A molecular dynamics study
- Strain engineering of thermal conductivity in graphene sheets and nanoribbons: a demonstration of magic flexibility
- Experimental evidence for epitaxial silicene on diboride thin films.
- Spatial variation of currents and fields due to localized scatterers in metallic conduction
- Group-IV nanosheets with vacancies: a tight-binding extended Hückel study
- Buckled silicene formation on Ir(111).
- 1D graphene-like silicon systems: silicene nano-ribbons
- Toward phonon-boundary engineering in nanoporous materials
- Semiempirical model for nanoscale device simulations
- Large tunability of lattice thermal conductivity of monolayer silicene via mechanical strain
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