Two-dimensional carbon nitride C6N nanosheet with egg-comb-like structure and electronic properties of a semimetal
- 18 December 2020
- journal article
- research article
- Published by IOP Publishing in Nanotechnology
- Vol. 32 (21), 215702
- https://doi.org/10.1088/1361-6528/abd50c
Abstract
In this study, the structural, electronic and optical properties of theoretically predicted C6N monolayer structure are investigated by means of Density Functional Theory-based First-Principles Calculations. Phonon band dispersion calculations and molecular dynamics simulations reveal the dynamical and thermal stability of C6N single-layer structure. We found out that the C6N monolayer has large negative in-plane Poissons ratios along both X and Y direction and the both values are almost four times that of the famous-pentagraphene. The electronic structure shows that C6N monolayer is a semi-metal and has a Dirac-point in the BZ. The optical analysis using the RPA method constructed over HSE06 illustrates that the first peak of absorption coefficient of the C6N monolayer along all polarizations is located in the IR range of spectrum, while the second absorption peak occurs in the visible range, which suggests its potential applications in optical and electronic devices. Interestingly, optically anisotropic character of this system is highly desirable for the design of polarization-sensitive photodetectors. Thermoelectric properties such as Seebeck coefficient, electrical conductivity, electronic thermal conductivity and power factor are investigated as a function of carrier doping at temperatures 300 K, 400 K, and 500 K. In general, we predict that the C6N monolayer could be a new platform for study of novel physical properties in two-dimensional semi-metal materials, which may provide new opportunities to realize high-speed low-dissipation.Keywords
Funding Information
- National Research Foundation of Korea (NRF) grant funded by the Korea government (NRF-2015M2B2A4033123)
This publication has 104 references indexed in Scilit:
- Ab initio calculations of optical properties of B2C graphene sheetSolid State Communications, 2012
- Graphitic carbon nitride materials: controllable synthesis and applications in fuel cells and photocatalysisEnergy & Environmental Science, 2012
- Graphene and Graphene Oxide: Synthesis, Properties, and ApplicationsAdvanced Materials, 2010
- Fluidic Carbon Precursors for Formation of Functional Carbon under Ambient Pressure Based on Ionic LiquidsAdvanced Materials, 2010
- Young’s modulus of graphene: A molecular dynamics studyPhysical Review B, 2009
- Nanoengineering Defect Structures on GraphenePhysical Review Letters, 2008
- Superior Thermal Conductivity of Single-Layer GrapheneNano Letters, 2008
- Room-Temperature Quantum Hall Effect in GrapheneScience, 2007
- Efficient hybrid density functional calculations in solids: Assessment of the Heyd–Scuseria–Ernzerhof screened Coulomb hybrid functionalThe Journal of Chemical Physics, 2004
- Special points for Brillouin-zone integrationsPhysical Review B, 1976