Electronic Structure and the Properties of Phosphorene Systems
arXiv:1507.00703 · doi:10.7566/JPSJ.84.121004
Abstract
A single atomic layer of black phosphorus, phosphorene, was experimentally realized in 2014. It has a puckered honeycomb lattice structure and a semiconducting electronic structure. In the first part of this paper, we use a simple LCAO model, and discuss qualitatively the electronic structure of phosphorene systems under electric and magnetic fields, especially, noting their midgap edge states. The next part is spent for the review of the research progress on phosphorene in the past one year since its appearance in 2014. Phosphorene has been a typical object to study the semiconductor physics in atomic layers.
41 pages, 5 figures
References in corpus (52)
- Fast and broadband photoresponse of few-layer black phosphorus field-effect transistors
- Effective Passivation of Exfoliated Black Phosphorus Transistors against Ambient Degradation
- Strain-Engineering Anisotropic Electrical Conductance of Phosphorene and Few-Layer Black Phosphorus
- Black Phosphorus-Monolayer MoS2 van der Waals Heterojunction P-N Diode
- Superior mechanical flexibility of phosphorene and few-layer black phosphorus
- Strain engineered direct-indirect band gap transition and its mechanism in 2D phosphorene
- Layer-dependent Band Alignment and Work Function of Few-Layer Phosphorene
- Photovoltaic effect in few-layer black phosphorus PN junctions defined by local electrostatic gating
- Enhanced Thermoelectric Efficiency via Orthogonal Electrical and Thermal Conductances in Phosphorene
- Tunable optical properties of multilayers black phosphorus thin films
- Quasiparticle band structure and tight-binding model for single- and bilayer black phosphorus
- Phase coexistence and metal-insulator transition in few-layer phosphorene: A computational study
- Phosphorene nanoribbons, nanotubes and van der Waals multilayers
- Oxygen defects in phosphorene
- Accessing the transport properties of pristine few-layer black phosphorus by van der Waals passivation in inert atmosphere
- High quality sandwiched black phosphorus heterostructure and its quantum oscillations
- Electric Field Induced Topological Phase Transition in Two-Dimensional Few-layer Black Phosphorus
- Quality heterostructures from two dimensional crystals unstable in air by their assembly in inert atmosphere
- The potential applications of phosphorene as anode materials in Li-ion batteries
- Quantum Hall Effect in Black Phosphorus Two-dimensional Electron Gas
- Anisotropic intrinsic lattice thermal conductivity of phosphorene from first principles
- Strain Engineering for Phosphorene: The Potential Application as a Photocatalyst
- Device Perspective for Black Phosphorus Field-Effect Transistors: Contact Resistance, Ambipolar and Scaling
- Toward Air-Stable Multilayer Phosphorene Thin-Films and Transistors
- Access and in situ Growth of Phosphorene-Precursor Black Phosphorus
- Enhanced thermoelectric performance of phosphorene by strain-induced band convergence
- Phosphorene nanoribbon as a promising candidate for thermoelectric applications
- Black Phosphorus Radio-Frequency Transistors
- Unusual Scaling Laws of the Band Gap and Optical Absorption of Phosphorene Nanoribbons
- Electrically Tunable Quasi-Flat Bands, Conductance and Field Effect Transistor in Phosphorene
- Gate Tunable Quantum Oscillations in Air-Stable and High Mobility Few-Layer Phosphorene Heterostructures
- Co-existence of size-dependent and size-independent thermal conductivities in single layer black phosphorus
- Origin of photoresponse in black phosphorus photo-transistors
- Ambipolar Insulator-to-Metal Transition in Black Phosphorus by Ionic-Liquid Gating
- Phosphorene Oxide: Stability and electronic properties of a novel 2D material
- Edge effects on the electronic properties of phosphorene nanoribbons
- Lattice Vibrational Modes and Raman Scattering Spectra of Strained Phosphorene
- Phosphorene nanoribbons
- Black Phosphorus Nanoelectromechanical Resonators Vibrating at Very High Frequencies
- Electrical contacts to monolayer black Phosphorus: a first principles investigation
- Transport and Optical Properties of Single- and Bilayer Black Phosphorus with Defects
- Electron-doped phosphorene: A potential monolayer superconductor
- High stability of faceted nanotubes and fullerenes of multi-phase layered phosphorus: A computational study
- Tunable Magnetic Semiconductor Behavior Driven by Half-Filled One Dimensional Band in Zigzag Phosphorene Nanoribbons
- Performance limits projection of black phosphorous field-effect transistors
- Temporal and Thermal Stability of Al2O3-passivated Phosphorene MOSFETs
- Structure and Stability of Two Dimensional Phosphorene with =O or =NH Functionalization
- Thermal Conduction in Single-Layer Black Phosphorus: Highly Anisotropic?
- Theoretical Study of Phosphorene Tunneling Field Effect Transistors
- Anisotropic charged impurity-limited carrier mobility in monolayer phosphorene
- First Principles Study of Metal Contacts to Monolayer Black Phosphorous
- Edge State and Intrinsic Hole Doping in Bilayer Phosphorene
Cited by in corpus (16)
- Theoretical studies of electronic transport in mono- and bi-layer phosphorene: A critical overview
- Temperature dependent anisotropic charge carrier mobility limited by ionized impurity scattering in thin-layer black phosphorus
- Novel polystyrene-based nanocomposites by phosphorene dispersion
- Topological edge and corner states and fractional corner charges in blue phosphorene
- Multiorbital edge and corner states in black phosphorene
- Mono-elemental saturable absorber in mode-locked fiber laser: A review
- Electrostatic quantum dot confinement in phosphorene
- Wigner molecules in phosphorene quantum dots
- Tunneling Effect in Gapped Phosphorene through Double Barriers
- Current-induced quasiparticle magnetic multipole moments
- Double carrier transport in electron doped region in black phosphorus FET
- Electronic properties of phosphorene and graphene nanoribbons with edge vacancies in magnetic field
- Band Tuning of Phosphorene Semiconductor via Floquet Theory
- Hidden Anisotropy in the Drude Conductivity of Charge Carriers with Dirac-Schrödinger Dynamics
- Highly anisotropic thermoelectric properties of carbon sulfide monolayers
- Aharonov-Bohm oscillations in phosphorene quantum rings: mass anisotropy compensation by confinement potential