Rediscovering black phosphorus as an anisotropic layered material for optoelectronics and electronics
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Summary
Black phosphorus (BP), the most stable allotrope of phosphorus with strong intrinsic in-plane anisotropy, is reintroduced to the layered-material family and shows great potential for thin-film electronics, infrared optoelectronics and novel devices in which anisotropic properties are desirable.
- Type
- article
- Published
- 2014-02-03
- Cited by
- 3,193
- References
- 57
- Access
- Open access
- OpenAlex
- https://openalex.org/W1596779608
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2415642
Keywords
Materials science, Anisotropy, Electron mobility, Band gap, Graphene
References
- Integrated circuits based on bilayer MoS₂ transistors.
- Carrier scattering, mobilities, and electrostatic potential in monolayer, bilayer, and trilayer graphene
- Layer-Controlled Band Gap and Anisotropic Excitons in Phosphorene
- Synthesis and some properties of black phosphorus single crystals
- Electrical and Optical Properties of Crystalline Black Phosphorus
- Electronic transport and device prospects of monolayer molybdenum disulphide grown by chemical vapour deposition
- Tunable infrared plasmonic devices using graphene/insulator stacks.
- Semiconducting black phosphorus
- Measurement of the Elastic Properties and Intrinsic Strength of Monolayer Graphene
- The chemistry of two-dimensional layered transition metal dichalcogenide nanosheets.
- 100-GHz Transistors from Wafer-Scale Epitaxial Graphene
- Raman study of black phosphorus up to 13 GPa
- Plasmons and screening in monolayer and multilayer black phosphorus.
- Atomically thin MoS₂: a new direct-gap semiconductor.
- Measurement of the optical conductivity of graphene.
- Single-layer MoS2 transistors.
- Controlled Formation of Sharp Zigzag and Armchair Edges in Graphitic Nanoribbons
- Electronic Structure of Black Phosphorus in Self-Consistent Pseudopotential Approach
- Strain-induced gap modification in black phosphorus.
- Raman and infrared reflection spectroscopy in black phosphorus
Cited by
- Anisotropic intrinsic lattice thermal conductivity of phosphorene from first principles.
- Switching a normal insulator into a topological insulator via electric field with application to phosphorene.
- Vacancy and Doping States in Monolayer and bulk Black Phosphorus
- Broadband Black‐Phosphorus Photodetectors with High Responsivity
- Enhanced Photoresponse from Phosphorene–Phosphorene‐Suboxide Junction Fashioned by Focused Laser Micromachining
- Valence-force model and nanomechanics of single-layer phosphorene.
- Exploring the Formation of Black Phosphorus Intercalation Compounds with Alkali Metals
- Prediction of phonon-mediated superconductivity in hole-doped black phosphorus
- Localized plasmon resonances for black phosphorus bowtie nanoantennas at terahertz frequencies.
- Difluorophosphorane-Flattened Phosphorene through Difluorination.
- Sandwiching Phosphorene with Iron Porphyrin Monolayer for High Stability and Its Biomimetic Sensor to Sensitively Detect Living Cell Released NO
- Buckled honeycomb lattice and unconventional magnetic response
- Phosphorene: Synthesis, Scale-Up, and Quantitative Optical Spectroscopy.
- Magnetoelectronic properties of multilayer black phosphorus
- Creating a Stable Oxide at the Surface of Black Phosphorus.
- Monolayer Phosphorene-Metal Interfaces
- Novel two-dimensional nanomaterials and their gas sensing properties
- Hybrid functional studies on the electronic properties of ultrathin black phosphorus under normal strain
- Two-dimensional octagon-structure monolayer of nitrogen group elements and the related nano-structures
- Liquid-Phase Exfoliation of Phosphorene: Design Rules from Molecular Dynamics Simulations.
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