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Phosphorene: Fabrication, Properties, and Applications

The Journal of Physical Chemistry Letters · 2015 · Vol. 6(14) · pp. 2794–2805
Liangzhi KouChangfeng ChenSean C. Smith

Abstract

Phosphorene, the single- or few-layer form of black phosphorus, was recently rediscovered as a two-dimensional layered material holding great promise for applications in electronics and optoelectronics. Research into its fundamental properties and device applications has since seen exponential growth. In this Perspective, we review recent progress in phosphorene research, touching upon topics on fabrication, properties, and applications; we also discuss challenges and future research directions. We highlight the intrinsically anisotropic electronic, transport, optoelectronic, thermoelectric, and mechanical properties of phosphorene resulting from its puckered structure in contrast to those of graphene and transition-metal dichalcogenides. The facile fabrication and novel properties of phosphorene have inspired design and demonstration of new nanodevices; however, further progress hinges on resolutions to technical obstructions like surface degradation effects and nonscalable fabrication techniques. We also briefly describe the latest developments of more sophisticated design concepts and implementation schemes that address some of the challenges in phosphorene research. It is expected that this fascinating material will continue to offer tremendous opportunities for research and development for the foreseeable future.

2D Materials and ApplicationsMXene and MAX Phase MaterialsPerovskite Materials and ApplicationsPhosphoreneFabricationNanotechnologyBlack phosphorusMaterials scienceElectronicsGrapheneEngineering physicsComputer scienceEngineering

Funding

  • U.S. Department of Energy
  • University of New South Wales
Citations
818
FWCI
36.81
field-weighted impact
References
118
Percentile
100%
vs. same field & year
Citations per year
References
Phosphorene Nanoribbons, Phosphorus Nanotubes, and van der Waals Multilayers
The Journal of Physical Chemistry C · 2014 · 616 citations
The growth and morphology of epitaxial multilayer graphene
Journal of Physics Condensed Matter · 2008 · 852 citations
Silicene field-effect transistors operating at room temperature
Nature Nanotechnology · 2015 · 1,623 citations
Phosphorene as a Superior Gas Sensor: Selective Adsorption and Distinct <i>I</i>–<i>V</i> Response
The Journal of Physical Chemistry Letters · 2014 · 1,021 citations
Ultrahigh electron mobility in suspended graphene
Solid State Communications · 2008 · 7,908 citations
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