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Black Phosphorus: Narrow Gap, Wide Applications

The Journal of Physical Chemistry Letters · 2015 · Vol. 6(21) · pp. 4280–4291
Andrés Castellanos-Gómez

Abstract

The recent isolation of atomically thin black phosphorus by mechanical exfoliation of bulk layered crystals has triggered an unprecedented interest, even higher than that raised by the first works on graphene and other two-dimensionals, in the nanoscience and nanotechnology community. In this Perspective, we critically analyze the reasons behind the surge of experimental and theoretical works on this novel two-dimensional material. We believe that the fact that black phosphorus band gap value spans over a wide range of the electromagnetic spectrum (interesting for thermal imaging, thermoelectrics, fiber optics communication, photovoltaics, etc.) that was not covered by any other two-dimensional material isolated to date, its high carrier mobility, its ambipolar field-effect, and its rather unusual in-plane anisotropy drew the attention of the scientific community toward this two-dimensional material. Here, we also review the current advances, the future directions and the challenges in this young research field.

2D Materials and ApplicationsMXene and MAX Phase MaterialsGraphene research and applicationsBlack phosphorusEngineering physicsNanotechnologyGrapheneMaterials sciencePhotovoltaicsExfoliation jointAmbipolar diffusionPhosphoreneOptoelectronics

Funding

  • Fundación BBVA
Citations
733
FWCI
37.23
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222
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References
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