Scinovex
articleTop 1% cited

Phosphorene as a Superior Gas Sensor: Selective Adsorption and Distinct <i>I</i>–<i>V</i> Response

The Journal of Physical Chemistry Letters · 2014 · Vol. 5(15) · pp. 2675–2681
Liangzhi KouThomas FrauenheimChangfeng Chen

Abstract

Recent reports on the fabrication of phosphorene, that is, mono- or few-layer black phosphorus, have raised exciting prospects of an outstanding two-dimensional (2D) material that exhibits excellent properties for nanodevice applications. Here, we study by first-principles calculations the adsorption of CO, CO2, NH3, NO, and NO2 gas molecules on a monolayer phosphorene. Our results predict superior sensing performance of phosphorene that rivals or even surpasses that of other 2D materials such as graphene and MoS2. We determine the optimal adsorption positions of these molecules on the phosphorene and identify molecular doping, that is, charge transfer between the molecules and phosphorene, as the driving mechanism for the high adsorption strength. We further calculated the current-voltage (I-V) relation using the nonequilibrium Green's function (NEGF) formalism. The transport features show large (1-2 orders of magnitude) anisotropy along different (armchair or zigzag) directions, which is consistent with the anisotropic electronic band structure of phosphorene. Remarkably, the I-V relation exhibits distinct responses with a marked change of the I-V relation along either the armchair or the zigzag directions depending on the type of molecules. Such selectivity and sensitivity to adsorption makes phosphorene a superior gas sensor that promises wide-ranging applications.

2D Materials and ApplicationsMXene and MAX Phase MaterialsGas Sensing Nanomaterials and SensorsPhosphoreneZigzagAdsorptionMonolayerGrapheneMaterials scienceChemical physicsMoleculeAnisotropyNanotechnology

Funding

  • U.S. Department of Energy
  • Alexander von Humboldt-Stiftung
Citations
1,021
FWCI
35.86
field-weighted impact
References
23
Percentile
100%
vs. same field & year
Citations per year
References
Density-functional method for nonequilibrium electron transport
Physical review. B, Condensed matter · 2002 · 5,660 citations
Single-layer MoS2 transistors
Nature Nanotechnology · 2011 · 14,596 citations
Black phosphorus field-effect transistors
Nature Nanotechnology · 2014 · 8,248 citations
Detection of individual gas molecules adsorbed on graphene
Nature Materials · 2007 · 7,891 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.