4.8 Article

Mechanical and Electrical Anisotropy of Few-Layer Black Phosphorus

期刊

ACS NANO
卷 9, 期 11, 页码 11362-11370

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.5b05151

关键词

black phosphorus; reflection difference microscopy; plasma trim; AFM bending; anisotropic conductance; anisotropic Young's modulus; breaking stress and strain

资金

  1. 111 Project [B07014]
  2. Tianjin Applied Basic Research and Advanced Technology [13JKYBJC37100]

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We combined reflection difference microscopy, electron transport measurements, and atomic force microscopy to characterize the mechanical and electrical anisotropy of few-layer black phosphorus. We were able to identify the lattice orientations of the two-dimensional material and construct suspended structures aligned with specific crystal axes. The approach allowed us to probe the anisotropic mechanical and electrical properties along each lattice axis in separate measurements. We measured the Young's modulus of few-layer black phosphorus to be 58.6 +/- 11.7 and 27.2 +/- 4.1 GPa in zigzag and armchair directions. The breaking stress scaled almost linearly with the Young's modulus and was measured to be 4.79 +/- 1.43 and 2.31 +/- 0.71 GPa in the two directions. We have also observed highly anisotropic transport behavior in black phosphorus and derived the conductance anisotropy to be 63.7%. The test results agreed well with theoretical predictions. Our work provided very valuable experimental data and suggested an effective characterization means for future studies on black phosphorus and anisotropic two-dimensional nanomaterials in general.

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