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Structural Phase Transformation in Strained Monolayer MoWSe2 Alloy.
Apte, Amey; Kochat, Vidya; Rajak, Pankaj; Krishnamoorthy, Aravind; Manimunda, Praveena; Hachtel, Jordan A; Idrobo, Juan Carlos; Syed Amanulla, Syed Asif; Vashishta, Priya; Nakano, Aiichiro; Kalia, Rajiv K; Tiwary, Chandra Sekhar; Ajayan, Pulickel M.
Afiliação
  • Apte A; Department of Materials Science and Nano Engineering , Rice University , Houston , Texas 77005 , United States.
  • Kochat V; Department of Materials Science and Nano Engineering , Rice University , Houston , Texas 77005 , United States.
  • Rajak P; Collaboratory for Advanced Computing and Simulations, Department of Physics and Astronomy, Department of Computer Science, Department of Chemical Engineering and Materials Science, and Department of Biological Sciences , University of Southern California , Los Angeles , California 90089-0242 , Unite
  • Krishnamoorthy A; Collaboratory for Advanced Computing and Simulations, Department of Physics and Astronomy, Department of Computer Science, Department of Chemical Engineering and Materials Science, and Department of Biological Sciences , University of Southern California , Los Angeles , California 90089-0242 , Unite
  • Manimunda P; Bruker Nano Surfaces , Eden Prairie , Minnesota 55344 , United States.
  • Hachtel JA; Center for Nanophase Materials Science , Oak Ridge National Laboratory , Oak Ridge , Tennessee 37831 , United States.
  • Idrobo JC; Center for Nanophase Materials Science , Oak Ridge National Laboratory , Oak Ridge , Tennessee 37831 , United States.
  • Syed Amanulla SA; Bruker Nano Surfaces , Eden Prairie , Minnesota 55344 , United States.
  • Vashishta P; Collaboratory for Advanced Computing and Simulations, Department of Physics and Astronomy, Department of Computer Science, Department of Chemical Engineering and Materials Science, and Department of Biological Sciences , University of Southern California , Los Angeles , California 90089-0242 , Unite
  • Nakano A; Collaboratory for Advanced Computing and Simulations, Department of Physics and Astronomy, Department of Computer Science, Department of Chemical Engineering and Materials Science, and Department of Biological Sciences , University of Southern California , Los Angeles , California 90089-0242 , Unite
  • Kalia RK; Collaboratory for Advanced Computing and Simulations, Department of Physics and Astronomy, Department of Computer Science, Department of Chemical Engineering and Materials Science, and Department of Biological Sciences , University of Southern California , Los Angeles , California 90089-0242 , Unite
  • Tiwary CS; Department of Materials Science and Nano Engineering , Rice University , Houston , Texas 77005 , United States.
  • Ajayan PM; Materials Science and Engineering , Indian Institute of Technology , Gandhinagar 382355 , Gujarat , India.
ACS Nano ; 12(4): 3468-3476, 2018 04 24.
Article em En | MEDLINE | ID: mdl-29481059
Two-dimensional (2D) materials exhibit different mechanical properties from their bulk counterparts owing to their monolayer atomic thickness. Here, we have examined the mechanical behavior of 2D molybdenum tungsten diselenide (MoWSe2) precipitation alloy grown using chemical vapor deposition and composed of numerous nanoscopic MoSe2 and WSe2 regions. Applying a bending strain blue-shifted the MoSe2 and WSe2 A1g Raman modes with the stress concentrated near the precipitate interfaces predominantly affecting the WSe2 modes. In situ local Raman measurements suggested that the crack propagated primarily thorough MoSe2-rich regions in the monolayer alloy. Molecular dynamics (MD) simulations were performed to study crack propagation in an MoSe2 monolayer containing nanoscopic WSe2 regions akin to the experiment. Raman spectra calculated from MD trajectories of crack propagation confirmed the emergence of intermediate peaks in the strained monolayer alloy, mirroring experimental results. The simulations revealed that the stress buildup around the crack tip caused an irreversible structural transformation from the 2H to 1T phase both in the MoSe2 matrix and WSe2 patches. This was corroborated by high-angle annular dark-field images. Crack branching and subsequent healing of a crack branch were also observed in WSe2, indicating the increased toughness and crack propagation resistance of the alloyed 2D MoWSe2 over the unalloyed counterparts.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2018 Tipo de documento: Article