Thermal stability and thermal conductivity of phosphorene in phosphorene/graphene van der Waals heterostructures

Qing-Xiang Pei, Xiaoliang Zhang, Zhiwei Ding, Ying-Yan Zhang, Yong-Wei Zhang

Research output: Contribution to journalArticlepeer-review

46 Citations (Scopus)

Abstract

Phosphorene, a new two-dimensional (2D) semiconducting material, has attracted tremendous attention recently. However, its structural instability at ambient conditions poses a great challenge to its practical applications. A possible solution for this problem is to encapsulate phosphorene with more stable 2D materials, such as graphene, forming van der Waals heterostructures. In this study, using molecular dynamics simulations, we show that the thermal stability of phosphorene in phosphorene/graphene heterostructures can be enhanced significantly. By sandwiching phosphorene between two graphene sheets, its thermally stable temperature is increased by 150 K. We further study the thermal transport properties of phosphorene and find surprisingly that the in-plane thermal conductivity of phosphorene in phosphorene/graphene heterostructures is much higher than that of free-standing one, with a net increase of 20-60%. This surprising increase in thermal conductivity arises from the increase in phonon group velocity and the extremely strong phonon coupling between phosphorene and graphene substrate. Our findings have important meaning for the practical applications of phosphorene in nanodevices.
Original languageEnglish
Pages (from-to)17180-17186
Number of pages7
JournalPhysical Chemistry Chemical Physics
Volume19
DOIs
Publication statusPublished - 2017

Keywords

  • heterostructures
  • phosphorene
  • stability
  • thermal conductivity

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