Pei Qing-Xiang, Zhang Xiaoliang, Ding Zhiwei, Zhang Ying-Yan, Zhang Yong-Wei
Institute of High Performance Computing, A*STAR, Singapore 138632, Singapore.
Phys Chem Chem Phys. 2017 Jul 14;19(26):17180-17186. doi: 10.1039/c7cp02553j. Epub 2017 Jun 22.
Phosphorene, a new two-dimensional (2D) semiconducting material, has attracted tremendous attention recently. However, its structural instability under 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 the 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 the graphene substrate. Our findings have an important meaning for the practical applications of phosphorene in nanodevices.
磷烯是一种新型二维(2D)半导体材料,近年来备受关注。然而,其在环境条件下的结构不稳定性对其实际应用构成了巨大挑战。解决该问题的一种可能方法是用更稳定的二维材料(如石墨烯)包裹磷烯,形成范德华异质结构。在本研究中,通过分子动力学模拟,我们表明磷烯/石墨烯异质结构中磷烯的热稳定性可显著提高。通过将磷烯夹在两层石墨烯片之间,其热稳定温度提高了150 K。我们进一步研究了磷烯的热输运性质,令人惊讶地发现,磷烯/石墨烯异质结构中磷烯的面内热导率远高于独立的磷烯,净增加了20% - 60%。这种热导率的惊人增加源于声子群速度的增加以及磷烯与石墨烯衬底之间极强的声子耦合。我们的研究结果对磷烯在纳米器件中的实际应用具有重要意义。