paper

Two-dimensional Boron Monosulfides: Semiconducting and Metallic Polymorphs

arXiv:1803.03459 · doi:10.1063/5.0006059

Abstract

The typical two-dimensional semiconductors, group \uppercase\expandafter{\romannumeral3A} chalcogenides, have garnered tremendous interest for their outstanding electronic, mechanical, and chemical properties. However, so far, there have been almost no reports on boron monosulfides (BS) binary material. Here, four two-dimensional BS sheets, namely the -, -, -, and -BS sheets, are proposed and discussed from calculations. State-of-the-art first-principles calculations reveal all these structures are thermally and dynamically stable, indicating the potential for successful experimental synthesis. Especially, for -BS, it has a calculated exfoliation energy of 0.96 J m, suggesting the preparation of -BS is feasible by the exfoliation of bulk rhombohedral-BS. Our results show that -, -, -BS are semiconductors, whereas -BS is a metallic system. Remarkably, our calculations indicate that -BS is a superconductor with a large electron-phonon coupling ( = 1.51) leading a high superconducting critical temperature ( 21.56 K), which is the first report of intrinsic superconducting property among all two-dimensional group \uppercase\expandafter{\romannumeral3A} chalcogenides. The desired mechanical and electronic properties render the BS sheets as the promising two-dimensional materials for future applications in nanoelectronics.

7pages, 6 figures

Two-dimensional Boron Monosulfides: Semiconducting and Metallic Polymorphs · wovepaper