paper

Role of Pressure in the Growth of Hexagonal Boron Nitride Thin Films from Ammonia-Borane

arXiv:1605.06861 · doi:10.1021/acs.chemmater.6b00396

Abstract

We analyze the optical, chemical, and electrical properties of chemical vapor deposition (CVD) grown hexagonal boron nitride (h-BN) using the precursor ammonia-borane () as a function of background pressure (). Films grown at less than 2.0 Torr are uniform in thickness, highly crystalline, and consist solely of h-BN. At larger , with constant precursor flow, the growth rate increases, but the resulting h-BN is more amorphous, disordered, and bonded. We attribute these changes in h-BN grown at high pressure to incomplete thermolysis of the precursor from a passivated Cu catalyst. A similar increase in h-BN growth rate and amorphization is observed even at low if the partial pressure is initially greater than the background pressure at the beginning of growth. h-BN growth using the precursor reproducibly can give large-area, crystalline h-BN thin films, provided that the total pressure is under 2.0 Torr and the precursor flux is well-controlled.

45 pages including the supporting information, in print at Chemistry of Materials 2016