Composition-dependent photoluminescence and electronic structure of 2-dimensional borocarbonitrides, BC<sub><i>X</i></sub>N (<i>x</i>= 1, 5)
Materials Research Express 1(2): 025603-025603
Article 2014 English
Authors
KM
Kota Moses
SS
Sharmila N. Shirodkar
UW
Umesh V. Waghmare
Abstract
1 min read
Layered borocarbonitrides BCN and BC5N with a wide difference in composition have been prepared by the urea route. These 2D materials show a significant difference in the photoluminescence spectra, with BCN and BC5N showing maxima at 340 and 410 nm (3.61 and 3.0 eV), besides exhibiting different electrical resistivities. First-principles calculations show that BCN and BC5N are associated with different band gaps, the gap of the carbon-rich composition being lower. The change in the electronic structure and properties is related to the composition of BCX N i.e. the ordering of the graphene and BN domains.
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