For boron-doped graphene, you may find many theoretical works in literature:
1) Panchakarla et al, Synthesis, Structure and Properties of Boron and Nitrogen Doped Graphene,
http://arxiv.org/abs/0902.3077 or Advanced Materials, Volume 21, Issue 46, pages 4726–4730, December 11, 2009
2) Yu et al, Electronic Properties of Nitrogen-/Boron-Doped, Graphene Nanoribbons With Armchair Edges, IEEE TRANSACTIONS ON NANOTECHNOLOGY, VOL. 9, NO. 1, JANUARY 2010
3) Martins et al, Electronic and Transport Properties of Boron-Doped Graphene Nanoribbons, Phys. Rev. Lett. 98, 196803 (2007)
4) Wu e tal, Light non-metallic atom (B, N, O and F)-doped graphene: a first-principles study, 2010 Nanotechnology 21, 505202
...
From these articles, you can catch some basic knowledges of the boron-doped graphene and these will be very helpful to analyze your results.
Basically, boron doping in graphene will introduce hole, namely, it is hole doping. Compared with the pure armchair graphene nanoribbon, the Fermi level is shifted down in the B-doped armchair graphene nanoribbon and the calculated band structure shows a metallic behavior.