The atomic structures of boron carbide in the regime below ?13.3 at. % C (known as boron-very-rich boron carbide, BvrBC) have not previously been reported due to the complexity of the structure and bonding. We report here the atomistic crystal structures for stoichiometry B14C, with only 6.7 at. % C, predicted using quantum mechanics (QM) at the PBE level. We find that B14C consists of one B12 icosahedral cluster and one C–B–B chain per unit cell. The C–B–B chain can be linear or bent, leading to two different space groups for (B12)CBB. Our bonding analyses show that both structures satisfy the electron counting rule (Wade’s rule). However, the bent CBB chain which has lower crystal symmetry, leading to an energy substantially more stable (...