Wang Zhiqiang, Lü Tie-Yu, Wang Hui-Qiong, Feng Yuan Ping, Zheng Jin-Cheng
Department of Physics, and Collaborative Innovation Center for Optoelectronic Semiconductors and Efficient Devices, Xiamen University, Xiamen, 361005, China.
Xiamen University Malaysia, 439000, Sepang, Selangor, Malaysia.
Sci Rep. 2017 Apr 4;7(1):609. doi: 10.1038/s41598-017-00667-x.
New crystal structures of fully hydrogenated borophene (borophane) have been predicted by first principles calculation. Comparing with the chair-like borophane (C-boropane) that has been reported in literature, we obtained four new borophane conformers with much lower total-energy. The most stable one, washboard-like borophane (W-borophane), has energy about 113.41 meV/atom lower than C-borophane. In order to explain the relative stability of different borophane conformers, the atom configuration, density of states, charge transfer, charge density distribution and defect formation energy of B-H dimer have been calculated. The results show that the charge transfer from B atoms to H atoms is crucial for the stability of borophane. In different borophane conformers, the bonding characteristics between B and H atoms are similar, but the B-B bonds in W-borophane are much stronger than that in C-borophane or other structures. In addition, we examined the dynamical stability of borophane conformers by phonon dispersions and found that the four new conformers are all dynamically stable. Finally the mechanical properties of borophane conformers along an arbitrary direction have been discussed. W-borophane possesses unique electronic structure (Dirac cone), good stability and superior mechanical properties. W-borophane has broad perspective for nano electronic device.
通过第一性原理计算预测了完全氢化硼烯(硼烷)的新晶体结构。与文献中报道的椅状硼烷(C-硼烷)相比,我们获得了四个总能量低得多的新硼烷构象异构体。最稳定的一种,搓衣板状硼烷(W-硼烷),其能量比C-硼烷低约113.41 meV/原子。为了解释不同硼烷构象异构体的相对稳定性,计算了B-H二聚体的原子构型、态密度、电荷转移、电荷密度分布和缺陷形成能。结果表明,从B原子到H原子的电荷转移对硼烷的稳定性至关重要。在不同的硼烷构象异构体中,B和H原子之间的键合特征相似,但W-硼烷中的B-B键比C-硼烷或其他结构中的B-B键强得多。此外,我们通过声子色散研究了硼烷构象异构体的动力学稳定性,发现这四个新的构象异构体都是动力学稳定的。最后讨论了硼烷构象异构体沿任意方向的力学性能。W-硼烷具有独特的电子结构(狄拉克锥)、良好的稳定性和优异的力学性能。W-硼烷在纳米电子器件方面具有广阔的前景。