Centre for High Computing, CSIR-Central Leather Research Institute (CLRI), Sardar Patel Road, Adyar, Chennai, 600 020, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Chemphyschem. 2023 Jun 1;24(11):e202300035. doi: 10.1002/cphc.202300035. Epub 2023 Mar 28.
Generally, graphynes have been generated by the insertion of acetylenic content (-C≡C-) in the graphene network in different ratios. Also, several aesthetically pleasing architectures of two-dimensional (2D) flatlands have been reported with the incorporation of acetylenic linkers between the heteroatomic constituents. Prompted by the experimental realization of boron phosphide, which has provided new insights on the boron-pnictogen family, we have modelled novel forms of acetylene-mediated borophosphene nanosheets by joining the orthorhombic borophosphene stripes with different widths and with different atomic constituents using acetylenic linkers. Structural stabilities and properties of these novel forms have been assessed using first-principles calculations. Investigation of electronic band structure elucidates that all the novel forms show the linear band crossing closer to the Fermi level at Dirac point with distorted Dirac cones. The linearity in the hole and electronic bands impose the high Fermi velocity to the charge carriers close to that of graphene. Finally, we have also unravelled the propitious features of acetylene-mediated borophosphene nanosheets as anodes in Li-ion batteries.
通常情况下,通过在石墨烯网络中以不同比例插入炔烃内容(-C≡C-)来生成炔烃。此外,还报道了几种具有吸引力的二维(2D)平坦地形的美学建筑,其中在杂原子成分之间掺入了炔烃接头。受磷化硼的实验实现的启发,这为硼-磷族元素提供了新的见解,我们通过使用炔烃接头连接具有不同宽度和不同原子成分的正交磷烯条纹,模拟了新型乙炔介导的磷烯纳米片。使用第一性原理计算评估了这些新型形式的结构稳定性和性质。对电子能带结构的研究表明,所有新型形式都在狄拉克点附近具有更接近费米能级的线性能带交叉,具有扭曲的狄拉克锥。空穴和电子能带的线性使载流子的费米速度接近石墨烯。最后,我们还揭示了乙炔介导的磷烯纳米片作为锂离子电池阳极的有利特征。