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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A family of all sp(2)-bonded carbon allotropes of topological semimetals with strain-robust nodal-lines
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A family of all sp(2)-bonded carbon allotropes of topological semimetals with strain-robust nodal-lines

机译:所有SP(2)型拓扑半碳的碳异滴系列的家庭,具有菌株稳健的卵石线

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We report on a family of all-sp(2) carbon allotropes constructed by interconnected screw dislocations with complementary chiralities through atomistic calculations. The carbon allotropes have lattice periodicities defined by the interspacing among screw dislocations and are shown to withstand an elastic stretch of over 90% along the direction of the dislocation axis. A subset of these allotropes exhibit interesting unclosed, topological nodal-lines near the Fermi level, while the other subset with a higher symmetry are topological semimetals with a nodal-loop at the Fermi level. Moreover, the topological semimetallicity in these allotropes is robust to an elastic stretch of up to 75% due to their unique symmetry, in contrast to a common view that a tensile strain tunes a topological material into a trivial semiconductor. Of relevance is that these allotropes are notably more stable than most of previously reported allotropes and likely to exist in specimens of detonation soot according to simulated X-ray diffraction patterns, suggesting the possibility of their experimental realizations. Our strategy for constructing functional 3D materials based on Riemann surfaces is by no means limited to carbon but applicable to other chemical elements and blends, notably P, B, BN and MoS2.
机译:我们通过原子计算报告通过与互连的手性构成的互联螺杆脱位构建的All-SP(2)碳异滴体。碳异滴级具有由螺杆位错的间隙定义的晶格周期,并且被示出沿脱位轴的方向承受90%以上的弹性拉伸。这些同种异物的子集表现出有趣的未缩减,在费米水平附近有趣的拓扑卵石线,而具有更高对称性的另一个子集是具有在费米水平的颗粒环的拓扑半定。此外,由于拉伸应变将拓扑材料调谐到琐碎的半导体中的公共视图,这些同种异体上的拓扑半金属在其唯一的对称性上具有高达75%的弹性拉伸,其具有高达75%的弹性延伸。相关性的是,这些同种异物比模拟的X射线衍射图案的爆炸烟灰标本中的大部分稳定性更稳定,这表明他们的实验实现的可能性。我们基于Riemann表面构建功能3D材料的策略绝不限于碳,而是适用于其他化学元素并混合,特别是P,B,BN和MOS2。

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