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Strain-Tuned Nodal Ring in Two-Dimensional Zn3C6S6 Monolayers
Journal of Nanomaterials ( IF 3.791 ) Pub Date : 2020-08-28 , DOI: 10.1155/2020/1378163
Jia-Qi Zong 1 , Wei-Xiao Ji 1 , Chang-Wen Zhang 1 , Ping Li 1 , Pei-Ji Wang 1
Affiliation  

The nodal ring material has recently attracted wide attention due to its singular properties and potential applications in spintronics. Here, two-dimensional Zn3C6S6 is calculated and discussed by using first-principle calculations. We found that two-dimensional Zn3C6S6 can generate a nodal ring at 10% compressive strain, and the existence of the ring is proved by a partial charge density map. And as the compressive strain increases, the nodal ring does not disappear. At the same time, the stability of the electron-orbit coupling to the nodal ring is applied. Our findings indicate that the two-dimensional Zn3C6S6 is promising in new electronic and spintronic applications.

中文翻译:

二维Zn3C6S6单层膜的应变调谐结环

节点环材料由于其独特的性能以及在自旋电子学中的潜在应用,最近引起了广泛的关注。在此,通过第一原理计算来计算和讨论二维Zn 3 C 6 S 6。我们发现二维Zn 3 C 6 S 6可以在10%的压缩应变下生成一个节点环,并且该环的存在由部分电荷密度图证明。并且随着压缩应变的增加,节点环不会消失。同时,施加了到节点环的电子轨道耦合的稳定性。我们的发现表明二维Zn 3 C 6 S 6 在新的电子和自旋电子应用中很有前途。
更新日期:2020-08-28
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