Twisted helical armchair graphene nanoribbons: mechanical and electronic properties

The European Physical Journal B(2021)

引用 2|浏览2
暂无评分
摘要
The Hydrogen and Fluorine planar armchairs graphene nanoribbons (H F AGNRs), subjected to twist deformation within fixed periodic boundary conditions. H-AGNRs is highly elastic in nature, though passivation with Fluorine does induce the plasticity when twisted beyond threshold torsional strain. This plasticity attributes to the wider bond length distribution suggests distortion of benzo-rings. The bandgap response to the effective strain of narrow GNRs N=6, 7 , and 8 get arranged as ( i ) monotonously increasing for q=0,2 and ( ii ) decreasing for q=1 ; here, q=mod( N,3 ) in effective strain space (θ^2^2) . The effective strain space is found to be more appropriate for gauging the response of torsional strain. This trend has also been observed for Fluorine passivated AGNRs; however, because of higher sensitive response to torsional strain, the bandgap of N= 7 F-AGNRs drops from E_g≃ 0.95eV to E_g≃ 0.05eV at extreme torsional strain forming Dirac cone at ±K allows dissipationless transport to charge carriers of high kinetic energy at low bias. Graphic abstract
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要