Li Jian-Hua, Guo Yan-Dong, Zeng Hong-Li, Mou Xin-Yi, Yan Xiao-Hong
College of Electronic and Optical Engineering, Nanjing University of Posts and Telecommunications, Nanjing 210023, China.
College of Natural Science, Nanjing University of Posts and Telecommunications, Nanjing 210046, China and Key Laboratory of Radio Frequency and Micro-Nano Electronics of Jiangsu Province, Nanjing 210023, China.
Phys Chem Chem Phys. 2019 Jul 17;21(28):15623-15629. doi: 10.1039/c9cp02521a.
Unlike MoS2, single-layered Ag2S nanoribbons (Ag2SNRs) exhibit a nonmetal-shrouded and a zigzag-shaped buckling structure and possess two distinct edges, S- or Ag-terminated ones. By performing first principle calculations, the spin-dependent electron transport of Ag2SNRs in a ferromagnetic state has been investigated. It is found that the SS- and AgAg-terminated Ag2SNRs exhibit semi-metallic characteristics, but with opposite spin-polarized directions. And AgS-terminated ones show metallic characteristics, but with completely spin-unpolarized transmission. That is to say, all three states, i.e., spin up polarized, spin down polarized and spin unpolarized ones, could be achieved by modulating the edge geometry. Further analysis shows that, the spatial separation on edges of the energy states with different spins around EF is responsible for the switch in the three states. The system could operate as a dual spin-filter, and the direction of the spin polarization can be switched by the edge morphology. Furthermore, calculations show that such a phenomenon is robust to the width of the ribbon and strain, showing great application potential.
与二硫化钼不同,单层硫化银纳米带(Ag2SNRs)呈现出一种非金属包覆且呈锯齿状的屈曲结构,并具有两种不同的边缘,即硫(S)端或银(Ag)端边缘。通过进行第一性原理计算,研究了处于铁磁态的Ag2SNRs的自旋相关电子输运。研究发现,硫端和银端的Ag2SNRs呈现出半金属特性,但自旋极化方向相反。而银硫(AgS)端的Ag2SNRs则呈现出金属特性,但具有完全非自旋极化的传输。也就是说,通过调制边缘几何结构,可以实现三种状态,即自旋向上极化、自旋向下极化和非自旋极化状态。进一步分析表明,费米能级(EF)附近不同自旋的能态在边缘处的空间分离是导致这三种状态转变的原因。该系统可作为双自旋过滤器运行,并且自旋极化方向可通过边缘形态进行切换。此外,计算表明这种现象对于纳米带的宽度和应变具有鲁棒性,显示出巨大的应用潜力。