Xu Xiaodong, Li Weiqi, Zhou Xin, Wang Qiang, Feng Jikang, Tian Wei Quan, Jiang Yongyuan
Department of Physics, Harbin Institute of Technology, Harbin, 150001, P. R. China.
Institute of Theoretical and Simulational Chemistry, Academy of Fundamental and Interdisciplinary Sciences, Harbin Institute of Technology, Harbin, 150001, P. R. China.
Phys Chem Chem Phys. 2016 Feb 7;18(5):3765-71. doi: 10.1039/c5cp06726j.
The electronic transport properties of carbohelicenes and heterohelicenes absorbed between two metal electrodes have been investigated by using the nonequilibrium Green's function in combination with the density function theory. The transport properties of the molecular junctions are mainly dependent on the nature of spiral molecules. The detailed analyses of the transmission spectra, the energy levels as well as the spatial distribution of molecular projected self-consistent Hamiltonian explain how the geometry of molecules affects the intra-molecular electronic coupling. The spiral current in the configurations can be achieved by tuning the outer edge states of spiral-shaped molecules. Furthermore, the symmetric current-voltage characteristics are investigated with the bias changing for all devices as well as an negative differential resistance behavior is observed.
利用非平衡格林函数结合密度泛函理论,研究了吸附在两个金属电极之间的碳螺旋烯和杂螺旋烯的电子输运性质。分子结的输运性质主要取决于螺旋分子的性质。对透射光谱、能级以及分子投影自洽哈密顿量的空间分布进行详细分析,解释了分子几何结构如何影响分子内电子耦合。通过调节螺旋形分子的外边缘态,可以实现构型中的螺旋电流。此外,研究了所有器件在偏压变化时的对称电流 - 电压特性,并观察到负微分电阻行为。