Thanopulos Ioannis, Paspalakis Emmanuel, Yannopapas Vassilios
Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, Athens 11635, Greece.
Nanotechnology. 2008 Nov 5;19(44):445202. doi: 10.1088/0957-4484/19/44/445202. Epub 2008 Sep 26.
We introduce a novel molecular junction based on a thiol-functionalized porphyrin derivative with two almost energetically degenerate equilibrium configurations. We show that each equilibrium structure defines a pathway of maximal electric charge transfer through the molecular junction and that these two conduction pathways are spatially orthogonal. We further demonstrate computationally how to switch between the two equilibrium structures of the compound by coherent light. The optical switching mechanism is presented in the relevant configuration subspace of the compound, and the corresponding potential and electric dipole surfaces are obtained by ab initio methods. The laser-induced isomerization takes place in two steps in tandem, while each step is induced by a two-photon process. The effect of metallic electrodes on the electromagnetic irradiation driving the optical switching is also investigated. Our study demonstrates the potential for using thiol-functionalized porphyrin derivatives for the development of a light-controlled nanoscale current router.
我们介绍了一种基于硫醇官能化卟啉衍生物的新型分子结,它具有两种能量几乎简并的平衡构型。我们表明,每种平衡结构都定义了一条通过分子结的最大电荷转移途径,并且这两条传导途径在空间上是正交的。我们进一步通过计算证明了如何通过相干光在该化合物的两种平衡结构之间进行切换。在化合物的相关构型子空间中呈现了光开关机制,并通过从头算方法获得了相应的势能和电偶极矩表面。激光诱导的异构化以串联的两步进行,而每一步都是由双光子过程诱导的。还研究了金属电极对驱动光开关的电磁辐射的影响。我们的研究证明了使用硫醇官能化卟啉衍生物开发光控纳米级电流路由器的潜力。