Catalan Institute of Nanotechnology (ICN), UAB Campus, E-08193 Barcelona, Spain.
Nat Commun. 2011 Oct 4;2:490. doi: 10.1038/ncomms1497.
Advances in molecular electronics depend on the ability to control the charge and spin of single molecules at the interface with a metal. Here we show that bonding of metal-organic complexes to a metallic substrate induces the formation of coupled metal-ligand spin states, increasing the spin degeneracy of the molecules and opening multiple spin relaxation channels. Scanning tunnelling spectroscopy reveals the sign and magnitude of intramolecular exchange coupling as well as the orbital character of the spin-polarized molecular states. We observe coexisting Kondo, spin, and vibrational inelastic channels in a single molecule, which lead to pronounced intramolecular variations of the conductance and spin dynamics. The spin degeneracy of the molecules can be controlled by artificially fabricating molecular clusters of different size and shape. By comparing data for vibronic and spin-exchange excitations, we provide a positive test of the universal scaling properties of inelastic Kondo processes having different physical origin.
分子电子学的进展取决于在与金属的界面处控制单个分子的电荷和自旋的能力。在这里,我们表明,金属有机配合物与金属基底的键合诱导了耦合的金属-配体自旋态的形成,增加了分子的自旋简并度并开辟了多个自旋弛豫通道。扫描隧道光谱揭示了分子内交换耦合的符号和大小以及自旋极化分子态的轨道特性。我们在单个分子中观察到共存的 Kondo、自旋和振动非弹性通道,这导致电导和自旋动力学的明显的分子内变化。通过人为制造不同尺寸和形状的分子簇,可以控制分子的自旋简并度。通过比较振子和自旋交换激发的数据,我们对具有不同物理起源的非弹性 Kondo 过程的普遍标度性质提供了一个积极的测试。