Kirchberg Henning, Nitzan Abraham
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.
J Chem Phys. 2022 Mar 7;156(9):094306. doi: 10.1063/5.0086319.
We consider a molecular junction immersed in a solvent where the electron transfer is dominated by Marcus-type steps. However, the successive nature of the charge transfer through the junction does not imply that the solvent reaches thermal equilibrium throughout the transport. In our previous work [Kirchberg et al., J. Phys. Chem. Lett. 11, 1729 (2020)], we have determined the nonequilibrium distribution of the solvent where its dynamics, expressed by a friction, is considered in two limiting regimes of fast and slow solvent relaxation. In dependence of the nonequilibrium solvent dynamics, we investigate now the electrical, thermal, and thermoelectric properties of the molecular junction. We show that by suitable tuning of the friction, we can reduce the heat dissipation into the solvent and enhance the heat transfer between the electrodes. Interestingly, we find that the Seebeck coefficient grows significantly by adapting the solvent friction in both regimes.
我们考虑一个浸没在溶剂中的分子结,其中电子转移由马库斯型步骤主导。然而,通过结的电荷转移的连续性质并不意味着溶剂在整个传输过程中达到热平衡。在我们之前的工作[Kirchberg等人,《物理化学快报》11,1729(2020)]中,我们确定了溶剂的非平衡分布,其中其动力学(由摩擦力表示)在快速和缓慢溶剂弛豫的两个极限区域中进行了考虑。根据非平衡溶剂动力学,我们现在研究分子结的电学、热学和热电性质。我们表明,通过适当调节摩擦力,可以减少向溶剂中的热耗散并增强电极之间的热传递。有趣的是,我们发现通过在两种情况下调整溶剂摩擦力,塞贝克系数会显著增加。