Foti Giuseppe, Vázquez Héctor
Institute of Physics, Academy of Sciences of the Czech Republic, Cukrovarnicka 10, Prague, Czech Republic.
Beilstein J Nanotechnol. 2017 Oct 2;8:2060-2068. doi: 10.3762/bjnano.8.206. eCollection 2017.
We study the role of an NH adsorbate on the current-induced heating and cooling of a neighboring carbene-based molecular circuit. We use first-principles methods of inelastic tunneling transport based on density functional theory and non-equilibrium Green's functions to calculate the rates of emission and absorbtion of vibrations by tunneling electrons, the population of vibrational modes and the energy stored in them. We find that the charge rearrangement resulting from the adsorbate gates the carbene electronic structure and reduces the density of carbene states near the Fermi level as a function of bias. These effects result in the cooling of carbene modes at all voltages compared to the "clean" carbene-based junction. We also find that the direct influence of adsorbate states is significantly smaller and tends to heat adsorbate vibrations. Our results highlight the important role of molecular adsorbates not only on the electronic and elastic transport properties but also on the current-induced energy exchange and stability under bias of single-molecule circuits.
我们研究了NH吸附物对相邻卡宾基分子电路中电流诱导加热和冷却的作用。我们使用基于密度泛函理论和非平衡格林函数的非弹性隧穿输运的第一性原理方法,来计算隧穿电子发射和吸收振动的速率、振动模式的占据情况以及存储在其中的能量。我们发现,吸附物引起的电荷重排控制着卡宾的电子结构,并随着偏压的变化降低了费米能级附近卡宾态的密度。与“清洁”的卡宾基结相比,这些效应导致在所有电压下卡宾模式的冷却。我们还发现,吸附物态的直接影响要小得多,并且倾向于加热吸附物的振动。我们的结果突出了分子吸附物不仅在电子和弹性输运性质方面,而且在单分子电路偏压下电流诱导的能量交换和稳定性方面的重要作用。