论文标题

基于蒽分子的热电性能中的量子干扰和接触效应

Quantum Interference and Contact Effects in Thermoelectric Performance of Anthracene-Based Molecules

论文作者

Hamill, Joseph M., Ismael, Ali, Al-Jobory, Alaa, Bennett, Troy L. R., Alshahrani, Maryam, Wang, Xintai, Akers-Douglas, Maxwell, Wilkinson, Luke A., Robinson, Benjamin J., Long, Nicholas J., Lambert, Colin, Albrecht, Tim

论文摘要

我们报告了具有策略性选择的基于蒽的分子的单分子电子和热电学特性,其锚固组能够与贵金属底物结合,例如金和铂。具体而言,我们研究了不同的锚固组以及量子干扰对金/单分子/金连接的热电器的影响,并且通常在理论和实验之间找到良好的一致性。所有分子连接均显示出与相干传输和Fermi对齐一致的传输特性,该特性大约在HOMO/LUMO间隙中间。单分子结果与先前报道的薄膜数据一致,进一步支持这样的观点,即可以将分子设计考虑因素从单分子设备转换为多数分子设备。对于一个锚固组的组合,一个组的结合比另一个结合更强烈,而强锚组似乎主导了分子连接的热电行为。对于其他组合,电极材料的选择可以确定热电器的符号和幅度。这一发现对热电发电机设备的设计具有重要意义,在热电上,热电电流产生都需要N-和P型导体。

We report on the single-molecule electronic and thermoelectric properties of strategically chosen anthracene-based molecules with anchor groups capable of binding to noble metal substrates, such as gold and platinum. Specifically, we study the effect of different anchor groups, as well as quantum interference, on the electric conductance and the thermopower of gold/single-molecule/gold junctions and generally find good agreement between theory and experiment. All molecular junctions display transport characteristics consistent with coherent transport and a Fermi alignment approximately in the middle of the HOMO/LUMO gap. Single-molecule results are in agreement with previously reported thin-film data, further supporting the notion that molecular design considerations may be translated from the single- to the many-molecule devices. For combinations of anchor groups where one binds significantly more strongly to the electrodes than the other, the stronger anchor group appears to dominate the thermoelectric behaviour of the molecular junction. For other combinations, the choice of electrode material can determine the sign and magnitude of the thermopower. This finding has important implications for the design of thermoelectric generator devices, where both n- and p-type conductor are required for thermoelectric current generation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源