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费米能级处的表面态密度增加有利于单分子结中的电子输运。

Increased Surface Density of States at the Fermi Level for Electron Transport Across Single-Molecule Junctions.

机构信息

Department of Chemistry and Center for Emerging Materials and Advanced Devices, National Taiwan University, Taipei, 10617, Taiwan.

Graduate Institute of Photonics and Optoelectronics, National Taiwan University, Taipei, 10617, Taiwan.

出版信息

Angew Chem Int Ed Engl. 2023 Feb 1;62(6):e202214963. doi: 10.1002/anie.202214963. Epub 2022 Dec 29.

Abstract

Fermi's golden rule, a remarkable concept for the transition probability involving continuous states, is applicable to the interfacial electron-transporting efficiency via correlation with the surface density of states (SDOS). Yet, this concept has not been reported to tailor single-molecule junctions where gold is an overwhelmingly popular electrode material due to its superior amenability in regenerating molecular junctions. At the Fermi level, however, the SDOS of gold is small due to its fully filled d-shell. To increase the electron-transport efficiency, herein, gold electrodes are modified by a monolayer of platinum or palladium that bears partially filled d-shells and exhibits significant SDOS at the Fermi energy. An increase by 2-30 fold is found for single-molecule conductance of α,ω-hexanes bridged via common headgroups. The improved junction conductance is attributed to the electrode self-energy which involves a stronger coupling with the molecule and a larger SDOS participated by d-electrons at the electrode-molecule interfaces.

摘要

费米的黄金法则,一个涉及连续态跃迁概率的卓越概念,可通过与态密度(SDOS)的表面相关联,应用于界面电子输运效率。然而,由于金在再生分子结方面的优异可操作性,使其成为一种非常流行的电极材料,因此这个概念尚未被报道应用于单分子结。然而,由于金的 d 壳层完全填充,在费米能级处,金的 SDOS 很小。为了提高电子输运效率,本文通过单层铂或钯来修饰金电极,这些电极具有部分填充的 d 壳层,并且在费米能级处表现出显著的 SDOS。通过常见的头基桥接的α,ω-己烷的单分子电导增加了 2-30 倍。改进后的结电导归因于电极自能,它涉及与分子更强的耦合以及在电极-分子界面处由 d 电子参与的更大的 SDOS。

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