Institut de Ciència de Materials de Barcelona (ICMAB-CSIC)/CIBER-BBN, Campus Universitari de UAB, 08193 Cerdanyola del Vallès (Barcelona), Spain.
Phys Chem Chem Phys. 2018 Oct 17;20(40):25638-25647. doi: 10.1039/c8cp05488f.
Dyads formed by an electron donor unit (D) covalently linked to an electron acceptor (A) by an organic bridge are promising materials as molecular rectifiers. Very recently, we have reported the charge transport measurements across self-assembled monolayers (SAMs) of two D-A systems consisting of the ferrocene (Fc) electron-donor linked to a polychlorotriphenylmethane (PTM) electron-acceptor in its non-radical (SAM 1) and radical (SAM 2) forms. Interestingly, we observed that the non-radical SAM 1 showed rectification behavior of 2 orders of magnitude higher than its radical analogue dyad 2. In order to study the influence of the donor unit on the transport properties, we report herein the synthesis and characterization of two new D-A SAMs in which the electron-donor Fc unit is replaced by a tetrathiafulvalene (TTF) moiety linked to the PTM unit in its non-radical (SAM 3) and radical (SAM 4) forms. The observed decrease in the rectification ratio and increased current density for TTF-PTM based SAMs 3 and 4 in comparison to Fc-PTM based SAMs 1 and 2 are explained, supported by theoretical calculations, by significant changes in the electronic and supramolecular structures.
由通过有机桥共价连接的电子给体单元 (D) 和电子受体 (A) 形成的二聚体是作为分子整流器的有前途的材料。最近,我们报道了通过自组装单层 (SAM) 的电荷传输测量,该 SAM 由两个 D-A 系统组成,这两个系统由电子给体二茂铁 (Fc) 与非自由基 (SAM 1) 和自由基 (SAM 2) 形式的多氯三苯甲烷 (PTM) 电子受体相连。有趣的是,我们观察到非自由基 SAM 1 表现出比其自由基类似物二聚体 2 高 2 个数量级的整流行为。为了研究供体单元对传输性质的影响,我们在此报告了两种新的 D-A SAM 的合成和表征,其中电子给体 Fc 单元被四硫富瓦烯 (TTF) 部分取代,该部分与 PTM 单元以非自由基 (SAM 3) 和自由基 (SAM 4) 形式相连。与基于 Fc-PTM 的 SAMs 1 和 2 相比,基于 TTF-PTM 的 SAMs 3 和 4 的整流比降低和电流密度增加,可以通过理论计算得到解释,这是由于电子和超分子结构的显著变化。