Li Qian, Solomon Gemma C
Nano-Science Center and Department of Chemistry, University of Copenhagen, Universitetsparken 5, 2100 Copenhagen, Denmark.
Faraday Discuss. 2014;174:21-35. doi: 10.1039/c4fd00083h. Epub 2014 Oct 6.
Understanding electron transport across π-stacked systems can help to elucidate the role of intermolecular tunneling in molecular junctions and potentially with the design of high-efficiency molecular devices. Here we show how conjugation length and substituent groups influence the electron transport and thermoelectric response in the π-stacked structures by investigating five representative stacked molecular junctions. We found that a π-stacked system of two substituted anthracenes exhibits good thermopower and a high power factor, suggesting that increased conjugation can enhance the thermoelectric response. The fully eclipsed structure of quinhydrone exhibits a high power factor at the minimum energy structure and could thus be a better candidate in a thermoelectric device compared with the other π-stacked systems considered.
理解电子在π堆积体系中的传输有助于阐明分子结中分子间隧穿的作用,并有可能用于高效分子器件的设计。在此,我们通过研究五个具有代表性的堆积分子结,展示了共轭长度和取代基如何影响π堆积结构中的电子传输和热电响应。我们发现,两个取代蒽的π堆积体系表现出良好的热电势和高功率因数,这表明共轭的增加可以增强热电响应。醌氢醌的完全重叠结构在最低能量结构处表现出高功率因数,因此与其他考虑的π堆积体系相比,它可能是热电装置中更好的候选材料。