Simón-Manso Yamil, Gonzalez Carlos, Mujica Vladimiro, Aray Yosslen, Marquez Manuel
Computational Chemistry Group, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
Ann N Y Acad Sci. 2003 Dec;1006:68-81. doi: 10.1196/annals.1292.004.
Although very few measurements have appeared in the open literature and there seems to be a controversy about the existence of the NDR phenomenon in molecules, the prospects of building such systems have attracted significant attention. In the work reported in this paper we used a model based on DFT calculations of the electronic structure of the 2'-amino-4,4'-di(ethynylphenyl)-5'-nitro-1-benzenethiolate molecule (previously reported to exhibit NDR behavior) in a capacitor-like electric field that mimics the potential spatial profile of the junction. Our results suggest that in these systems, there seems to be a correlation between a substantial charge density rearrangement of the neutral bridge at a threshold voltage and the NDR behavior observed in previous experiments. Our results highlight the importance of inclusion of the field in the study of electrified interfaces. We applied this model to a fluorine-substituted conjugated diethynylphenyl molecule and found that these calculations predict similar behavior. Results based on extended system calculations, including electrode-molecule interactions, confirm the validity of the model based on the isolated molecule and suggest the use of these simple models to rationally design molecular devices with similar switching characteristics.
尽管公开文献中出现的测量数据非常少,而且关于分子中负微分电阻(NDR)现象的存在似乎存在争议,但构建此类系统的前景已引起了广泛关注。在本文报道的工作中,我们使用了一个模型,该模型基于对2'-氨基-4,4'-二(乙炔基苯基)-5'-硝基-1-苯硫醇盐分子(先前报道具有NDR行为)在类似电容器的电场中的电子结构进行密度泛函理论(DFT)计算,该电场模拟了结的潜在空间分布。我们的结果表明,在这些系统中,中性桥在阈值电压下的大量电荷密度重排与先前实验中观察到的NDR行为之间似乎存在相关性。我们的结果突出了在带电界面研究中考虑电场的重要性。我们将此模型应用于氟取代的共轭二乙炔基苯基分子,发现这些计算预测了类似的行为。基于包括电极-分子相互作用在内的扩展系统计算结果,证实了基于孤立分子的模型的有效性,并建议使用这些简单模型来合理设计具有类似开关特性的分子器件。