Basch Harold, Ratner Mark A
Department of Chemistry, Bar-Ilan University, Ramat-Gan 52900, Israel.
J Chem Phys. 2005 Dec 15;123(23):234704. doi: 10.1063/1.1947747.
The geometric and electronic structural properties of symmetric and asymmetric metal cluster-molecule-cluster' complexes have been explored. The metals include Au, Ag, Pd, and Al, and both benzenedithiol and the three isometric forms of dicyanobenzene are included as bridging molecules. Calculated properties such as cluster-molecule interface geometry, electronic state, degree of metal --> molecule charge transfer, metal-molecule mixing in the highest occupied molecular orbital-lowest unoccupied molecular orbital (HOMO-LUMO) energy region, the HOMO-LUMO gap, cluster --> cluster' charge transfer as a function of external field strength and direction, and the form of the potential profile across such complexes have been examined. Attempts are made to correlate charge transport with the characteristics of the cluster-complex systems. Indications of rectification in complexes that are asymmetric in the molecule, clusters, and molecule-cluster interfaces are discussed. The results obtained here are only suggestive because of the limitations of the cluster-complex model as it relates to charge transport.
已对对称和不对称金属簇-分子-簇'配合物的几何和电子结构性质进行了探索。金属包括金、银、钯和铝,苯二硫醇和二氰基苯的三种异构体均作为桥连分子被纳入研究。已对诸如簇-分子界面几何结构、电子态、金属→分子电荷转移程度、最高占据分子轨道-最低未占据分子轨道(HOMO-LUMO)能量区域中的金属-分子混合情况、HOMO-LUMO能隙、作为外场强度和方向函数的簇→簇'电荷转移以及跨此类配合物的势分布形式等计算性质进行了研究。尝试将电荷传输与簇-配合物体系的特性相关联。讨论了在分子、簇和分子-簇界面不对称的配合物中整流的迹象。由于簇-配合物模型在与电荷传输相关方面存在局限性,此处获得的结果仅具有启发性。