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Architecture with designer atoms: Simple theoretical considerations

机译:具有设计者原子的建筑:简单的理论考虑

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The distinct electronic states of assemblies of metallic quantum dots are discussed in a simple approximation where each dot is mimicked as an "atom" that carries one valence electron. Because of their large size, the charging energy of the dots. I = energy required to add another electron, is much smaller than for ordinary atoms. The Coulomb blocking of charge migration is therefore easier to overcome. For the theory, however, this is a challenge. because ionic states, which are typically higher in energy, come down, so the density of electronic states is high, and special methods need to be adapted. Quantum dots are prepared by wet chemical methods and accordingly are not quite identical. They will have a size distribution that can be narrow (when the dots can be assembled into an ordered array) or broad. Other sources of disorder are packing imperfections, which are characteristic of a wider size distribution, ligand deformations. and chemical uneven- ness. Two experimental control parameters are the size of the dots and the spacing between them. we discuss the combined effects of the low charging energy and disorder and examine the distinct electronic phases that can be realized.
机译:以简单的近似方式讨论了金属量子点组件的不同电子态,其中每个点都被模拟为带有一个价电子的“原子”。由于其尺寸大,点的充电能量大。 I =添加另一个电子所需的能量,比普通原子小得多。因此,电荷迁移的库仑阻塞更容易克服。然而,对于理论而言,这是一个挑战。因为通常能量较高的离子态会下降,所以电子态的密度很高,因此需要采用特殊的方法。量子点是通过湿化学方法制备的,因此并不完全相同。它们的大小分布可以窄(当点可以组装成有序阵列时)或宽。其他混乱的根源是堆积缺陷,其是更广泛的尺寸分布,配体变形的特征。和化学不均匀性。两个实验控制参数是点的大小和它们之间的间距。我们讨论了低充电能量和无序的综合影响,并研究了可以实现的独特电子相。

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