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氧化锌量子点集合体中的长程输运:量子限制、库仑排斥和结构无序的影响。

Long-range transport in an assembly of ZnO quantum dots: the effects of quantum confinement, Coulomb repulsion and structural disorder.

作者信息

Roest Aarnoud L, Germeau Alexander, Kelly John J, Vanmaekelbergh Daniël, Allan Guy, Meulenkamp Eric A

机构信息

Debye Institute, Utrecht University, P.O. Box 80 000, 3508 TA Utrecht, The Netherlands.

出版信息

Chemphyschem. 2003 Sep 15;4(9):959-66. doi: 10.1002/cphc.200300696.

Abstract

We have studied the storage and long-range transport of electrons in a porous assembly of weakly coupled ZnO quantum dots permeated with an aqueous and a propylene carbonate electrolyte solution. The number of electrons per ZnO quantum dot is controlled by the electrochemical potential of the assembly; the charge of the electrons is compensated by ions present in the pores. We show with optical and electrical measurements that the injected electrons occupy the S, P, and D type conduction electron levels of the quantum dots; electron storage in surface states is not important. With this method of three-dimensional charge compensation, up to ten electrons per quantum-dot can be stored if the assembly is permeated with an aqueous electrolyte. The screening of the electron charge is less effective in the case of an assembly permeated with a propylene carbonate electrolyte solution. Long-range electron transport is studied with a transistor set-up. In the case of ZnO assemblies permeated with an aqueous electrolyte, two quantum regimes are observed corresponding to multiple tunnelling between the S orbitals (at a low occupation) and P orbitals (at a higher occupation). In a ZnO quantum-dot assembly permeated with a propylene carbonate electrolyte solution, there is a strong overlap between these two regimes.

摘要

我们研究了在充满水性和碳酸丙烯酯电解质溶液的弱耦合ZnO量子点多孔组件中电子的存储和长程传输。每个ZnO量子点的电子数由组件的电化学势控制;电子电荷由孔中存在的离子补偿。我们通过光学和电学测量表明,注入的电子占据量子点的S、P和D型传导电子能级;表面态中的电子存储并不重要。采用这种三维电荷补偿方法,如果组件充满水性电解质,每个量子点最多可存储十个电子。在充满碳酸丙烯酯电解质溶液的组件中,电子电荷的屏蔽效果较差。利用晶体管装置研究长程电子传输。在充满水性电解质的ZnO组件中,观察到两种量子态,分别对应于S轨道(低占据时)和P轨道(高占据时)之间的多次隧穿。在充满碳酸丙烯酯电解质溶液的ZnO量子点组件中,这两种量子态之间有很强的重叠。

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