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通过共价 B-F 键形成的用于聚合物电子学的化学固定的 p-n 异质结。

Chemically fixed p-n heterojunctions for polymer electronics by means of covalent B-F bond formation.

出版信息

Nat Mater. 2010 Mar;9(3):249-52. doi: 10.1038/nmat2623. Epub 2010 Jan 31.

Abstract

Widely used solid-state devices fabricated with inorganic semiconductors, including light-emitting diodes and solar cells, derive much of their function from the p-n junction. Such junctions lead to diode characteristics and are attained when p-doped and n-doped materials come into contact with each other. Achieving bilayer p-n junctions with semiconducting polymers has been hindered by difficulties in the deposition of thin films with independent p-doped and n-doped layers. Here we report on how to achieve permanently fixed organic p-n heterojunctions by using a cationic conjugated polyelectrolyte with fluoride counteranions and an underlayer composed of a neutral conjugated polymer bearing anion-trapping functional groups. Application of a bias leads to charge injection and fluoride migration into the neutral layer, where irreversible covalent bond formation takes place. After the initial charging and doping, one obtains devices with no delay in the turn on of light-emitting electrochemical behaviour and excellent current rectification. Such devices highlight how mobile ions in organic media can open opportunities to realize device structures in ways that do not have analogies in the world of silicon and promise new opportunities for integrating organic materials within technologies now dominated by inorganic semiconductors.

摘要

广泛应用于无机半导体的固态器件,包括发光二极管和太阳能电池,其功能很大程度上源于 p-n 结。这种结导致了二极管的特性,并且当 p 型掺杂和 n 型掺杂材料相互接触时就会形成 p-n 结。用半导体聚合物实现双层 p-n 结一直受到在具有独立的 p 型掺杂和 n 型掺杂层的薄膜沉积方面的困难的阻碍。在这里,我们报告了如何通过使用带有氟化物抗衡阴离子的阳离子共轭聚合物电解质和由带有阴离子俘获官能团的中性共轭聚合物组成的底层来实现永久固定的有机 p-n 异质结。施加偏压会导致电荷注入和氟化物迁移到中性层,在那里会发生不可逆的共价键形成。在初始充电和掺杂之后,得到的器件在开启发光电化学行为时没有延迟,并且具有出色的电流整流。这些器件突出了有机介质中的可移动离子如何为实现与硅世界没有类似之处的器件结构开辟机会,并为在现在由无机半导体主导的技术中整合有机材料提供了新的机会。

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