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CHEMICAL AND ELECTRONIC ASPECTS OF METAL CONJUGATED POLYMER INTERFACES - IMPLICATIONS FOR ELECTRONIC DEVICES

机译:金属共轭聚合物界面的化学和电子方面-对电子设备的意义

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The chemical nature and the electronic structure of metal/conjugated polymer interfaces are investigated in the context of polymer based light-emitting diodes. We consider the interaction of low-workfunction metals (Al, Ca) with the surface of conjugated polymers or model oligomer molecules with a combined experimental and theoretical approach. The early stages of the interface formation are followed with X-ray and ultraviolet photoelectron spectroscopies and the experimental data are compared to the results of quantum chemical calculations. The reactions of Al and Ca with the organic surface are found to be fundamentally different: while the former forms new covalent bonds onto the polymer backbone, the latter tends to dope the conjugated system. Both types of reaction are expected to modify drastically the electronic properties of the polymer semiconductor. [References: 18]
机译:在基于聚合物的发光二极管的背景下研究了金属/共轭聚合物界面的化学性质和电子结构。我们考虑结合实验和理论方法,将低功函数金属(Al,Ca)与共轭聚合物或模型低聚物分子的表面相互作用。界面形成的早期阶段是用X射线和紫外光电子能谱仪进行的,并将实验数据与量子化学计算的结果进行了比较。发现Al和Ca与有机表面的反应有根本的不同:​​前者在聚合物主链上形成新的共价键,而后者则倾向于掺杂共轭体系。预计两种反应都会大大改变聚合物半导体的电子性能。 [参考:18]

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