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Dependence of charge injection on temperature, electric field, and energetic disorder in an organic semiconductor

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PHYSICAL REVIEW LETTERS
卷 98, 期 6, 页码 -

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AMERICAN PHYSICAL SOC
DOI: 10.1103/PhysRevLett.98.066101

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In order to determine energetic disorder's role in facilitating charge injection from gold into a molecularly doped polymer, we have examined the dependence of current on the local electric field, measured using electric force microscopy, at temperatures ranging from 250 to 330 K. From these data we infer, in a single experiment, the temperature dependence of the main factors governing the injection current: the electric-field induced lowering of the image-potential barrier, the interfacial charge density, and the mobility. In this system, the Schottky effect is anomolously large, and the interfacial charge density is larger than expected and strikingly non-Arhennius. Our analysis indicates that these effects are all a consequence of the Gaussian density of states in the organic.

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