2014
DOI: 10.1002/adma.201305414
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Quantitative Femtosecond Charge Transfer Dynamics at Organic/Electrode Interfaces Studied by Core‐Hole Clock Spectroscopy

Abstract: Organic semiconductor materials have important applications in organic electronics and other novel hybrid devices. In these devices, the transport of charge carriers across the interfaces between organic molecules and electrodes plays an important role in determining the device performance. Charge transfer dynamics at the organic/electrode interface usually occurs at the several femtoseconds timescale, and quantitative charge transfer dynamics data can been inferred using synchrotron-based core-hole clock (CHC… Show more

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Cited by 33 publications
(34 citation statements)
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“…the empty conduction band of a solid (Fig. 1b) and 1h final states result [1][2][3][4]. If core decay and charge delocalization occur on similar time scales, the spectrum shows a mixture of both (Fig.…”
Section: Introduction: Core-hole-clock Basicsmentioning
confidence: 94%
See 4 more Smart Citations
“…the empty conduction band of a solid (Fig. 1b) and 1h final states result [1][2][3][4]. If core decay and charge delocalization occur on similar time scales, the spectrum shows a mixture of both (Fig.…”
Section: Introduction: Core-hole-clock Basicsmentioning
confidence: 94%
“…If core decay and charge delocalization occur on similar time scales, the spectrum shows a mixture of both (Fig. 1b) [1][2][3][4]. Apart from a reduced spectator shift by different extra-atomic screening of the 2h and the effective one hole states ( Fig.…”
Section: Introduction: Core-hole-clock Basicsmentioning
confidence: 94%
See 3 more Smart Citations