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Chemistry and electronic properties of ferromagnetic metal-organic semiconductor interfaces: Fe on CuPc

โœ Scribed by Aristov, V. Yu. ;Molodtsova, O. V. ;Ossipyan, Yu. A. ;Doyle, B. P. ;Nannarone, S. ;Knupfer, M.


Book ID
105365521
Publisher
John Wiley and Sons
Year
2009
Tongue
English
Weight
571 KB
Category
Article
ISSN
0031-8965

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โœฆ Synopsis


Abstract

The chemistry and electronic properties of the interfaces formed between the ferromagnetic metal (Fe) and the model organic semiconductor copper phthalocyanine are investigated in ultraโ€high vacuum conditions for the case of metal deposition onto the organic molecular thin film. The studies were performed by means of coreโ€level and valenceโ€band highโ€resolution photoemission electron spectroscopy (PES) as well as nearโ€edge Xโ€ray absorption fine structure using synchrotron radiation. Metal overlayer formation on the top of the organic semiconductor was observed without substantial penetration of deposited metal species into the organic film. At the thin interface layer the ferromagnetic metal shows strong chemical interaction with the nitrogen and carbon of the organic films. Moreover, our results infer that, as a consequence of Fe deposition onto CuPc, central copper atoms of the organic molecules at the interface are reduced from Cu(II) to Cu(I), while Fe atoms are oxidized and/or the ferromagnetic metal replaces this central Cu atom. Further optimization of such an interface is thus required to allow and/or facilitate the injection of spinโ€polarized carriers into organic semiconductors.


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