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  1. Friedrich-Alexander-Universität
  2. Naturwissenschaftliche Fakultät
  3. Department Physik
Friedrich-Alexander-Universität Chair of Experimental Physics
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Polymer surfaces graphitization by low-energy ion irradiation

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  • Graphene
  • Layered materials
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  • Polymer surfaces graphitization by low-energy ion irradiation
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Polymer surfaces graphitization by low-energy ion irradiation

Coverbild: Graphitized layers as suspended membranes show extraordinary mechanical stability and can be used in various MEMS.

Graphitized layers as suspended membranes show extraordinary mechanical stability and can be used in various MEMS.

Nearly any organic material can be graphitized by ion irradiation. We investigate the relationship between parameters of low-energy ion irradiation and properties of the graphitized surfaces.

Depending on the process parameters, the resulting graphitized layer can have different thickness between one and several tens of nanometers, can behave as an insulator or semimetal, and the type of conductance can be precisely controlled.

Further efforts are planned in order to improve the electrical properties of the graphitized films and to obtain control of the orientation of graphitic crystallites and of stress in the films.

Contact Persons:

  • Yury Koval
  • Janina Maultzsch

Participating Scientists:

  •  

Publications:

  • Koval Y.:
    Graphitization of polymer surfaces by scanning ion irradiation
    In: Applied Physics Letters 105 (2014), Article No.: 163108
    ISSN: 0003-6951
    DOI: 10.1063/1.4900642
Friedrich-Alexander-Universität Erlangen-Nürnberg
Chair of Experimental Physics (Prof. Dr. Janina Maultzsch)

Staudtstr. 7, B3
D-91058 Erlangen, Germany
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