Projects funded by the NCN


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Study of mechanical and electric properties of thin organic films on ion beam modified semiconductors - influence of the substrate and ambient conditions on the stability and morphology of parahexaphenyl (6P) and pentacene (5A) structures.

2016/21/N/ST5/01305

Keywords:

TiO2(110) thin organic films stability surface morphology parahexaphenyl pentacene

Descriptors:

  • ST5_3: Surface modification
  • ST5_4: Thin films
  • ST5_1: Structural properties of materials

Panel:

ST5 - Materials: materials synthesis, structure-properties relations, advanced and functional materials with designed properties, (macro)molecular architecture, material engineering

Host institution :

Uniwersytet Jagielloński, Wydział Fizyki, Astronomii i Informatyki Stosowanej

woj. małopolskie

Other projects carried out by the institution 

Principal investigator (from the host institution):

Konrad Szajna 

Number of co-investigators in the project: 2

Call: PRELUDIUM 11 - announced on 2016-03-15

Amount awarded: 49 980 PLN

Project start date (Y-m-d): 2017-03-15

Project end date (Y-m-d): 2018-03-14

Project duration:: 12 months (the same as in the proposal)

Project status: Project settled

Project description

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Note - project descriptions were prepared by the authors of the applications themselves and placed in the system in an unchanged form.

Information in the final report

  • Publication in academic press/journals (2)
  1. Initial stage of para-hexaphenyl thin film growth controlled by step structure of ion beam modified TiO2(110) surface
    Authors:
    K. Szajna, M. Kratzer, W. Belza, A. Hinaut, D. Wrana, T. Glatzel, C. Teichert, F. Krok
    Academic press:
    The Journal of Physical Chemistry (rok: 2019, tom: brak, strony: brak), Wydawca: ACS Publications
    Status:
    Submitted
  2. Fabrication ion bombardment induced rippled TiO2 surfaces to influence subsequent organic thin film growth
    Authors:
    M. Kratzer, K. Szajna, D. Wrana, W. Bełza, F. Krok, C. Teichert
    Academic press:
    Journal of Physics: Condensed Matter (rok: 2018, tom: 30, strony: 283001-283013), Wydawca: IOP Publishing
    Status:
    Published
    DOI:
    10.1088/1361-648X/aac758 - link to the publication