dr hab. inż. Waldemar Stampor | Gdańsk University of Technology

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dr hab. inż. Waldemar Stampor

Contact:

email:
waldek@mif.pg.gda.pl
website:
https://mostwiedzy.pl/waldemar-stampor,3577-1

Positions:

Associate professor

workplace:
Instytut Fizyki i Informatyki Stosowanej
Gmach Główny pokój 108 A
phone:
(58) 347 27 04

Functions:

Head of Section

dr hab. inż. Waldemar Stampor

Publications:

  1. Publication

    - Scientific Reports - Year 2025

    Comprehensive characterization of the lowest energy electronic excited states for mono- and binuclear Ru(II) complexes containing bipyridine ligands has been performed by electroabsorption (EA) spectroscopy. The EA spectra of Ru complexes sensitizing a TiO2 semiconductor were compared with the spectra of these complexes in the form of solid neat films, both of which parametrized within the Liptay theory. The extracted values of...

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  2. Publication

    - MOLECULES - Year 2025

    Adsorption of mononuclear tris(bipyridine) ruthenium(II) complexes and binuclear tris(bipyridine) ruthenium(II) complexes equipped with carboxyl groups (-COOH) on the (111) surface of TiO2 crystal in anatase form was modeled using Monte Carlo simulations, applying the Universal force field. It was shown that the adsorption efficiency of the ruthenium-based dyes on the TiO2 surface depends on the position of the anchoring -COOH...

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  3. Publication

    - Scientific Reports - Year 2023

    The relatively low photon-to-current conversion efficiency of dye-sensitized solar cells is their major drawback limiting widespread application. Light harvesting, followed by a series of electron transfer processes, is the critical step in photocurrent generation. An in-depth understanding and fine optimization of those processes are crucial to enhance cell performance. In this work, we synthesize two new bi-ruthenium sensitizers...

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  4. Publication

    - Materials - Year 2022

    We present the electric field-induced absorption (electroabsorption, EA) spectra of the solid neat films of tris(bipyridine) Ru(II) complexes, which were recently functionalized in our group as photosensitizers in dye-sensitized solar cells, and we compare them with the results obtained for an archetypal [Ru(bpy)3]2+ ion (RBY). We argue that it is difficult to establish a unique set of molecular parameter values by discrete parametrization...

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  5. Publication
    • O. Korolevych
    • M. Zalas
    • W. Stampor
    • A. H. Kassiba
    • M. Makowska-janusik

    - SOLAR ENERGY MATERIALS AND SOLAR CELLS - Year 2021

    The present work aimed to find the answer how does the isomerization of the Ru based dyes affect the overall photon-to-current efficiency of the DSSCs and to explain the charge transfer phenomenon occurring on the dye/ nanosemiconductor interface. Therefore, electronic and optical properties of three bipyridine derivatives anchored on the TiO2 electrode were investigated by computational simulations based on quantum chemistry codes...

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Projects: