Projects funded by the NCN


Information on the principal investigator and host institution

Information of the project and the call

Keywords

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Amphiphilic organic electronic materials for sustainable catalytic generation of hydrogen peroxide

2019/33/B/ST5/01212

Keywords:

amphiphilic organic semiconductors donor-acceptor compounds electrochemistry spectroelectrochemistry cathodic catalysts generation of hydrogen peroxide bioelectronics

Descriptors:

  • ST5_12: Methods of nanomaterials/materials synthesis
  • ST5_4: Thin films
  • ST4_12: Photochemistry

Panel:

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

Host institution :

Politechnika Warszawska

woj.

Other projects carried out by the institution 

Principal investigator (from the host institution):

dr hab. Eric Daniel Głowacki 

Number of co-investigators in the project: 5

Call: OPUS 17 - announced on 2019-03-15

Amount awarded: 981 000 PLN

Project start date (Y-m-d): 2020-02-27

Project end date (Y-m-d): 2023-10-26

Project duration:: 44 months (the same as in the proposal)

Project status: Project settled

Project description

Download the project description in a pdf file

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 (10)
  1. Tuning photoelectrochemical performance of poly(3-hexylthiophene) electrodes via surface structuring
    Authors:
    Renbo Wei, Maciej Gryszel, Ludovico Migliaccio, Eric Daniel Głowacki
    Academic press:
    J. Mater. Chem. C (rok: 2020, tom: 8, strony: 10897-10906), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/d0tc01477j - link to the publication
  2. Density Functional Theory Mechanistic Study on H2O2 Production Using an Organic Semiconductor Epindolidione
    Authors:
    Nitin Wadnerkar, Viktor Gueskine, Eric Daniel Głowacki, Igor Zozoulenko
    Academic press:
    J. Phys. Chem. A 2020, 124, 9605−9610 (rok: 2020, tom: 124, strony: 9605−9610), Wydawca: American Chemical Society
    Status:
    Published
    DOI:
    10.1021/acs.jpca.0c08496 - link to the publication
  3. Well-defined electrochemical switching of amphiphilic glycolated poly(3,4-ethylenedioxythiophene)
    Authors:
    R. Rybakiewicz-Sekita, M. Gryszel, G. Pathak, R. Ganczarczyk, M. Donahue, E. D. Glowacki
    Academic press:
    J. Mater. Chem. C (rok: 2022, tom: 10, strony: 17208-17215), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/D2TC01448C - link to the publication
  4. Polymeric Benzothiadiazole, Benzooxadiazole, and Benzoselenadiazole Photocathodes for Photocatalytic Oxygen Reduction to Hydrogen Peroxide
    Authors:
    R. Ganczarczyk, R. Rybakiewicz-Sekita, M. Gryszel, J. Drapała, M. Zagórska, E. D. Głowacki
    Academic press:
    Adv. Mater. Interfaces (rok: 2023, tom: 2300270, strony: 45669), Wydawca: Wiley
    Status:
    Published
    DOI:
    10.1002/admi.202300270 - link to the publication
  5. Density Functional Theory Mechanistic Study on H2O2 Production Using an Organic Semiconductor Epindolidione
    Authors:
    Nitin Wadnerkar, Viktor Gueskine, Eric Daniel Głowacki, Igor Zozoulenko
    Academic press:
    J. Phys. Chem. A 2020, 124, 9605−9610 (rok: 2020, tom: 124, strony: 9605−9610), Wydawca: American Chemical Society
    Status:
    Published
    DOI:
    10.1021/acs.jpca.0c08496 - link to the publication
  6. Water-Soluble Cationic Perylene Diimide Dyes as Stable Photocatalysts for H2O2 Evolution
    Authors:
    M. Gryszel, T. Schlossarek, F.Würthner, M. Natali, E. D. Głowacki
    Academic press:
    ChemPhotoChem (rok: 2023, tom: 7, e202300070, strony: 45666), Wydawca: Wiley
    Status:
    Published
    DOI:
    10.1002/cptc.202300070 - link to the publication
  7. Well-defined electrochemical switching of amphiphilic glycolated poly(3,4-ethylenedioxythiophene)
    Authors:
    R. Rybakiewicz-Sekita, M. Gryszel, G. Pathak, R. Ganczarczyk, M. Donahue, E. D. Glowacki
    Academic press:
    J. Mater. Chem. C (rok: 2022, tom: 10, strony: 17208-17215), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/D2TC01448C - link to the publication
  8. Tuning photoelectrochemical performance of poly(3-hexylthiophene) electrodes via surface structuring
    Authors:
    Renbo Wei, Maciej Gryszel, Ludovico Migliaccio, Eric Daniel Głowacki
    Academic press:
    J. Mater. Chem. C (rok: 2020, tom: 8, strony: 10897-10906), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/d0tc01477j - link to the publication
  9. Tuning photoelectrochemical performance of poly(3-hexylthiophene) electrodes via surface structuring
    Authors:
    Renbo Wei, Maciej Gryszel, Ludovico Migliaccio, Eric Daniel Głowacki
    Academic press:
    J. Mater. Chem. C (rok: 2020, tom: 8, strony: 10897-10906), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/D0TC01477J - link to the publication
  10. Density Functional Theory Mechanistic Study on H2O2 Production Using an Organic Semiconductor Epindolidione
    Authors:
    Nitin Wadnerkar, Viktor Gueskine, Eric Daniel Głowacki, Igor Zozoulenko
    Academic press:
    J. Phys. Chem. A (rok: 2020, tom: 124, strony: 9605−9610), Wydawca: American Chemical Society
    Status:
    Published
    DOI:
    10.1021/acs.jpca.0c08496 - link to the publication