Projects funded by the NCN


Information on the principal investigator and host institution

Information of the project and the call

Keywords

Equipment

Delete all

Low-Dimensional Nano-Architectures for Light Emission and Light-to-Electricity Conversion

2020/39/I/ST4/01446

Keywords:

charge and energy transfer low dimensional materials nano assembly computation spectroscopy

Descriptors:

  • ST4_4: Theoretical and computational chemistry
  • ST4_1: Physical chemistry, chemical physics
  • ST5_11: Smart materials – self assembled materials, external stimuli-responsive materials

Panel:

ST4 - Chemistry: physical chemistry/chemical physics, theoretical chemistry, analytical chemistry, inorganic chemistry, organic chemistry, method development

Host institution :

Uniwersytet Warszawski, Centrum Nowych Technologii Uniwersytetu Warszawskiego

woj.

Other projects carried out by the institution 

Principal investigator (from the host institution):

dr hab. Silvio Osella 

Number of co-investigators in the project: 3

Call: OPUS 20 (LAP) - announced on 2020-09-15

Amount awarded: 1 250 988 PLN

Project start date (Y-m-d): 2022-03-01

Project end date (Y-m-d): 2025-02-28

Project duration:: 36 months (the same as in the proposal)

Project status: Project completed

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 (6)
  1. Functional Groups Accessibility and the Origin of Photoluminescence in N/O-containing Bottom-up Carbon Nanodots
    Authors:
    P. P. Debes, M. Langer, M. Pagel, E. Menna, B. Smarsly, S. Osella, J. Gallego, T. Gatti
    Academic press:
    ChemNanoMat (rok: 2023, tom: 10, strony: e202300471), Wydawca: Wiley
    Status:
    Published
    DOI:
    10.1002/cnma.202300471 - link to the publication
  2. Curved graphene nanoribbons derived from tetrahydropyrene-based polyphenylenes via onepot K-region oxidation and Scholl cyclization
    Authors:
    S. Obermann, W. Zheng, J. Melidonie, S. Böckmann, S. Osella, N. Arisnabarreta, L. Guerrero-Leon F. Hennersdorf, D. Beljonne, J. J. Weigand, M. Bonn, S. De Feyter, M. Ryan Hansen, H. I. Wang, J. Ma, X. Feng
    Academic press:
    Chemical Science (rok: 2023, tom: 14, strony: 8607-8614), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/d3sc02824k - link to the publication
  3. Dual photoisomerization mechanism of azobenzene embedded in a lipid membrane
    Authors:
    Silvio Osella, Giovanni Granucci, Maurizio Persico, Stefan Knippenberg
    Academic press:
    Journal of Materials Chemistry B (rok: 2023, tom: 11, strony: 2518-2529), Wydawca: The Royal Society of Chemistry
    Status:
    Published
    DOI:
    10.1039/d2tb02767d - link to the publication
  4. Interplay of structure and photophysics of individualized rod-shaped graphene quantum dots with up to 132 sp² carbon atoms
    Authors:
    D. Medina-Lopez, T. Liu, S. Osella, H. Levy-Falk, N. Rolland, C. Elias, G. Huber, P. Ticku, L. Rondin, B. Jousselm, D. Beljonne, J.-S. Lauret, S. Campidelli
    Academic press:
    Nature Communications (rok: 2023, tom: 14, strony: 4728), Wydawca: Springer Nature
    Status:
    Published
    DOI:
    10.1038/s41467-023-40376-w - link to the publication
  5. CARBON BASED HYBRID NANOMATERIALS: OVERVIEW AND CHALLENGES AHEAD
    Authors:
    O.Yu. Semchuk, Teresa Gatti, Silvio Osella
    Academic press:
    Surface (rok: 2022, tom: 14, strony: 78-94), Wydawca: Chuiko Institute of Surface Chemistry of NAS of Ukraine
    Status:
    Published
    DOI:
    10.15407/Surface.2022.14.078 - link to the publication
  6. CARBON BASED HYBRID NANOMATERIALS: OVERVIEW AND CHALLENGES AHEAD
    Authors:
    O.Yu. Semchuk, Teresa Gatti, Silvio Osella
    Academic press:
    Surface (rok: 2022, tom: 14, strony: 78-94), Wydawca: Chuiko Institute of Surface Chemistry of NAS of Ukraine
    Status:
    Published
    DOI:
    10.15407/Surface.2022.14.078 - link to the publication