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Search results for: DISSOCIATIVE PHOTO-DOUBLE-IONIZATION

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Search results for: DISSOCIATIVE PHOTO-DOUBLE-IONIZATION

  • Zespół Spektroskopii Elektronowej

    Zespół Spektroskopii Elektronowej specjalizuje się w badaniach procesów oddziaływania różnych form promieniowania z atomami i cząsteczkami znajdującymi się w fazie gazowej. W szczególności badania koncentrują się na opisie mechanizmów wzbudzenia i jonizacji atomów i cząsteczek, dysocjacji biomolekuł poddanych działaniu promieniowania elektromagnetycznego oraz pod wpływem zderzeń z elektronami i kationami. W Zespole prowadzone są...

  • Zespół Fizyki Ciała Stałego

    Tematyka badawcza Katedry Fizyki Ciała Stałego obejmuje wytwarzanie i badanie materiałów dla energetyki (m.in. nanostruktury, sensory) o innowacyjnych właściwościach fizyko-chemicznych, tj: * kryształy, polikryształy, ceramika, szkło * materiały objętościowe, cienkie warstwy, nanomateriały * materiały metaliczne, półprzewodnikowe, nadprzewodnikowe, izolatory Tematyka badawcza obejmuje również badania symulacyjne i obliczeniowe...

  • Zespół Katedry Fizyki Atomowej, Molekularnej i Optycznej

    Katedra Fizyki Atomowej, Molekularnej i Optycznej specjalizuje się w badaniach naukowych w zakresie: * fizyki zderzeń elektronowych * teoretycznej fizyki atomowej i molekularnej * doświadczalnej optyki kryształów

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Search results for: DISSOCIATIVE PHOTO-DOUBLE-IONIZATION

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Search results for: DISSOCIATIVE PHOTO-DOUBLE-IONIZATION

  • Dissociative photo-double-ionization of isoxazole

    Publication

    - Year 2021

    In the present communication, we present results on the photo-double-ionization and fragmentation of the isoxazole molecules. The experiments were carried out at the CiPo beamline at the Elettra-Sincrotrone radiation facility exploiting the VUV excitation and the ion time-of-flight spectrometry combined with the PEPICO technique. The dissociative processes where only one electron is emitted are quite well known [1]. However, double...

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  • Dissociative photo-double-ionization of the isoxazole molecules

    Publication

    - Synchrotron Radiation in Natural Science - Year 2020

    The five-membered heterocyclic rings are incorporated into a wide variety of structures that play a vital role in many biochemical processes. In particular, the isoxazole molecule appears in many bioactive compounds due to its unique ring structure that consists of one oxygen atom and one nitrogen atom at adjacent positions. The unique atomic composition and bond arrangement of isoxazole imply its specific electronic properties...

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  • A competition between two- and three-body dissociation channels in photo-double-ionization of tetrahydro-2H-pyran and 3,4-dihydro-2H-pyran molecules

    Publication

    - Year 2021

    Various molecules possess structures consisting of the heterocyclic rings containing oxygen atoms. These substances often play a significant role in many different fields of chemistry, medicine, and biology. Due to a specific atomic composition and bond arrangement, many of these molecules retain unique electronic properties, which may be probed by diverse spectroscopic techniques, including those utilizing synchrotron radiation....

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  • Dehydrogenation in electron-induced dissociative ionization of pyridine molecule

    The electron-impact dissociative ionization of pyridine has been investigated using mass spectrometry. Thirty-two well-resolved mass peaks have been identified in the cation mass spectra and assigned to the most likely ionic molecular fragments. The new sixteen ionic fragments' appearance energies have been determined, and sixteen others remeasured. The total cross-section for electron-impact ionization of pyridine has been measured...

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  • Dissociative multi-photon ionization of isolated uracil and uracil-adenine complexes

    Publication
    • M. Ryszka
    • R. Pandey
    • C. Rizk
    • J. Tabet
    • B. Barc
    • M. Dampc
    • N. Mason
    • S. Eden

    - INTERNATIONAL JOURNAL OF MASS SPECTROMETRY - Year 2016

    Recent multi-photon ionization (MPI) experiments on uracil revealed a fragment ion at m/z 84 that was proposed as a potential marker for ring opening in the electronically excited neutral molecule. The present MPI measurements on deuterated uracil identify the fragment as C3H4N2O+ (uracil+ less CO), a plausible dissociative ionization product from the theoretically predicted open-ring isomer. Equivalent measurements on thymine...

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