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Dr. Paulius Baronas

E-mail: 

LinkedIn: https://www.linkedin.com/in/paulius-baronas/

Twitter: @BaronasPaul

 

Institute / Center

Institute of Photonics and Nanotechnology (IPN)

Research Area

Organic semiconductors, spectroscopy of organic molecules

Present position

Postdoctoral Researcher at the Institute of Materials Science of Barcelona (ICMAB-CSIC)

Scientific Interests, Keywords

Organic lasers, transient absorption spectrscopy

Links to External Profile

Google scholar: https://scholar.google.com/citations?user=CeW0IN8AAAAJ&hl=en

Most important publications
  1. P. Baronas, G. Kreiza, L. Naimovičius, E. Radiunas, K. Kazlauskas, E. Orentas, and S. Juršėnas “Sweet Spot of Intermolecular Coupling in Crystalline Rubrene: Intermolecular Separation to Minimize Singlet Fission and Retain Triplet–Triplet Annihilation”, J. Phys. Chem. C 126, 36, 15327 (2022).
  2. P. Baronas, R. Komskis, E. Tankelevičiu̅tė, P. Adomėnas, O. Adomėnienė, S. Juršėnas “Helical Molecular Orbitals to Induce Spin–Orbit Coupling in Oligoyne-Bridged Bifluorenes”, J. Phys. Chem. Lett. 12, 29, 6827 (2021).
  3. P. Baronas, G. Kreiza, M. Mamada, S. Maedera, P. Adomėnas, O. Adomėnienė, K. Kazlauskas, J. C. Ribierre, C. Adachi and S. Juršėnas, “Enhanced energy transfer in doped bifluorene single crystals: prospects for organic lasers”, Adv. Opt. Mater. 1901670 (2019).
  4. P. Ščajev, C. Qin, R. Aleksiejunas, P. Baronas, S. Miasojedovas, T. Fujihara, T. Matsushima, C. Adachi and S. Juršėnas, “Diffusion Enhancement in Highly Excited MAPbI3 Perovskite Layers with Additives” J. Phys. Chem. Lett. 9, 3167 (2018).
  5. P. Baronas, P. Ščajev, V. Čerkasovas, G. Kreiza, P. Adomėnas, O. Adomėnienė, K. Kazlauskas, J. C. Ribierre, C. Adachi and S. Juršėnas, “Exciton Diffusion in Bifluorene Single Crystals Studied by Light Induced Transient Grating Technique”, Appl. Phys. Lett. 112, 033302 (2018).
  6. P. Baronas, G. Kreiza, P. Adomėnas, O. Adomėnienė, K. Kazlauskas, C. Adachi and S. Juršėnas, “Low-Threshold Light Amplification in Bifluorene Single Crystals: Role of the Trap States”, ACS Appl. Mater. Interfaces 10, 2768 (2018).
  7. T. Matulaitis, P. Imbrasas, N. A. Kukhta, P. Baronas, T. Bučiūnas, D. Banevičius, K. Kazlauskas, J. V. Gražulevičius, and S. Juršėnas, “Impact of Donor Substitution Pattern on the TADF Properties in the Carbazolyl-Substituted Triazine Derivatives”, J. Phys. Chem. C 121, 23618 (2017)

 

 

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