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Pregled bibliografske jedinice broj: 867311

Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study


Mališ, Momir; Došlić, Nađa
Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study // Molecules, 22 (2017), 3; 493, 24 doi:10.3390/molecules22030493 (međunarodna recenzija, članak, znanstveni)


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Naslov
Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study

Autori
Mališ, Momir ; Došlić, Nađa

Izvornik
Molecules (1420-3049) 22 (2017), 3; 493, 24

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
nonadiabatic molecular dynamics ; nonradiative deactivation ; peptide ; phenylalanine

Sažetak
The present work is directed toward understanding the mechanisms of excited state deactivation in three neutral model peptides containing the phenylalanine residue. The excited state dynamics of the γL(g+) folded form of N-acetylphenylalaninylamide (NAPA B) and its amide-N-methylated derivative (NAPMA B) is reviewed and compared to the dynamics of the monohydrated structure of NAPA (NAPAH). The goal is to unravel how the environment, and in particular solvation, impacts the photodynamics of peptides. The systems are investigated using reaction path calculations and surface hopping nonadiabatic dynamics based on the coupled cluster doubles (CC2) method and time-dependent density functional theory. The work emphasizes the role that excitation transfer from the phenyl ππ* to amide nπ* state plays in the deactivation of the three systems and shows how the ease of out-of-plane distortions of the amide group determines the rate of population transfer between the two electronic states. The subsequent dynamics on the nπ* state is barrierless along several pathways and leads to fast deactivation to the ground electronic state.

Izvorni jezik
Engleski

Znanstvena područja
Javno zdravstvo i zdravstvena zaštita



POVEZANOST RADA


Ustanove:
Institut "Ruđer Bošković", Zagreb

Profili:

Avatar Url Nađa Došlić (autor)

Avatar Url Momir Mališ (autor)

Citiraj ovu publikaciju:

Mališ, Momir; Došlić, Nađa
Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study // Molecules, 22 (2017), 3; 493, 24 doi:10.3390/molecules22030493 (međunarodna recenzija, članak, znanstveni)
Mališ, M. & Došlić, N. (2017) Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study. Molecules, 22 (3), 493, 24 doi:10.3390/molecules22030493.
@article{article, author = {Mali\v{s}, Momir and Do\v{s}li\'{c}, Na\dja}, year = {2017}, pages = {24}, DOI = {10.3390/molecules22030493}, chapter = {493}, keywords = {nonadiabatic molecular dynamics, nonradiative deactivation, peptide, phenylalanine}, journal = {Molecules}, doi = {10.3390/molecules22030493}, volume = {22}, number = {3}, issn = {1420-3049}, title = {Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study}, keyword = {nonadiabatic molecular dynamics, nonradiative deactivation, peptide, phenylalanine}, chapternumber = {493} }
@article{article, author = {Mali\v{s}, Momir and Do\v{s}li\'{c}, Na\dja}, year = {2017}, pages = {24}, DOI = {10.3390/molecules22030493}, chapter = {493}, keywords = {nonadiabatic molecular dynamics, nonradiative deactivation, peptide, phenylalanine}, journal = {Molecules}, doi = {10.3390/molecules22030493}, volume = {22}, number = {3}, issn = {1420-3049}, title = {Nonradiative Relaxation Mechanisms of UV Excited Phenylalanine Residues: A Comparative Computational Study}, keyword = {nonadiabatic molecular dynamics, nonradiative deactivation, peptide, phenylalanine}, chapternumber = {493} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus
  • MEDLINE


Uključenost u ostale bibliografske baze podataka::


  • CAB Abstracts
  • CA Search (Chemical Abstracts)
  • EMBASE (Excerpta Medica)
  • FSTA: Food Science and Technology Abstracts
  • MEDLINE


Citati:





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