arXiv · 2111.05797
A systematic study of the valence electronic structure of cyclo(Gly-Phe), cyclo(Trp-Tyr) and cyclo(Trp-Trp) dipeptides in gas phase
Abstract
The electronic energy levels of cyclo(Glycine-Phenylalanine), cyclo(Tryptophan-Tyrosine) and cyclo(Tryptophan-Tryptophan) dipeptides are investigated with a joint experimental and theoretical approach. Experimentally, valence photoelectron spectra in the gas phase are measured using VUV radiation. Theoretically, we first obtain low-energy conformers through an automated conformer-rotamer ensemble sampling scheme based on tight-binding simulations. Then, different first principles computational schemes are considered to simulate the spectra: Hartree-Fock (HF), density functional theory (DFT) within the B3LYP approximation, the quasi--particle GW correction, and the quantum-chemistry CCSD method. Theory allows to assign the main features of the spectra. A discussion on the role of electronic correlation is provided, by comparing computationally cheaper DFT scheme (and GW) results with the accurate CCSD method.
Explore related subjects
Keep this discovery
Elena Molteni, Giuseppe Mattioli, Paola Alippi, Lorenzo Avaldi, Paola Bolognesi, Laura Carlini, Federico Vismarra, Yingxuan Wu, Rocio Borrego Varillas, Mauro Nisoli, Manjot Singh, Mohammadhassan Valadan, Carlo Altucci, Robert Richter, Davide Sangalli. 2021-11-10. A systematic study of the valence electronic structure of cyclo(Gly-Phe), cyclo(Trp-Tyr) and cyclo(Trp-Trp) dipeptides in gas phase. https://doi.org/10.1039/d1cp04050b
Cite the original work for its findings. Save a collection to share your selection of sources.