Theoretical modeling of the terahertz spectrum of l-tyrosine leads to experimental verification of previously unobserved vibrational mode

Author:

Sanders T. J.12ORCID,Allen J. L.1ORCID,Horvat J.1ORCID,Lewis R. A.1ORCID

Affiliation:

1. Institute for Superconducting and Electronic Materials and School of Physics, University of Wollongong 1 , Wollongong NSW 2522, Australia

2. Australian Synchrotron, Australian Nuclear Science and Technology Organisation 2 , 800 Blackburn Rd., Clayton, VIC 3168, Australia

Abstract

We have calculated the theoretical terahertz spectrum of the amino acid l-tyrosine using density functional theory (DFT). We tried two electron density functionals, Perdew–Burke–Ernzerhof (PBE) and PBE-d3. PBE-d3 includes dispersion corrections to build in van der Waals interactions, which play a role in intermolecular bonding. Both DFT models predicted a low-frequency mode that has not been previously reported. We designed an experiment to search for this mode. Using a deliberately thick sample, intense synchrotron radiation, low temperatures, and temperature variation has enabled us to observe a new resonance at 1.79 ±0.01 THz. While the PBE and PBE-d3 spectra are similar and both match the low-energy experimental data, overall the PBE-d3 appears to be slightly superior. Further refinement still of the functional may lead to even better agreement with experiment above 2.4 THz.

Funder

Australian Nuclear Science and Technology Organisation

National Computational Infrastructure

Publisher

AIP Publishing

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

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