Kennesaw State University
Characterizing the Vibrational Spectra of Hydrogen Bonded Systems with Molecular Dynamics Simulations and Quantum Chemical Methods
Abstract
dc:description.abstract<p>We apply and assess the utility of DMD for the purpose of investigating complex spectral features in N<sub>2</sub>H<sup>+</sup>···OC, N<sub>2</sub>D<sup>+</sup>···OC, C<sub>2</sub>O<sub>4</sub>H<sup>-</sup>, C<sub>2</sub>O<sub>4</sub>D<sup>-</sup> and (HCOOH)<sub>2</sub>. The proton transfer as a vibrational motion consists of diffuse qualities that can be accounted for with classical and quantum chemical analyses. Classical approaches yield a wealth of information about vibrational spectra at a reduced cost, as in the case of previously investigated N<sub>4</sub>H<sup>+</sup>. The isoelectronic N<sub>2</sub>H<sup>+</sup>···OC has a smaller dipole moment than N<sub>4</sub>H<sup>+</sup> and a calculated DMD parallel H<sup>+</sup> transfer frequency of 1800 cm<sup>-1</sup>, disagreeing with the VCI (1541 cm<sup>-1</sup>) and VPT2 (1620 cm<sup>-1</sup>) values. However, the perpendicular H<sup>+</sup> bending mode is evaluated at 910 cm<sup>-1</sup>, in good agreement with VCI (954 cm<sup>-1</sup>). Combination bands were recovered at 980 and 1980 cm<sup>-1</sup>, with weaker absorptions featured at 450 and 380 cm<sup>-1</sup>. In C<sub>2</sub>O<sub>4</sub>H<sup>-</sup>, the O-H stretch DMD value was in good agreement with the experiment. The brightest experimental peak in the O-H stretching region was ω<sub>max</sub>= 2945 cm<sup>-1</sup>, while the DMD value for the motion was ν<sub>1</sub> = 3000 cm<sup>-1</sup>. C<sub>2</sub>O<sub>4</sub>H<sup>-</sup> combination bands were characterized at 800-850, 1505, and 1450 cm<sup>-1</sup> were assigned using the analysis of the atomic motion along the trajectory. Rudimentary explicit solvation effects were explored for C<sub>2</sub>O<sub>4</sub>H<sup>-</sup> and Coupled Cluster PES scans were performed to support all results. A combination band of O-H and C-H in-plane bending was found in the H<sup>+</sup> transfer region for (HCOOH)<sub>2</sub> using the 2D-IR DMD procedure.</p>
Degree
thesis:*- Name thesis:degree_name
- Master of Science in Chemical Sciences (MSCB)
- Level thesis:degree_level
- Thesis
- Discipline thesis:degree_discipline
- Chemistry
- Year dc:date.available
- 2021
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Boutwell, Dalton
- Contributors dc:contributor
-
- Martina Kaledin
- Mark Mitchell
- Michael Stollenz
Subjects
dc:subject × 11Identifiers
dc:identifier.*- Repository record dc:identifier
- https://digitalcommons.kennesaw.edu/mscs_etd/40
- OAI identifier oai:identifier
- oai:digitalcommons.kennesaw.edu:mscs_etd-1041