Literature DB >> 33383889

Exploration of Free Energy Surface and Thermal Effects on Relative Population and Infrared Spectrum of the Be6B11- Flux-Ional Cluster.

Carlos Emilano Buelna-Garcia1, José Luis Cabellos2, Jesus Manuel Quiroz-Castillo1, Gerardo Martinez-Guajardo3, Cesar Castillo-Quevedo4, Aned de-Leon-Flores5, Gilberto Anzueto-Sanchez6, Martha Fabiola Martin-Del-Campo-Solis4.   

Abstract

The starting point to understanding cluster properties is the putative global minimum and all the nearby local energy minima; however, locating them is computationally expensive and difficult. The relative populations and spectroscopic properties that are a function of temperature can be approximately computed by employing statistical thermodynamics. Here, we investigate entropy-driven isomers distribution on Be6B11- clusters and the effect of temperature on their infrared spectroscopy and relative populations. We identify the vibration modes possessed by the cluster that significantly contribute to the zero-point energy. A couple of steps are considered for computing the temperature-dependent relative population: First, using a genetic algorithm coupled to density functional theory, we performed an extensive and systematic exploration of the potential/free energy surface of Be6B11- clusters to locate the putative global minimum and elucidate the low-energy structures. Second, the relative populations' temperature effects are determined by considering the thermodynamic properties and Boltzmann factors. The temperature-dependent relative populations show that the entropies and temperature are essential for determining the global minimum. We compute the temperature-dependent total infrared spectra employing the Boltzmann factor weighted sums of each isomer's infrared spectrum and find that at finite temperature, the total infrared spectrum is composed of an admixture of infrared spectra that corresponds to the spectra of the lowest-energy structure and its isomers located at higher energies. The methodology and results describe the thermal effects in the relative population and the infrared spectra.

Entities:  

Keywords:  Boltzmann factors; Gibbs free energy; Grimme’s approach (DFT-D3); IR spectra; boron cluster; density functional theory; entropy; fluxional; global minimum; infrared spectrum; temperature

Year:  2020        PMID: 33383889     DOI: 10.3390/ma14010112

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  2 in total

1.  Relative Populations and IR Spectra of Cu38 Cluster at Finite Temperature Based on DFT and Statistical Thermodynamics Calculations.

Authors:  Carlos Emiliano Buelna-García; Cesar Castillo-Quevedo; Jesus Manuel Quiroz-Castillo; Edgar Paredes-Sotelo; Manuel Cortez-Valadez; Martha Fabiola Martin-Del-Campo-Solis; Tzarara López-Luke; Marycarmen Utrilla-Vázquez; Ana Maria Mendoza-Wilson; Peter L Rodríguez-Kessler; Alejandro Vazquez-Espinal; Sudip Pan; Aned de Leon-Flores; Jhonny Robert Mis-May; Adán R Rodríguez-Domínguez; Gerardo Martínez-Guajardo; Jose Luis Cabellos
Journal:  Front Chem       Date:  2022-03-01       Impact factor: 5.221

2.  Theoretical Prediction of Structures, Vibrational Circular Dichroism, and Infrared Spectra of Chiral Be4B8 Cluster at Different Temperatures.

Authors:  Carlos Emiliano Buelna-García; Eduardo Robles-Chaparro; Tristan Parra-Arellano; Jesus Manuel Quiroz-Castillo; Teresa Del-Castillo-Castro; Gerardo Martínez-Guajardo; Cesar Castillo-Quevedo; Aned de-León-Flores; Gilberto Anzueto-Sánchez; Martha Fabiola Martin-Del-Campo-Solis; Ana Maria Mendoza-Wilson; Alejandro Vásquez-Espinal; Jose Luis Cabellos
Journal:  Molecules       Date:  2021-06-28       Impact factor: 4.411

  2 in total

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