Aqueous L-alanine molecular interaction from Gibb’s free energy: CPCM and SMD in DFT and ultrasonic studies

L-Alanine (ALA) in water spontaneously forms stable zwitterions. It is observed in a present work that the stimulation to revert can be done by ultrasonic waves. It’s molecular interaction in aqueous system can be found from the Gibb’s free energy. It has been examined experimentally by estimating t...

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Veröffentlicht in:Journal of physics. Conference series 2021-05, Vol.1913 (1), p.12007
Hauptverfasser: Shende, A T, Tayade, N, Tirpude, M P
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description L-Alanine (ALA) in water spontaneously forms stable zwitterions. It is observed in a present work that the stimulation to revert can be done by ultrasonic waves. It’s molecular interaction in aqueous system can be found from the Gibb’s free energy. It has been examined experimentally by estimating the Gibb’s free energy using the ultrasonic method for the verification of theoretical result. The theoretical work performed within the computational DFT framework for the different solvation models. This paper deals with two different solvation models, the CPCM and the SMD, which are implemented in a Density Functional Theory preferred with non-hybrid functional and analyzed interaction perspective. The weak interactions by NCI also analyzed for difference. Further, BP86 reported difference in both model. The SMD model is also tested by using B3LYP and PBEh-3 to compare Δ G .
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subjects Alanine
CPCM
Density functional theory
DFT
Free energy
Gibb’s free energy
interaction
L-Alanine
Model testing
Molecular interactions
Physics
SMD
Solvation
Ultrasonic method
Ultrasonic methods
Ultrasonic testing
Zwitterions
title Aqueous L-alanine molecular interaction from Gibb’s free energy: CPCM and SMD in DFT and ultrasonic studies
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