4.6 Article

A unified cost-effective method for the construction of reliable potential energy surfaces for H2S and H2O clusters

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 23, Issue 33, Pages 18044-18057

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1cp01544c

Keywords

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Funding

  1. CSIR, Govt. of India
  2. MNIT, Jaipur
  3. SERB-DST, Govt. of India [CRG/2020/001601]

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A DFT-based methodology has been used to construct potential energy surfaces for H2S and water clusters, showing good agreement with experimental and theoretical results. The method accurately identifies stable conformers and interactions in the clusters, with energy gaps between most and least stable conformers within a narrow range.
A DFT-based methodology has been used to construct the potential energy surface of H2S clusters up to pentamers. Geometrical parameters and energetics show very good agreement with the existing experimental and high-level theoretical results. Distinct stable conformers of three dimers, six trimers, eleven tetramers and twenty-three pentamers have been identified. Both S-HMIDLINE HORIZONTAL ELLIPSISS H-bond and SMIDLINE HORIZONTAL ELLIPSISS interactions are identified in dimers, trimers and pentamers, while no SMIDLINE HORIZONTAL ELLIPSISS interactions could be found in any of the 11 tetramer conformers. The binding energies of the most stable dimer, trimer, tetramer and pentamer are -1.66, -5.21, -8.57 and -12.54 kcal mol(-1), respectively. The PES has been found to be exceedingly flat and the energy gap between the most and the least stable conformers was found to be only 0.09, 2.13, 1.65 and 1.13 kcal mol(-1), from the dimer to the pentamer, respectively. The proposed method has also been used for water clusters up to the pentamer. The results obtained were found to agree closely with the existing results. Only one conformer was found for the water dimer, whereas four, five and fifteen conformers were obtained for the trimer, tetramer and pentamer, respectively. Atoms in molecular calculations were found to corroborate with the geometric and energetic results for both clusters.

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