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  4. Diffusion Monte Carlo evaluation of disiloxane linearisation barrier
 
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Diffusion Monte Carlo evaluation of disiloxane linearisation barrier

Source
Physical Chemistry Chemical Physics
ISSN
14639076
Date Issued
2022-02-14
Author(s)
Hanindriyo, Adie Tri
Yadav, Amit Kumar Singh
Ichibha, Tom
Maezono, Ryo
Nakano, Kousuke
Hongo, Kenta
DOI
10.1039/d1cp01471d
Volume
24
Issue
6
Abstract
The disiloxane molecule is a prime example of silicate compounds containing the Si-O-Si bridge. The molecule is of significant interest within the field of quantum chemistry, owing to the difficulty in theoretically predicting its properties. Herein, the linearisation barrier of disiloxane is investigated using a fixed-node diffusion Monte Carlo (FNDMC) approach, which is one of the most reliable ab initio methods in accounting for the electronic correlation. Calculations utilizing the density functional theory (DFT) and the coupled cluster method with single and double substitutions, including noniterative triples (CCSD(T)) are carried out alongside FNDMC for comparison. It is concluded that FNDMC successfully predicts the disiloxane linearisation barrier and does not depend on the completeness of the basis-set as much as DFT or CCSD(T), thus establishing its suitability.
Publication link
https://pubs.rsc.org/en/content/articlepdf/2021/cp/d1cp01471d
URI
https://d8.irins.org/handle/IITG2025/26182
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