Partial Oxidation of Methane to Methanol by Using Molecular O2 on Pd2+ Catalyst: An Insight from Theory

Author:

Dutta Priyanka1,Biswakarma Nishant1,Dowerah Dikshita1,Neog Shilpa1,Islam Saiful1,Sarma Srutishree1,Basumatary Moumita1,Churi Partha Pratim12,Sarma Plaban Jyoti13,Gour Nand Kishor1,Deka Ramesh Chandra1ORCID

Affiliation:

1. Catalysis and Molecular Modelling Lab Department of Chemical Sciences Tezpur University Tezpur 784028 Assam India

2. Department of Chemistry Dergaon Kamal Dowerah College Assam 785614 India

3. Department of Chemistry Gargaon College Assam 785686 India

Abstract

AbstractThe partial oxidation of methane to methanol using cationic Pd2 dimers is investigated by employing density functional theory (DFT) method. We used B3PW91 functional for geometry optimization, and frequency calculations of all species involved in [Pd2]++O2+2CH4 reaction. Furthermore, a density‐fitting triple zeta valence with single‐polarization (def2TZVP) is used in the calculation to determine the atomic orbitals of the atoms. We oxidized Pd2+ to [Pd2O2]+ using O2 and performed possible partial oxidation of methane to methanol on [Pd2O2]+ and [Pd2O]+ and explored various intermediates and transition states on the potential energy surface (PES) diagram. From Potential Energy Surface (PES) analysis, it is found that the [Pd2O2]+ in doublet spin state multiplicity (SM=2) following radical mechanism is the more preferred pathway for methane to methanol conversion.

Funder

Science and Engineering Research Board

Publisher

Wiley

Subject

General Chemistry

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