Literature DB >> 27553302

Theoretical study of the interaction between molecular oxygen and tetraaza macrocyclic manganese complexes.

Alexandre Costa1, Adilson Luís Pereira Silva2, Rommel Bezerra Viana3, Auro Atsushi Tanaka1, Jaldyr de Jesus Gomes Varela4.   

Abstract

Theoretical chemistry calculations using the Density Functional Theory (DFT) were carried out to understand the interaction between oxygen (O2) and MnN4 type manganese-based complexes during the formation of MnN4-O2 adducts. In order to understand how this interaction is affected by different macrocyclic ligands, O2 was bonded to manganese-porphyrin (MnP), manganese-octamethylporphyrin (MnOMP), manganese-tetraaza[14]annulene (MnTAA), manganese-dibenzo [b,i] [1, 4, 8, 11]-tetraaza [14] annulene (MnDBTAA), manganese-2,3,9,10-tetramethyl-1,4,8,11-tetraazacyclotetradeca-1,3,8,10-tetraene ([(tim)Mn](2+)), and manganese-2,3,9,10-tetraphenyl-1,4,8,11-tetraazacyclotetradeca-1,3,8,10-tetraene ([(ph-tim)Mn](2+)). The binding and activation of the oxygen molecule was facilitated by an increasing trend in the O-O bond lengths and a decreasing one in the O-O vibrational frequency, with preference for the O2 side-on interaction among MnN4 macrocycles. The catalytic activities of the MnN4 complexes toward the O2 binding process increased in the following order: [(ph-tim)Mn](2+) < MnP < MnOMP < MnDBTAA < MnTAA < [(tim)Mn](2+). Therefore, it was concluded that the [(tim)Mn](2+)complex was the most active for the binding and activation of molecular oxygen.

Entities:  

Keywords:  Density Functional Theory; Oxygen reduction reaction; Transition metal macrocyclic complex

Year:  2016        PMID: 27553302     DOI: 10.1007/s00894-016-3097-7

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  22 in total

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Authors:  Adilson Luís Pereira Silva; Luciano Farias de Almeida; Aldaléa Lopes Brandes Marques; Hawbertt Rocha Costa; Auro Atsushi Tanaka; Albérico Borges Ferreira da Silva; Jaldyr de Jesus Gomes Varela
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7.  Manganese substituted Compound I of cytochrome P450 biomimetics: a comparative reactivity study of Mn(V)-oxo versus Mn(IV)-oxo species.

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10.  Density functional theory and DFT+U study of transition metal porphines adsorbed on Au(111) surfaces and effects of applied electric fields.

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1.  Design and synthesis of CoIIHMTAA-14/16 macrocycles and their nano-composites for oxygen reduction electrocatalysis.

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