Into the Role of Unsaturated Trinuclear Metal Carbonyls in the Formation of [M3(2,3-bpp)(CO)10] with M=Ru, Os: A DFT Stability Analysis and Electronic Structure

被引:0
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作者
Katherine Paredes-Gil
Esperanza Galarza
Jose Y. Aguilar-Hurtado
Eduardo Solís-Céspedes
Dayán Páez-Hernández
机构
[1] Universidad Tecnológica Metropolitana,Departamento de Química, Facultad de Ciencias Naturales, Matemática y del Medio Ambiente
[2] Universidad Tecnológica Metropolitana,Programa Institucional de Fomento a la Investigación, Desarrollo e Innovación (PIDi)
[3] Universidad del Valle,Grupo de Investigación en Síntesis Organometálica y Catálisis, Gisiomca, Departamento de Química
[4] University of Chile,Chemical Engineering, Biotechnology and Materials, Faculty of Mathematical and Physical Sciences
[5] Universidad Católica del Maule,Escuela de Bioingeniería Médica, Facultad de Medicina
[6] Universidad Andrés Bello,Centro de Nanociencias Aplicadas (CANS)
来源
Journal of Cluster Science | 2023年 / 34卷
关键词
Carbonyl clusters; Density functional theory; Energy decomposition analysis;
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摘要
The metal carbonyl clusters have been recognized as one of the most successful organometallic complexes with extensive catalytic applications. In this paper, we carried out a DFT study of the stability, electronic structure and thermodynamic properties of the intermediates [M3(CO)11] and [M3(CO)10] in the synthesis of [M3(2,3-bpp)(CO)10] (M=Ru and Os). CO binding energy analysis revealed that [M3(CO)10(μ-CO)], [Ru3(CO)8(μ-CO)2] and [Os3(CO)6(μ3-CO)2(μ-CO)2] are the most stables compounds due to the presence of bridge carbonyls which favor a covalent interaction. Sigma donation from the carbonyl to metal d orbital is the most significant contribution. Moreover, spectroscopic and computational studies indicated that [Ru3(2,3-bpp)(CO)10] is in good agreement with the analogues osmium complex. Regarding the pathway associated to the formation of [M3(2,3-bpp)(CO)10] we have found that the determinant step is the dissociation of a second CO axial into [M3(CO)10(μ-CO)]. Thus, unsaturated metal carbonyl intermediates exert a thermodynamic and kinetically control as consequence of the orbital reorganization.
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页码:2405 / 2416
页数:11
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