Novel Co5 Cluster Based Triazole Bridged Cobalt‐Fluorophosphate: Synthesis, Structure, Magnetic and Heterogeneous Catalytic Epoxidation Studies

Author:

Sen Rupam1,De Sudipta1,dos Santos Antonio M.2,Escobar Lívia B. L.34,Brandão Paula Cristina5,Almeida Paz Filipe A.5,Reis Mario S.36,Lin Zhi5ORCID

Affiliation:

1. Department of Chemistry Adamas University Barasat, Kolkata 700126 India

2. Neutron Scattering Division Oak Ridge National Laboratory Oak Ridge TN 37831-6475 USA

3. Instituto de Física Universidade Federal Fluminense 24210-346 Niterói, Rio de Janeiro Brasil

4. Departamento de Química Pontifícia Universidade Católica Gávea, Rio de Janeiro RJ, 22453-900 Brasil

5. Department of Chemistry CICECO – Aveiro Institute of Materials University of Aveiro 3810-193 Aveiro Portugal

6. Departamento de Física de la Materia Condensada Universidad de Sevilla Sevilla 41080 Spain

Abstract

AbstractA novel triazole bridged cobalt fluorophosphate coordination polymer with the formula {Co5(1,2,4‐triazole)2(OH)2(PO3F)4}n has been synthesized. Single crystal X‐ray studies reveal that the compound comprises of Co5 clusters which ultimately build the whole framework, here all cobalt centers are in octahedral geometry established from continuous shape analysis. All the cobalt centers are in Co(II) oxidation state and the results are supported by the bond valence sum (BVS) calculation. The sample has been characterized by single crystal X‐ray, powder X‐ray, FTIR and TGA analysis. The compound was tested for olefin catalysis performance and magnetism. Magnetization measurements reveal overall antiferromagnetic interactions among the Co(II) ions. The compound is very active in the catalytic transformation of olefins to their corresponding epoxides. Catalytic epoxidation studies reveal that cyclohexene and styrene can be converted up to 97 % with almost 65 % selectivity of products with higher TON numbers.

Publisher

Wiley

Subject

Inorganic Chemistry

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