Immobilized Pd metal‐complex on polymeric resin with high surface areas for recyclable catalyst: Effect of the immobilization method on nature of palladium species

Author:

Mella Claudio1ORCID,Pecchi Gina12,Godard Cyril3,Claver Carmen3,Márquez Abdiel4,Campos Cristian H.1

Affiliation:

1. Departamento de Polímeros, Facultad de Ciencias Químicas Universidad de Concepción Concepción Chile

2. Millenium Nuclei on Catalytic Processes towards Sustainable Chemistry (CSC) Santiago Chile

3. Department de Química Física i Inorgánica Universitat Rovira i Virgili Tarragona Spain

4. Centro de Nanociencias y Nanotecnología Universidad Nacional Autónoma de México Ensenada Baja California Mexico

Abstract

AbstractA critical query on literature is the approach used to immobilize homogeneous catalysts to improve their efficiency and recyclability. This work aims to compare the immobilization level of a kind of Pd‐N,N′‐bis(salicylidene)‐o‐phenylenediamine complex on high surfaces of polymeric resins to provide heterogenous catalysts for Mizorocki‐Heck reaction. The preparation method involves two strategies: (i) polymerization of the ligand before the complex‐synthesis in a “multi‐step (MS)” approach and (ii) a direct “one‐step” (OS) immobilization by polymerization of the metal‐containing monomers (MCMs) as co‐monomer. Both approaches effectively yield polymers with a larger surface area, over 700 m2 g−1, and suitable thermic properties to use in the proposed reaction. In addition, the characterization of the polymers by XRD, XPS, and TEM demonstrates notable differences in Pd species on polymer support associated with the methodological approach to immobilizing the metal complex.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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