Controlled Immobilization of a Palladium Complex/Laccase Hybrid into a Macrocellular Siliceous Host

Author:

Yang Fangfang12,Rousselot‐Pailley Pierre1,Nicoletti Cendrine1ORCID,Simaan A. Jalila1ORCID,Faure Bruno1ORCID,Courvoisier‐Dezord Elise1ORCID,Amouric Agnès1ORCID,Charmasson Yolande1,Backov Rénal3ORCID,Tron Thierry1ORCID,Mekmouche Yasmina1ORCID

Affiliation:

1. Aix Marseille Univ Centrale Marseille CNRS, iSm2 13397 Marseille France

2. College of Chemistry and Chemical Engineering Yantai University 264005 Yantai China

3. Université de Bordeaux, CNRS, CRPP, UMR5031 115 Avenue Albert Schweitzer 33600 Pessac France

Abstract

AbstractThis study investigates the site‐directed immobilization of a hybrid catalyst bearing a biquinoline‐based‐Pd(II) complex (1) and a robust laccase within cavities of a silica foam to favor veratryl alcohol oxidation. We performed the grafting of 1 at a unique surface located lysine of two laccase variants, either at closed (1⊂UNIK157) or opposite position (1⊂UNIK71) of the enzyme oxidation site. After immobilization into the cavities of silica monoliths bearing hierarchical porosity, we show that catalytic activity is dependent on the orientation and loading of each hybrid, 1⊂UNIK157 being twice as active than 1⊂UNIK71 (203 TON vs 100 TON) when operating under continuous flow. These systems can be reused 5 times, with an operational activity remaining as high as 40 %. We show that the synergy between 1 and laccase can be tuned within the foam. This work is a proof of concept for controlling the organization of a heterogeneous hybrid catalyst using a Pd/laccase/silica foam.

Publisher

Wiley

Subject

General Chemistry

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