Mestivier Mathieu, Li Jun Rong, Camy Aurèle, Frangville Camille, Mingotaud Christophe, Benoît-Marquié Florence, Marty Jean-Daniel
IMRCP UMR CNRS 5623, Bat 2R1, Université de Toulouse, 118 Route de Narbonne, 31062, Toulouse Cedex 9, France.
Chemistry. 2020 Nov 6;26(62):14152-14158. doi: 10.1002/chem.202002362. Epub 2020 Sep 30.
An innovative strategy allowing the development of a new generation of easy-to-prepare and easy-to-use nano-sized catalysts with high tenability is presented. This strategy is based on the formation of hybrid polyion complexes (HPICs) from the complexation of copper with a block copolymer consisting of an ionizable complexing block and a neutral stabilizer block. These complexes have a well-defined structure and size with a hydrodynamic diameter around 29 nm. They are stable in aqueous solution over a pH range from 4 to 8 and are not sensitive to NaCl salt addition or dilution effects. As a proof-of-concept the degradation of naphthol blue black in water through the use of the Fenton or photo-Fenton reaction is studied. Their performances are comparable to a classical homogeneous reaction, whereas HPICs are easily recyclable by simple dialysis.
提出了一种创新策略,可用于开发新一代易于制备和使用、具有高韧性的纳米级催化剂。该策略基于铜与由可电离络合嵌段和中性稳定剂嵌段组成的嵌段共聚物络合形成杂化聚离子络合物(HPICs)。这些络合物具有明确的结构和尺寸,流体动力学直径约为29 nm。它们在pH值为4至8的水溶液中稳定,对添加NaCl盐或稀释效应不敏感。作为概念验证,研究了通过使用芬顿或光芬顿反应在水中降解萘酚蓝黑。它们的性能与经典均相反应相当,而HPICs通过简单的透析即可轻松回收利用。