Rational design of polymeric nanozymes with robust catalytic performance via copper-ligand coordination

合理设计 催化作用 配体(生物化学) 化学 配位复合体 组合化学 纳米技术 材料科学 有机化学 金属 生物化学 受体
作者
Ying Cai,Jin Zhou,Jian‐An Huang,Wenjuan Zhou,Yuting Wan,Martien A. Cohen Stuart,Junyou Wang
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:645: 458-465 被引量:6
标识
DOI:10.1016/j.jcis.2023.04.142
摘要

Incorporating copper (Cu) ions into polymeric particles can be a straightforward strategy for mimicking copper enzymes, but it is challenging to simultaneously control the structure of the nanozyme and of the active sites. In this report, we present a novel bis-ligand (L2) containing bipyridine groups connected by a tetra-ethylene oxide (4EO) spacer. In phosphate buffer the Cu-L2 mixture forms coordination complexes that (at proper composition) can bind polyacrylic acid (PAA) to produce catalytically active polymeric nanoparticles with well-defined structure and size, which we refer to as 'nanozymes'. Manipulating the L2/Cu mixing ratio and using phosphate as a co-binding motif, cooperative copper centres are realized that exhibit promoted oxidation activity. The structure and activity of the so-designed nanozymes remain stable upon increasing temperature and over multiple cycles of application. Increasing ionic strength causes enhanced activity, a response also seen for natural tyrosinase. By means of our rational design we obtain nanozymes with optimized structure and active sites that in several respects outperform natural enzymes. This approach therefore demonstrates a novel strategy for developing functional nanozymes, which may well stimulate the application of this class of catalysts.

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