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Ligand Nano-cluster Arrays in a Supported Lipid Bilayer
Published on: April 23, 2017
Embedding mediator function into laccase-like nanozymes: HAT@BPD-Cu as a self-contained laccase-mediator platform to
Xuesong Wang1, Yunlong Wang1, Ke Li1
1Key Laboratory of Groundwater Resources and Environment (Jilin University), Ministry of Education, College of New Energy and Environment, Jilin University, Changchun, 130021, PR China; Jilin Provincial Key Laboratory of Water Resources and Water Environment, College of New Energy and Environment, Jilin University, Changchun, 130021, PR China.
Abstract:
HBT is a common laccase mediator whose N-OH group can be oxidized to generate nitroxyl radicals, thereby enhancing laccase catalytic activity. This enhancement effect has also been demonstrated in laccase-like nanozymes. However, the poor recoverability of HBT may lead to secondary pollution, which limits its environmental applications. Based on the structural homology of nitrogen-containing heterocycles, this study innovatively incorporated 1-hydroxy-7-azabenzotriazole that simultaneously features a nitrogen-containing heterocycle and an N-OH active site into the 4,4'-bipyridine-Cu-based laccase-like nanozyme (BPD-Cu), thereby constructing a leak-free composite nanozyme HAT@BPD-Cu with both a mediating active site and laccase-like activity. This approach realizes the integration of a mediating active site and laccase-like functionality within a single nanozyme-mediator composite. The resulting HAT@BPD-Cu exhibits enhanced laccase-like catalytic activity while ensuring no leakage of mediator. It shows outstanding catalytic performance and sensitive response characteristics compared to BPD-Cu in the removal of tetracycline antibiotics and the detection of 4-X-phenols (X = F, Cl, Br). This work provides novel design insights for developing recyclable, high-performance laccase-like nanozymes and introduces a new material platform for the efficient removal and analytical detection of environmental pollutants.
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