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Horseradish peroxidase-based hybrid nanoflowers with enhanced catalytical activities for polymerization reactions of phenol derivatives

机译:基于辣根过氧化物酶的杂交纳米割,具有增强的酚衍生物聚合反应的催化活性

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摘要

Catalytic activity and stability of HRP-Cu2+ hybrid nanoflowers (hCu-NFs) in the polymerization reactions of phenol derivatives was investigated. It was observed that the catalytic activity and stability of hybrid nanoflowers on the polymerization of the phenol derivatives was considerably higher compared to free Horseradish peroxidase (HRP) enzyme. The hCu-NFs effectively polymerized phenolic compounds as a novel nanobiocatalyst and led to polymers having quite high yields, molecular weights, and thermal stabilities compared to free HRP enzyme. The hCu-NFs provide substantial repeated use and showed some degree of catalytic activity even after fourth cycle experiment in the polymerization reactions.
机译:研究了HRP-Cu2 +杂化纳米贷液(HCU-NFS)在酚衍生物的聚合反应中的催化活性和稳定性。 观察到,与自由辣根过氧化物酶(HRP)酶相比,杂交纳米辊对苯酚衍生物聚合的催化活性和稳定性显着高。 与游离HRP酶相比,HCU-NFS将HCU-NFS有效地聚合为新型纳米双催化剂,并导致具有相当高收率,分子量和热稳定性的聚合物。 即使在聚合反应中的第四循环实验之后,HCU-NFS提供了大量的重复使用并显示出一定程度的催化活性。

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