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Nanoconfined (Bio)Catalysts as Efficient Glucose-Responsive Nanoreactors

机译:纳米醌(BIO)催化剂是有效的葡萄糖响应纳米反应器

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摘要

Herein, the design, synthesis, and characterization of bifunctional hybrid nanoreactors used for concurrent one-pot chemoenzymatic reactions are shown. In the design, the enzyme, glucose oxidase, is wrapped with a peroxidase-mimetic catalytic polymer. Hemin, the organic catalyst, is linked to the flexible polymeric scaffold through coordination to the imidazole groups that hang out the network. This spatial arrangement, which works as a metabolic channel, is optimized for cooperative chemoenzymatic reactions in which the enzyme catalyzes first. A deep characterization of the integrated nanoreactors demonstrates that the confinement of two distinct catalytic sites in the nanospace is very effective in one-pot reactions. Moreover, besides its role as scaffold material, the polymeric mantel protects both the biocatalyst and the chemical catalyst from degradation and inactivation in the presence of organic solvents. Furthermore, the polymeric environment of the nanoreactors can be tailored in order to trigger the assembly of those into highly active heterogeneous hybrid catalysts. Finally, the new nanoreactors are applied to the efficient degradation of organic aromatic compounds using glucose as the only fuel.
机译:这里,示出了用于同时化学酶反应的双官能杂化纳米反应器的设计,合成和表征。在设计中,酶,葡萄糖氧化酶用过氧化物酶模拟催化聚合物包裹。血葱,有机催化剂,通过配位与悬挂网络的咪唑基团连接到柔性聚合物支架上。作为代谢通道的这种空间布置经过针对合作化学酶反应优化,其中酶首先催化。集成纳米反应器的深度表征表明,纳米周中两个不同催化位点的限制在单罐反应中非常有效。此外,除了其作为支架材料的作用之外,聚合物壁炉罩在有机溶剂存在下保护生物催化剂和化学催化剂免于降解和灭活。此外,纳米反应器的聚合物环境可以定制,以便将组装成高活性的非均相杂交催化剂。最后,使用葡萄糖作为唯一燃料,将新的纳米反应器应用于有效的有机芳族化合物的降解。

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