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Hollow zeolite microspheres as a nest for enzymes: a new route to hybrid heterogeneous catalysts

机译:作为酶的空心沸石微球:杂交异构催化剂的新途径

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摘要

In the field of heterogeneous catalysis, the successful integration of enzymes and inorganic catalysts could pave the way to multifunctional materials which are able to perform advanced cascade reactions. However, such combination is not straightforward, for example in the case of zeolite catalysts for which enzyme immobilization is restricted to the external surface. Herein, this challenge is overcome by developing a new kind of hybrid catalyst based on hollow zeolite microspheres obtained by the aerosol-assisted assembly of zeolite nanocrystals. The latter spheres possess open entry-ways for enzymes, which are then loaded and cross-linked to form cross-linked enzyme aggregates (CLEAs), securing their entrapment. This controlled design allows the combination of all the decisive features of the zeolite with a high enzyme loading. A chemo-enzymatic reaction is demonstrated, where the structured zeolite material is used both as a nest for the enzyme and as an efficient inorganic catalyst. Glucose oxidase (GOx) ensures the in situ production of H2O2 subsequently utilized by the TS-1 zeolite to catalyze the epoxidation of allylic alcohol toward glycidol. The strategy can also be used to entrap other enzymes or combination of enzymes, as demonstrated here with combi-CLEAs of horseradish peroxidase (HRP) and glucose oxidase. We anticipate that this strategy will open up new perspectives, leveraging on the spray-drying (aerosol) technique to shape microparticles from various nano-building blocks and on the entrapment of biological macromolecules to obtain new multifunctional hybrid microstructures.
机译:在异质催化领域中,酶和无机催化剂的成功整合可以铺平化能够进行高级级联反应的多功能材料。然而,这种组合并不简单,例如在沸石催化剂的情况下,酶固定的限制在外表面上。在此,通过基于通过沸石纳米晶体的气溶胶辅助组装获得的中空沸石微球来克服这种挑战。后者球体具有开放的进入方法,然后加载和交联以形成交联酶聚集体(CLEA),确保其截留。这种受控设计允许具有高酶负载的沸石的所有决定性的组合。对化学酶反应进行说明,其中结构化沸石材料作为酶的巢和作为有效的无机催化剂。葡萄糖氧化酶(GOX)确保了在TS-1沸石随后使用的H 2 O 2的原位产生,以催化烯丙基醇朝向缩水甘油的环氧化。该策略还可用于诱捕其他酶或酶组合,如这里用辣根过氧化物酶(HRP)和葡萄糖氧化酶的组合丁香树。我们预计该策略将开辟新的视角,利用喷雾干燥(气溶胶)技术来形状从各种纳米积木的微粒和生物大分子的夹带,以获得新的多功能混合微结构。

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  • 来源
    《Chemical science 》 |2020年第4期| 共8页
  • 作者单位

    UCLauvain ICMN Pl L Pasteur 1 B-1348 Louvain La Neuve Belgium;

    Univ Strasbourg IPCMS UMR 7504 CNRS 23 Rue Loess F-67034 Strasbourg 2 France;

    Univ Strasbourg IPCMS UMR 7504 CNRS 23 Rue Loess F-67034 Strasbourg 2 France;

    UCLauvain ICMN Pl L Pasteur 1 B-1348 Louvain La Neuve Belgium;

    PSL Res Univ LCMCP CNRS Coll France Sorbonne Univ 4 Pl Jussieu F-75005 Paris France;

    PSL Res Univ LCMCP CNRS Coll France Sorbonne Univ 4 Pl Jussieu F-75005 Paris France;

    UCLauvain ICMN Pl L Pasteur 1 B-1348 Louvain La Neuve Belgium;

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  • 正文语种 eng
  • 中图分类 化学 ;
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