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首页> 外文期刊>Journal of Catalysis >Design and synthesis of a versatile cooperative catalytic aerobic oxidation system with co-immobilization of palladium nanoparticles and laccase into the cavities of MCF
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Design and synthesis of a versatile cooperative catalytic aerobic oxidation system with co-immobilization of palladium nanoparticles and laccase into the cavities of MCF

机译:用钯纳米粒子的共固化和漆酶与MCF腔体共固化的多功能合作催化性好氧氧化系统的设计与合成

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We have designed a versatile reusable cooperative catalyst oxidation system, consisting of palladium nanoparticles and laccase with unprecedented reactivity. This biohybrid catalyst was synthesized by the stepwise immobilization of laccase as an enzyme and Pd as a nanometallic component into the same cavity of siliceous mesocellular foams (MCF). MCF and nanobiohybrid catalyst were characterized by BET, SAXS, SEM, EDX elemental mapping, ICP-OES, TEM, TGA, FT-IR, and XPS techniques and the stepwise immobilization of laccase enzyme and Pd onto MCF was evaluated through several compelling electrochemical studies. The present catalytic system exhibits high activity toward (i) aerobic oxidation of alcohols to the corresponding carbonyl compounds, (ii) aerobic oxidation of cyclohexanol and cyclohexanone to phenol and (iii) aerobic dehydrogenation of important N-heteocyclic compounds (tetrahydro quinazolines, quinazolonones, pyrazolines and 1,4-diydropyridines) in the presence of catalytic amount of hydroquinone (HQ) as mediator in phosphate buffer (0.1 M, pH 4.5, 4 mL)/THF (4%, 1 mL) as solvent under mild conditions. The immobilization of both oxygen-activating catalyst (laccase) and oxidizing catalyst (Pd) onto the same support makes the present catalyst system superior to other currently available heterogeneous palladium based catalytic aerobic oxidation systems. (C) 2020 Elsevier Inc. All rights reserved.
机译:我们设计了一种多功能可重复使用的合作催化剂氧化系统,由钯纳米粒子和具有前所未有的反应性的漆酶组成。该生物次阅催化剂通过梯子酶的逐步固定为酶,作为纳米金属部件合成,作为纳米金属部件(MCF)中的相同腔体。通过若干引人注目的电化学研究评估MCF和纳米嗜酸剂催化剂,通过BET,SAX,SEM,EDX元素映射,ICP-OES,TEM,TGA,FT-IR和XPS技术以及曲晶酶和Pd上的逐步固定到MCF上的逐步固定。本催化系统对(i)醇的有氧氧化至相应的羰基化合物,(ii)环己醇和环己酮至苯酚(III)的有氧氧化和(iii)的有氧脱氢(四羟基唑啉,喹唑啉酮,在磷酸盐缓冲液(0.1M,pH 4.5,4mL)/ THF(4%,1mL)的介质在温和条件下,吡唑啉和1,4-二氢吡啶的存在。将氧激活催化剂(漆酶)的固定和氧化催化剂(Pd)固定到同一载体上使本发明的催化剂体系优于其他目前可用的非均相钯基催化性好氧氧化体系。 (c)2020 Elsevier Inc.保留所有权利。

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