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Innovative method for the preparation of catalytic surfaces: The application of microorganisms for the deposition of nanoparticles on supports

机译:催化表面制备的创新方法:微生物在纳米粒子沉积上的应用

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Most catalysts in use are supported systems where metallic or oxide active phases, usually nanocrystals, are spread over the surface of high-area carriers. Despite dynamic progress, the art and science of catalyst preparation still remain centre stage. Herein, the innovatively prepared catalysts using nonpathogenic bacteria to capture nanoparticles and deposit them on various supports by leveraging the microbial ?race for the surface? is presented. It was demonstrated that bacteria are effective biocarriers for the capture, transport, and controlled dispersion of metallic (gold, platinum) and oxide (titania, magnetite) nanoparticles on carbon, alumina, zirconia, and cordierite support surfaces. Next, the bacteria are effectively removed with oxygen plasma or transformed into a carbon film of various compositions and morphologies. The conceptual proposal is substantiated by a feasibility study showing several successful preparations of various supported catalysts via the use of microorganisms, which may be extended to other applications.
机译:使用的大多数催化剂是支持金属或氧化物活性阶段,通常纳米晶体的系统,这些系统在高面积载体的表面上铺展。尽管有动态进步,但催化剂制剂的艺术和科学仍然是中心阶段。在此,通过利用微生物的微生物捕获纳米粒子的非致病菌的创新制备的催化剂以捕获纳米颗粒并将其存放在各种支撑体上?被表达。结果表明,细菌是用于捕获,运输和控制金属(金,铂)和氧化物(二氧化钛,磁铁矿)纳米颗粒上碳,氧化铝,氧化锆和堇青石支撑表面的捕获,运输和控制分散的有效生物载体。接下来,用氧等离子体有效地除去细菌或转化成各种组合物和形态的碳膜。概念提出是通过可行性研究证实通过使用微生物的各种负载型催化剂的几种成功制剂的可行性研究来证实,这可以扩展到其他应用。

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