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首页> 外文期刊>Journal of Applied Electrochemistry >Preparation of 3D electrocatalysts and catalysts for gas-phase reactions, through electrodeposition or galvanic displacement
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Preparation of 3D electrocatalysts and catalysts for gas-phase reactions, through electrodeposition or galvanic displacement

机译:通过电沉积或电置换制备用于气相反应的3D电催化剂和催化剂

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摘要

Metal foams are interesting supports for the preparation of electrocatalysts and catalysts for gas-phase processes, like partial and total low-temperature oxidation of hydrocarbons and other chemicals, owing to their large surface area, electrical conductivity, efficient mass and heat transfer, mechanical strength and resistance to oxidation. High catalytic activity in specific processes can be imparted to metal foams by the deposition of appropriately chosen noble metal nanoparticles. Deposition may be achieved electrochemically or through spontaneous deposition processes based on galvanic displacement reactions in which a noble metal displaces a less noble one. In the materials prepared by these methods, noble metal nanoparticles are in direct electrical contact with metal foams, so cyclic voltammetry may be effectively used to determine their surface area, a parameter of primary importance in heterogeneous catalysis. These features are illustrated by reviewing the preparation, characterization and catalytic testing of various noble-metal-modified Ni and Fe-Cr-Al alloy metal foams, highlighting advantages and limitations of the proposed methods, as compared with state of the art approaches.
机译:金属泡沫由于其较大的表面积,导电率,有效的质量和热传递,机械强度,是用于制备气相工艺用电催化剂和催化剂的有趣载体,例如烃和其他化学品的部分和全部低温氧化和抗氧化性。通过沉积适当选择的贵金属纳米颗粒,可以在特定过程中赋予金属泡沫以高催化活性。沉积可以电化学方式或通过基于电流置换反应的自发沉积工艺实现,其中贵金属置换了次贵金属。在通过这些方法制备的材料中,贵金属纳米粒子与金属泡沫直接电接触,因此循环伏安法可有效用于确定其表面积,这是非均相催化中最重要的参数。通过回顾各种贵金属改性的Ni和Fe-Cr-Al合金金属泡沫的制备,表征和催化测试来说明这些特征,与现有技术相比,突出了所提出方法的优点和局限性。

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