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Carbon nanotubes-based PdM bimetallic catalysts through N4-system for efficient ethanol oxidation and hydrogen evolution reaction

机译:通过N4-系统的基于碳纳米管的PdM双金属催化剂可有效地进行乙醇氧化和析氢反应

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摘要

Transitional metal-nitrogen-carbon system is a promising candidate to replace the Pt-based electrocatalyst due to its superior activity, durability and cost effectiveness. In this study, we have designed a simple strategy to fabricate carbon nanotubes-supported binary-nitrogen-carbon catalyst via wet-chemical method. Palladium and transitional metals (M, i.e. manganese cobalt and copper) nanoparticles are anchored through four-nitrogen system onto carbon nanotubes (denoted as PdM-N4/CNTs). This material has been used as bifunctional electrocatalyst for electrochemical ethanol oxidation reaction and hydrogen evolution reaction for the first time. The N4-linked nanoparticles onto carbon nanotubes plays a crucial role in intrinsic catalytic activity for both reactions in 1 M KOH electrolyte. Among three PdM-N4/CNTs catalysts, the PdMn-N4/CNTs catalyst exhibits higher catalytic activity in terms of current density, mass activity and stability compared to the benchmark Pt/C. The robust electrocatalysis are inherited from the better attachment of PdMn through N4-system onto carbon nanotubes, comparatively smaller particles formation with better dispersion and higher electrical conductivity.
机译:过渡金属-氮-碳系统具有出色的活性,耐用性和成本效益,因此有望取代基于Pt的电催化剂。在这项研究中,我们设计了一种通过湿化学方法制备碳纳米管负载的二元氮碳催化剂的简单策略。钯和过渡金属(M,即锰钴和铜)纳米颗粒通过四氮系统固定在碳纳米管(表示为PdM-N4 / CNT)上。该材料首次用作电化学乙醇氧化反应和氢释放反应的双功能电催化剂。碳纳米管上的N4连接的纳米颗粒在1 M KOH电解质中的两个反应的固有催化活性中都起着至关重要的作用。在三种PdM-N4 / CNTs催化剂中,与基准Pt / C相比,PdMn-N4 / CNTs催化剂在电流密度,质量活性和稳定性方面表现出更高的催化活性。强大的电催化作用继承自PdMn通过N4-系统更好地附着在碳纳米管上,相对较小的颗粒形成,更好的分散性和更高的电导率。

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