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Composition-Dependent Electrocatalytic Activity of Palladium-Iridium Binary Alloy Nanoparticles Supported on the Multiwalled Carbon Nanotubes for the Electro-Oxidation of Formic Acid

机译:多壁碳纳米管上负载的钯-铱二元合金纳米粒子的组成依赖性电催化甲酸的电氧化

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Surface-functionalized multiwalled carbon nanotubes (MWCNTs) supported Pd100-xIrx binary alloy nanoparticles (Pd100-xIrx/MWCNT) with tunable Pd/Ir atomic ratios were synthesized by a thermolytic process at varied ratios of bis(acetylacetonate) palladium(II) and iridium-(III) 2,4-pentanedionate precursors and then applied as the electrocatalyst for the formic acid electro-oxidation. The X-ray diffraction pattern (XRD) and transmission electron microscope (TEM) analysis showed that the Pd100-xIrx alloy nanoparticles with the average size of 6.2 nm were uniformly dispersed on the MWCNTs and exhibited a single solid solution phase with a face-centered cubic structure. The electrocatalytic properties were evaluated through the cyclic voltammetry and chronoamperometry tests, and the results indicated that both the activity and stability of Pd100-xIrx/MWCNT were strongly dependent on the Pd/Ir atomic ratios: the best electrocatalytic performance in terms of onset potential, current density, and stability against CO poisoning was obtained for the Pd79Ir21/MWCNT. Moreover, compared with pure Pd nanoparticles supported on MWCNts (Pd/MWCNT), the Pd79Ir21/MWCNT exhibited enhanced steady-state current density and higher stability, as well as maintained excellent electrocatalytic activity in high concentrated formic acid solution, which was attributed to the bifunctional effect through alloying Pd with transition metal.
机译:通过功能化的双(乙酰​​丙酮)钯(II)和铱的热分解工艺合成了具有可调节Pd / Ir原子比的表面功能化多壁碳纳米管(MWCNT)负载的Pd100-xIrx二元合金纳米颗粒(Pd100-xIrx / MWCNT) -(III)2,4-戊二酮酸酯前体,然后用作甲酸电氧化的电催化剂。 X射线衍射图谱(XRD)和透射电子显微镜(TEM)分析表明,平均粒径为6.2 nm的Pd100-xIrx合金纳米颗粒均匀分散在MWCNT上,并呈现出一个以面心为中心的固溶相立方结构。通过循环伏安法和计时电流法测试对电催化性能进行了评估,结果表明,Pd100-xIrx / MWCNT的活性和稳定性都强烈依赖于Pd / Ir原子比:就起始电势而言,最佳的电催化性能, Pd79Ir21 / MWCNT获得了电流密度和对CO中毒的稳定性。此外,与负载在MWCNts上的纯Pd纳米颗粒(Pd / MWCNT)相比,Pd79Ir21 / MWCNT表现出更高的稳态电流密度和更高的稳定性,并在高浓度甲酸溶液中保持了出色的电催化活性,这归因于通过将Pd与过渡金属合金化来实现双功能作用。

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