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A novel electrodeposited poly(melamine)-palladium nanohybrid catalyst on GCE: Prosperous multi-functional electrode towards methanol and ethanol oxidation

机译:GCE上的一种新型电沉积的聚(三聚氰胺) - 钯纳米羟基催化剂:富裕的多功能电极向甲醇和乙醇氧化

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摘要

Herein, a novel Poly (melamine) have been successively electmdeposited on glassy carbon electrode and decorated by Pd nanoparticles (Pd NPs) subsequently to fabricate Poly (melamine) - Pd nanocomposite. Structural geometry, morphological view, and elemental composition analysis were ensured by X-ray diffractogram, scanning electron microscope, and X-ray photoelectron spectroscopy. The electrodeposited Poly (melamine) (PME) material depicts an interconnected nano rod (50 nm) morphology leads to a nano exploder (similar to 150 nm) arrangement. Spherical shaped Pd decorated PME morphology was obtained for GCPME-Pd NPs composite (150 nm). The electrocatalytic activity of the fabricated anode electrocatalyst was examined by cyclic voltammetry, electrochemical impedance spectroscopy and chronoamperometry methods. The modified GCPME-Pd NPs composite electrode validates superior electrocatalytic behaviour towards methanol and ethanol oxidation in alkaline background. Besides, the electrochemical surface area and electrocatalytic behaviour make it a greater anode catalyst towards methanol and ethanol oxidation. The synergic effects amid the Poly (melamine)-Pd NPs composite enhances the catalytic activity, mechanical stability on the electrocatalysis of methanol and ethanol oxidation reaction superior than modified Poly (melamine) electrode. Hence, the fabricated anode electrocatalyst is proficient to get realistic approach towards the progression in the direct alcohol (methanol and ethanol) oxidation reaction in direct alcohol fuel cells (DAFCs) applications.
机译:在此,新型聚酰胺(三聚氰胺)已经连续地选择在玻璃状碳电极上,随后通过Pd纳米颗粒(Pd NP)装饰,以制造聚(三聚氰胺) - Pd纳米复合材料。通过X射线衍射图,扫描电子显微镜和X射线光电子谱确保了结构几何形状,形态学视图和元素组成分析。电沉积的聚酰胺(三聚氰胺)(PME)材料描绘了互连的纳米棒(50nm)形态导致纳米分配(类似于150nm)的布置。为GC PME-PD NPS复合(150nm)获得球形PD装饰PME形态。通过环状伏安法,电化学阻抗光谱和计时法检测制造的阳极电催化剂的电催化活性。改性的GC PME-PD NPS复合电极验证碱性背景下的甲醇和乙醇氧化的优异电催化行为。此外,电化学表面积和电催化作用使其成为甲醇和乙醇氧化的更大的阳极催化剂。聚(三聚氰胺)-PD NPS复合材料中的协同作用增强了催化活性,甲醇电常见的机械稳定性和乙醇氧化反应优于改性聚(三聚氰胺)电极。因此,制造的阳极电催化剂倾向于在直接酒精燃料电池(DAFCS)应用中的直接醇(甲醇和乙醇)氧化反应中获得现实方法。

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