首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Polydopamine-induced surface functionalization of carbon nanofibers for Pd deposition enabling enhanced catalytic activity for the oxygen reduction and evolution reactions
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Polydopamine-induced surface functionalization of carbon nanofibers for Pd deposition enabling enhanced catalytic activity for the oxygen reduction and evolution reactions

机译:用于Pd沉积的碳纳米纤维的聚二胺诱导的表面官能化,使得增强氧还原和进化反应的催化活性增强

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摘要

A detailed understanding of the surface modification or coating of materials is becoming more important for the design and development of hybrid materials for their advanced applications. The characteristics of polydopamine-coated surfaces were explored by varying dopamine concentration and polymerization time for noble metal deposition, which is a key for the development of advanced catalysts. The variation of these parameters for dopamine coating on carbon nanofibers (CNFs) finally modulated the amount of palladium (Pd) nanoparticles deposited on the dopamine-coated surface, which is CNFs. The results showed that the higher the dopamine concentration, the larger the amount of deposited Pd, while the polymerization time is inversely proportional to the amount of Pd deposited. Thereby, the optimally functionalized surface for Pd deposition was found with a dopamine concentration of 3mg mL(-1) and a reaction time of 6 hours (PDAT1). This optimum Pd/CNF hybrid material showed very promising electrochemical and catalytic performances with a high discharge capacity of about 5.26 mA h cm(-2) which could be maintained up to the 67th cycle at a cut-off capacity of 0.2 mA h cm(-2) in non-aqueous Li-O-2 batteries and an impressive catalytic activity for the oxygen reduction reaction via the preferred 4 electron pathway in aqueous electrolyte.
机译:对材料的表面改性或材料涂层的详细了解对于其先进应用的混合材料的设计和开发变得更加重要。通过改变多巴胺浓度和贵金属沉积的聚合时间来探索聚二胺涂覆的表面的特征,这是发育晚期催化剂的关键。在碳纳米纤维上的多巴胺涂层(CNFS)上这些参数的变化最终调节沉积在多巴胺涂覆表面上的钯(Pd)纳米颗粒的量,即CNF。结果表明,多巴胺浓度越高,沉积Pd的量越大,而聚合时间与沉积的Pd量成反比。由此,发现用于Pd沉积的最佳官能化表面,具有3mg ml(-1)的多巴胺浓度和6小时的反应时间(PDAT1)。该最佳Pd / CNF杂化材料显示出非常有前途的电化学和催化性能,高放电容量为约5.26mA H cm(-2),其可以在0.2 mA H cm的截止能力下保持直到第67个循环( -2)在非水性Li-O-2电池中,并通过优选的4电子通路在水性电解质中进行氧还原反应的令人印象深刻的催化活性。

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