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首页> 外文期刊>Journal of Colloid and Interface Science >Microwave-assisted synthesis of palladium nanoparticles intercalated nitrogen doped reduced graphene oxide and their electrocatalytic activity for direct-ethanol fuel cells
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Microwave-assisted synthesis of palladium nanoparticles intercalated nitrogen doped reduced graphene oxide and their electrocatalytic activity for direct-ethanol fuel cells

机译:微波辅助合成钯纳米粒子插入氮气掺杂的石墨烯氧化物及其直接乙醇燃料电池的电催化活性

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Palladium nanoparticles decorated reduced graphene oxide (Pd-rGO) and palladium nanoparticles intercalated inside nitrogen doped reduced graphene oxide (Pd-NrGO) hybrids have been synthesized by applying a very simple, fast and economic route using microwave-assisted in-situ reduction and exfoliation method. The Pd-NrGO hybrids materials show good activity as catalyst for ethanol electro oxidation for direct ethanol fuel cells (DEFCs) as compared to Pd-rGO hybrids. The enhanced direct ethanol fuel cell can serve as alternative to fossil fuels because it is renewable and environmentally-friendly with a high energy conversion efficiency and low pollutant emission. As proof of concept, the electrocatalytic activity of Pd-NrGO hybrid material was accessed by cyclic voltammetry in presence of ethanol to evaluate its applicability in direct-ethanol fuel cells (DEFCs). The Pd-NrGO catalyst presented higher electro active surface area (similar to 6.3 m(2) g(-1)) for ethanol electro-oxidation when compared to Pd-rGO hybrids (similar to 3.7 m(2) g(-1)). Despite the smaller catalytic activity of Pd-NrGO, which was attributed to the lower exfoliation rate of this material in relation to the Pd-rGO, Pd-NrGO showed to be very promising and its catalytic activity can be further improved by tuning the synthesis parameters to increase the exfoliation rate. (C) 2018 Elsevier Inc. All rights reserved.
机译:通过使用微波辅助原位还原和剥离,通过应用非常简单,快速和经济的路径,通过应用了非常简单,快速和经济的路径来合成了钯的纳米甲基氧化物(Pd-Rgo)和插入的氮气纳米粒子嵌入的氮气氧化物(PD-NRGO)杂种的钯纳米颗粒方法。与PD-RGO杂交机相比,PD-NRGO杂交材料显示为乙醇电氧化的催化剂,用于直接乙醇燃料电池(DEFC)。增强的直接乙醇燃料电池可以作为化石燃料的替代品,因为它是可再生和环保的,具有高能量转换效率和低污染物排放。作为概念证明,在乙醇存在下通过循环伏安法进入PD-NRGO混合材料的电催化活性,以评估其在直接乙醇燃料电池(DEFC)中的适用性。与PD-RGO杂交化相比,PD-NRGO催化剂呈现出乙醇电氧化的更高的电活性表面积(类似于6.3M(2)G(-1))(类似于3.7M(2)G(-1)) )。尽管PD-NRGO的催化活性较小,其归因于该材料的较低的剥离率与PD-RGO相关,但PD-NRGO显示出非常有前途,并且通过调整合成参数可以进一步提高其催化活性增加剥离率。 (c)2018 Elsevier Inc.保留所有权利。

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