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首页> 外文期刊>Electrochimica Acta >Reduced graphene oxide-polyimide/carbon nanotube film decorated with NiSe nanoparticles for electrocatalytic hydrogen evolution reactions
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Reduced graphene oxide-polyimide/carbon nanotube film decorated with NiSe nanoparticles for electrocatalytic hydrogen evolution reactions

机译:用NISE纳米粒子装饰的石墨烯氧化物 - 聚酰亚胺/碳纳米管膜用于电催化氢进化反应

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An efficient electrocatalyst based earth-abundant materials for hydrogen evolution reaction (HER) is a prerequisite for improving the efficiency of producing hydrogen. However, the synthesis of such electrocatalysts by a simple and environmentally friendly method is still a tremendous challenge. Herein, NiSe nanoparticles were in situ deposited on the reduced graphene oxide-polyimide/carbon nanotube (RGO-PI/CNT) film by a green electrodeposition method. The NiSe nanoparticles on the RGO-PI/CNT (NiSe-RGO-PI/CNT) film was employed directly as a highly active HER electrocatalyst. The RGO-PI/CNT film allowed NiSe nanoparticles to grow rapidly on its surface. NiSe nanoparticles with a small size of 35-45 nm were distributed uniformly on the surface of the RGO-PI/CNT film. The good dispersity of NiSe nanoparticles permitted the exposure of more active sites, which enhanced the activity of HER on the NiSe-RGO-PI/CNT film. The NiSe-RGO-PI/CNT film performed well HER behaviors featured by a low overpotential (270 mV), a small Tafel slope (61 mV dec(-1)) and a considerable stability. The efficient HER performance of the NiSe-RGO-PI/CNT film was originated from the synergistic effect between the RGO-PI/CNT film and NiSe nanoparticles. This exploration provided a straightforward and green method to prepare a film electrocatalyst for HER. (C) 2017 Elsevier Ltd. All rights reserved.
机译:一种高效的电催化剂用于氢化反应(她)的氢气进化反应材料是提高生产氢的效率的先决条件。然而,通过简单和环保的方法合成这种电催化剂仍然是一个巨大的挑战。这里,通过绿色电沉积方法,NISE纳米颗粒原位沉积在还原的氧化物 - 聚酰亚胺/碳纳米管(RGO-PI / CNT)膜上。 RGO-PI / CNT(NISE-RGO-PI / CNT)膜上的NISE纳米颗粒直接用作高活性的她的电催化剂。 RGO-PI / CNT膜允许NISE纳米颗粒在其表面上快速生长。尺寸为35-45nm的NISE纳米颗粒在RGO-PI / CNT膜的表面上均匀分布。 NISE纳米颗粒的良好分散性允许暴露更多的活性位点,这使得她在NISE-RGO-PI / CNT膜上增强了她的活性。 NISE-RGO-PI / CNT薄膜在低过电压(270 mV)中,良好的她的行为,小TAFEL斜率(61mV(-1))和相当大的稳定性。有效的NISE-RGO-PI / CNT薄膜的性能源自RGO-PI / CNT膜和NISE纳米颗粒之间的协同效应。这项探索提供了一种直接和绿色的方法,为她制备薄膜电催化剂。 (c)2017 Elsevier Ltd.保留所有权利。

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