...
首页> 外文期刊>Nanoscale >Multi-dimensional collaboration promotes the catalytic performance of 1D MoO3 nanorods decorated with 2D NiS nanosheets for efficient water splitting
【24h】

Multi-dimensional collaboration promotes the catalytic performance of 1D MoO3 nanorods decorated with 2D NiS nanosheets for efficient water splitting

机译:多维合作促进催化性能的纳米一维MoO3作用用2 d NiS nanosheets装饰的效率水分离

获取原文
获取原文并翻译 | 示例

摘要

The ability to manipulate heterostructures is of great importance to achieve high-performance electrocatalysts for direct water-splitting devices with excellent activity toward hydrogen production. Herein, a novel top-down strategy involving the in situ transformation of one-dimensional MoO3 nanorod arrays grafted with two-dimensional NiS nanosheets supported on a three-dimensional nickel foam skeleton is proposed. Namely, a heterostructured electrocatalyst on the Ni foam skeleton containing MoO3 nanorod arrays decorated with NiS nanosheets is synthesized by a facile hydrothermal method followed by one-step sulfidation treatment. Experimental analysis confirmed that this novel composite has the merits of a large quantity of accessible active sites, unique distribution of three different spatial dimensions, accelerated mass/electron transfer, and the synergistic effect of its components, resulting in impressive electrocatalytic properties toward the hydrogen evolution reaction and oxygen evolution reaction. Furthermore, an advanced water-splitting electrolyzer was assembled with NiS/MoO3/NF as both the anodic and cathodic working electrode. This device requires a low cell voltage of 1.56 V to afford a water-splitting current density of 10 mA center dot cm(-2) in basic electrolyte, outperforming previously reported electrocatalysts and even state-of-the-art electrocatalysts. More significantly, this work provides a way to revolutionize the design of heterostructured electrocatalysts for the large-scale commercial production of hydrogen using direct water-splitting devices.
机译:的能力来操纵的异质结构重视实现高性能electrocatalysts直接水分解对氢设备的活动生产。包括原位转化一维MoO3奈米棒阵列嫁接在一个二维NiS nanosheets支持三维镍泡沫骨架建议。electrocatalyst倪泡沫骨架包含MoO3奈米棒阵列装饰着NiSnanosheets合成肤浅水热法一步紧随其后盐性治疗。证实,复合的这本小说大量的访问活动网站,独特的三种不同的分布空间维度,加速质量/电子转移的协同效应组件,导致让人印象深刻对氢electrocatalytic属性进化反应和氧反应。此外,一个先进的水分解电解槽与NiS / MoO3 / NF组装阳极和阴极工作电极。这个设备需要低电压为1.56 V水分解电流密度为10马中心圆点厘米(2)基础电解液,超过之前报道electrocatalysts甚至是最先进的electrocatalysts。提供了一种革命性的设计用electrocatalysts的大规模商业生产氢使用直接水分解设备。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号