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Nanoporous FeP nanorods grown on Ti plate as an enhanced binder-free hydrogen evolution cathode

机译:纳米多孔FEP纳米棒在Ti板上生长为增强的粘合剂氢进化阴极

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摘要

A porous and interconnected nanorod-like FeP structure on titanium plate has been fabricated by a simple hydrothermal method and followed by a calcination process. The nanorod is assembled by many paralleled FeP nanowires with a porous structure. With the porous surface structure of FeP nanorods and the synergetic effect from the electronic conductive Ti support, this binder-free FeP electrode brings about a desirable electrocatalytic activity for the hydrogen evolution reaction (HER), showing a low onset overpotential of 23 mV and a small Tafel slope of 39 mV dec-1. Meanwhile, its catalytic activity could be maintained almost unchanged for at least 12 h in an acidic solution. This work provides us an effective HER electrocatalyst which can be easily produced on a large scale and at low cost.
机译:钛板上的多孔和互连的纳米棒状FEP结构通过简单的水热法制造,然后进行煅烧过程。 纳米棒由具有多孔结构的许多平行的FEP纳米线组装。 随着FEP纳米棒的多孔表面结构和来自电子导电Ti载体的协同作用,这种无粘合剂的FEP电极为氢进化反应(她)带来了理想的电催化活性,显示出23mV和a的低发作过电位 小Tafel斜率为39 mV Dec-1。 同时,在酸性溶液中可以保持其催化活性至少12小时。 这项工作为我们提供了一种有效的电催化剂,可以在大规模和低成本上轻松生产。

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