分解水
析氧
电解
电化学
制氢
催化作用
电解质
电解水
化学工程
材料科学
可逆氢电极
双功能
纳米技术
化学
电催化剂
无机化学
电极
工作电极
物理化学
工程类
光催化
生物化学
作者
Gh. Barati Darband,N. Lotfi,A. Aliabadi,Suyeon Hyun,Sangaraju Shanmugam
标识
DOI:10.1016/j.electacta.2021.138335
摘要
The emergence of high-performance noble metal-free electrodes in water splitting operations to produce hydrogen is of paramount importance to generate new energy in the future. The oxygen evolution reaction (OER) in water splitting is a slow reaction that consumes much energy to produce hydrogen, and generally, replacing an anodic reaction with less thermodynamic potential can significantly improve the efficiency of hydrogen production. The hydrazine oxidation reaction (HzOR) can be a great alternative to OER. We describe the fabrication of [email protected] nano-micro dendrite using a simple electrodeposition method. The developed [email protected] is used as a bifunctional electrode for hydrogen evolution reaction (HER) and HzOR. The high active electrochemical area, the porous structure and the penetration of electrolyte into the pores, the synergistic effect between Ni and Cu, and the rapid separation of the bubbles created from the surface led to the creation of an electrode with excellent electrocatalytic activity. The HER and HzOR processes required only -70 mV vs.RHE and 3.88 mV vs.RHE potentials in 1.0 M KOH and 1.0 M KOH + 0.5 M N2H4, respectively, to generate a current density of 10 mA.cm−2. Also, a very low potential of 125 mV was required in the hybrid overall water electrolysis system. This study presents a new, cost-effective, versatile, and industrial strategy to fabricate three-dimensional electrocatalysts.
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