首页> 外文期刊>Advanced Science >Electrochemical Flocculation Integrated Hydrogen Evolution Reaction of [email?protected] ‐Doped Carbon Nanotubes on Iron Foam for Ultralow Voltage Electrolysis in Neutral Media
【24h】

Electrochemical Flocculation Integrated Hydrogen Evolution Reaction of [email?protected] ‐Doped Carbon Nanotubes on Iron Foam for Ultralow Voltage Electrolysis in Neutral Media

机译:[电子邮件吗?受保护] - 掺杂铁泡沫中的电化学絮凝整合氢气演化反应在中性介质中的超级电压电解铁泡沫中的碳纳米管

获取原文
       

摘要

Hydrogen (H 2 ) production is a key step in solving the energy crisis in the future. Electrocatalytic water splitting suffers from sluggish anodic oxygen evolution reaction (OER) kinetics leading to low energy conversion efficiency. Herein, a strategy is presented that integrates anodic electrochemical flocculation with cathodic hydrogen production from water splitting in 0.5 m Na 2 SO 4 . Iron encapsulated in a nitrogen‐doped carbon nanotubes array on iron foam ( [email?protected] ‐CNT/IF) is employed as an electrode for the hydrogen evolution reaction (HER), and the [email?protected] ‐CNT/IF possesses superior HER activity requiring an overpotential of 525 mV to achieve 10 mA cm ?2 , which is close to that of 20 wt% Pt/C. Benefiting from the lower oxidation potential of iron ( E ° Fe/Fe2+ , 0.44 V) than that of OER ( E 0 OH‐/O2 , 1.23 V), the cell voltage for integrated electrochemical flocculation and H 2 production is significantly reduced by 1.31 V relative to overall water splitting to achieve 20 mA cm ?2 . More important, the production of electrochemical flocculation can be applied to water purification, because of the excellent adsorption capacity. Finally, metal–carbon electrocatalysts are prepared again by pyrolysis of flocculation adsorbents containing toxic heavy metals and organics. This result provides a new direction for designing a heterogeneous electrolysis system for energy conversion and environmental treatment applications.
机译:氢气(H 2)生产是解决未来能源危机的关键步骤。电催化水分裂遭受缓慢的阳极氧气进化反应(OER)动力学,导致能量转换效率低。这里,提出了一种策略,其将阳极电化学絮凝与阴极氢气产生,从0.5M Na 2 SO 4中的水分解。封装在铁泡沫上的氮气碳纳米管阵列中的铁([email x保护] -cnt / if)用作氢进化反应(她)的电极,以及[电子邮件吗?受保护的] -cnt /如果拥有优越的她的活动需要525 mV的过电位,以实现10 mA cm?2,其接近20wt%pt / c。受益于铁的较低氧化电位(E°Fe / Fe2 +,0.44 V)(E 0 OH-/ O2,1.23 V),集成电化学絮凝和H 2产生的电池电压明显减少1.31 v相对于整个水分分裂以达到20 mA cm?2。更重要的是,电化学絮凝的生产可以应用于净水,因为具有优异的吸附能力。最后,通过絮凝的絮凝剂吸附剂再次制备金属碳电催化剂,含有有毒重金属和有机物。该结果为设计用于能量转换和环境处理应用的异质电解系统提供了新的方向。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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