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Green ammonia synthesis using CeO2/RuO2 nanolayers on vertical graphene catalyst via electrochemical route in alkaline electrolyte

机译:绿色的氨合成使用CeO2 / RuO2 nanolayers在垂直石墨烯通过电化学催化剂路线在碱性电解液

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摘要

The electrochemical synthesis of ammonia at ambient temperature and pressure has the potential to replace the conventional process for the production of ammonia. However, the low ammonia yield and poor long-term stability of catalysts for the synthesis of ammonia hinders the application of this technology. Herein, we endeavored to tackle this challenge by synthesizing 3-D vertical graphene (VG) on Ni foam via a one-step, low-temperature plasma process, which offered high conductivity and large surface area. Subsequently, the vertical graphene on Ni foam was loaded with nanolayers of ruthenium oxide (RuO2, similar to 2 nm) and cerium oxide (CeO2, <20 nm) nanoparticles via magnetron sputtering. The incorporation of nanoparticle layers (RuO2 and CeO2/RuO2) on VG significantly increased the NH3 yield in KOH electrolyte. Finally, the performance and long-term stability of this composite material were successfully demonstrated by the addition of CeO2/RuO2 nanolayers on the VG electrocatalyst. The catalyst achieved an excellent performance with a high ammonia synthesis yield of 50.56 mu g mg(total cat.)(-1) h(-1) (1.11 x 10(-10) mol cm(-2) s(-1)) during the performance evaluation period of 36 h. This observation was also verified by density functional theory calculation, where CeO2 exhibited the best catalytic performance compared to RuO2 and pristine graphene.
机译:电化学合成的氨环境温度和压力的潜在的替代传统的过程氨的生产。氨产量和长期稳定性差催化剂氨合成的阻碍这种技术的应用。努力应对这一挑战合成三维垂直石墨烯(VG)倪泡沫通过一步法、低温等离子体提供了高导电性和过程大的表面积。石墨烯在泡沫镍的nanolayers加载氧化钌(RuO2,类似于2海里)氧化铈(CeO2纳米颗粒通过< 20海里)磁控溅射。(RuO2和CeO2纳米颗粒层/ RuO2) VG大大增加了NH3在KOH收益率电解液。长期稳定的复合材料成功证明了的吗CeO2 / RuO2 nanolayers VG electrocatalyst。实现了性能优良的催化剂高氨合成收率为50.56μgh毫克(总猫。)(1)(1)(1.11 x 10(-10)摩尔厘米(2)(1))在绩效评估段36 h。这个观察是也通过密度泛函理论进行验证计算,CeO2表现出最好的比起RuO2和催化性能原始的石墨烯。

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