通过使用NiCoO2纳米阵列在铜泡上通过电催化酸盐减少合成氨
Yan Hai1, Xiaoman Li1, Yue Cao1
1State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering, School of chemistry and Chemical Engineering, Ningxia University, Yinchuan, Ningxia 750021, PR China.
一种新的NiCoO2@Cu纳米板催化剂通过电催化酸盐还原 (eNO3RR) 有效地产生氨 (NH3). 这种催化剂表现出高产量和选择性,为氨合成提供了可持续的途径.
科学领域:
- 电化学 电化学 电化学
- 材料科学 材料科学 材料科学
- 催化剂是一种催化剂.
背景情况:
- 氨 (NH3) 对农业和工业至关重要.
- 电催化降解 (eNO3RR) 为NH3提供了一条绿色通道,但需要高效的催化剂.
研究的目的:
- 通过eNO3RR开发和评估一种新的电催化剂,通过eNO3RR有效地生产NH3.
- 为此反应研究NiCoO2@Cu纳米片的性能和稳定性.
主要方法:
- 在铜泡上对金属有机框架 (Co-MOF) 的现场生长.
- 蚀刻和烧焦以形成NiCoO2@Cu纳米板作为阴极电极.
- 在NaNO3电解质中进行电化学测试,以测量NH3产量和法拉第效率.
主要成果:
- NiCoO2@Cu纳米片在0.9V与RHE相比,实现了5940.73μg h-1 cm-2的高NH3产量.
- 观察到NH3的法拉戴效率为94.2%,在-0.7V与RHE相比.
- 在33小时反应后,NH3的选择性达到99.7%,这表明其稳定性很好.
结论:
- 由于协同的Ni-Co效应,NiCoO2@Cu纳米板对eNO3RR具有优越的电催化性能.
- 尼诺注增强了酸盐吸附,并促进了eNO3RR通路.
- 这种催化剂为氨合成提供了一个有希望的,可持续的方法.
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