Electrochemical nitrate reduction to ammonia using copper-based electrocatalysts

Rong Zhang , Shaoce Zhang , Huilin Cui , Ying Guo , Nan Li , Chunyi Zhi
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Abstract

Ammonia (NH3) is an ideal green fuel with high energy density and plays an indispensable role in fertilizer production. Electrochemical reduction of nitrate (NO3), a toxic pollutant in groundwater, has shown promising as a viable approach to converting waste into valuable NH3 under ambient conditions, offering an alternative to the energy-intensive Haber-Bosch process. Due to their high efficiency, copper (Cu)-based materials have shown great potential as electrocatalysts for the NO3 reduction reaction (NO3RR) to NH3. In this review, we provide a comprehensive summary of the fundamental principles underlying nitrate reduction over Cu-based electrocatalysts and discuss various strategies to enhance the performance of NO3 reduction, including facets, morphologies, size, surface functionalization, compositional engineering, and defect engineering. We also delve into the relationship between the electrocatalytic performance and structure characteristics of electrocatalysts and thoroughly examine the reaction mechanism involved in NO3RR. Furthermore, we highlight the existing challenges and prospective paths forward in this area of study. This review offers valuable insights and guidance for the strategic design and optimization of Cu-based electrocatalysts for NO3RR applications.

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使用铜基电催化剂电化学还原硝酸盐至氨
氨(NH3)是一种理想的绿色燃料,具有高能量密度,在化肥生产中发挥着不可或缺的作用。硝酸盐(NO3-)是地下水中的一种有毒污染物,电化学还原硝酸盐(NO3-)已被证明是在环境条件下将废物转化为有价值的 NH3 的一种可行方法,为高能耗的哈伯-博施工艺提供了一种替代方案。由于铜(Cu)基材料的高效性,它们作为将 NO3 还原成 NH3 反应(NO3-RR)的电催化剂已显示出巨大的潜力。在这篇综述中,我们全面总结了铜基电催化剂还原硝酸盐的基本原理,并讨论了提高 NO3 还原性能的各种策略,包括刻面、形态、尺寸、表面功能化、成分工程和缺陷工程。我们还深入探讨了电催化性能与电催化剂结构特征之间的关系,并深入研究了 NO3-RR 所涉及的反应机理。此外,我们还强调了这一研究领域的现有挑战和未来发展方向。本综述为用于 NO3-RR 应用的铜基电催化剂的战略设计和优化提供了宝贵的见解和指导。
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