用于电化学氮还原的新兴二维纳米材料。
Emerging two-dimensional nanomaterials for electrochemical nitrogen reduction.
机构信息
Key Laboratory of Colloid and Interface Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, State Key Laboratory of Crystal Material, Shandong University, Jinan 250100, China.
School of Energy and Power, Jiangsu University of Science and Technology, Zhenjiang 212100, China.
出版信息
Chem Soc Rev. 2021 Nov 15;50(22):12744-12787. doi: 10.1039/d1cs00120e.
Ammonia (NH) is essential to serve as the biological building blocks for maintaining organism function, and as the indispensable nitrogenous fertilizers for increasing the yield of nutritious crops. The current Haber-Bosch process for industrial NH production is highly energy- and capital-intensive. In light of this, the electroreduction of nitrogen (N) into valuable NH, as an alternative, offers a sustainable pathway for the Haber-Bosch transition, because it utilizes renewable electricity and operates under ambient conditions. Identifying highly efficient electrocatalysts remains the priority in the electrochemical nitrogen reduction reaction (NRR), marking superior selectivity, activity, and stability. Two-dimensional (2D) nanomaterials with sufficient exposed active sites, high specific surface area, good conductivity, rich surface defects, and easily tunable electronic properties hold great promise for the adsorption and activation of nitrogen towards sustainable NRR. Therefore, this Review focuses on the fundamental principles and the key metrics being pursued in NRR. Based on the fundamental understanding, the recent efforts devoted to engineering protocols for constructing 2D electrocatalysts towards NRR are presented. Then, the state-of-the-art 2D electrocatalysts for N reduction to NH are summarized, aiming at providing a comprehensive overview of the structure-performance relationships of 2D electrocatalysts towards NRR. Finally, we propose the challenges and future outlook in this prospective area.
氨(NH)是维持生物体功能的必需生物构建块,也是增加营养作物产量的不可或缺的氮肥料。目前工业 NH 生产的哈伯-博世工艺高度能源和资本密集型。鉴于此,将氮气(N)电化学还原为有价值的 NH,作为一种替代方法,为哈伯-博世转型提供了一条可持续的途径,因为它利用可再生电力并在环境条件下运行。确定高效的电催化剂仍然是电化学氮气还原反应(NRR)的优先事项,其标志是优越的选择性、活性和稳定性。二维(2D)纳米材料具有足够的暴露活性位点、高比表面积、良好的导电性、丰富的表面缺陷和易于调节的电子特性,为氮气的吸附和活化提供了实现可持续 NRR 的巨大潜力。因此,本综述重点介绍了 NRR 的基本原理和关键指标。在基本理解的基础上,介绍了构建 2D 电催化剂用于 NRR 的工程方案的最新进展。然后,总结了用于 N 还原为 NH 的最先进的 2D 电催化剂,旨在全面概述 2D 电催化剂对 NRR 的结构-性能关系。最后,我们提出了在这个有前景的领域中的挑战和未来展望。