用于将硝酸盐高效还原为氨的新兴 MXene 基电催化剂:最新进展、挑战与前景

Zhijie Cui, Chunli Li, Wenchao Peng, Jiapeng Liu
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引用次数: 0

摘要

氨(NH3)在传统农业和新兴可再生能源中发挥着不可替代的作用。其在工业中的制备主要依赖于能源密集型的哈伯-博施工艺,该工艺能耗高、二氧化碳排放量大。最近,由可再生能源驱动的硝酸盐还原反应(NO3-RR)受到广泛关注。该反应以水为氢源,NO3- 为氮源,在温和条件下可高效合成 NH3,有利于降低能耗,促进碳循环。众所周知,电催化剂的特性决定了 NO3-RR 的性能。作为一种新兴的二维材料,MXenes(过渡金属碳化物/氮化物/碳氮化物)具有优异的导电性、较大的比表面积和可控的表面官能团,在 NO3-RR 领域显示出巨大的应用潜力。本综述总结了 MXenes 的结构、性质和合成策略,阐明了其从基础到应用的可能性。然后,总结了将基于 MXene 的电催化剂应用于 NO3-RR 的最新研究进展,并分析了不同 NH3 检测方法的适用性。最后,介绍了 NO3-RR 目前面临的挑战和未来前景。本综述旨在为合理设计可持续合成 NH3 的 MXene 基电催化剂提供深入见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Emerging MXene-based electrocatalysts for efficient nitrate reduction to ammonia: recent advance, challenges, and prospects
Ammonia (NH3) plays an irreplaceable role in traditional agriculture and emerging renewable energy. Its preparation in industry mainly relies on the energy-intensive Haber-Bosch process, which is associated with high energy consumption and large CO2 emissions. Recently, the nitrate reduction reaction (NO3-RR) driven by renewable energy has received extensive attention. This reaction can efficiently synthesize NH3 with water as a hydrogen source and NO3- as a nitrogen source under mild conditions, which is conducive to reducing energy consumption and promoting the carbon cycle. It is well known that the properties of electrocatalysts determine the performance of NO3-RR. As an emerging two-dimensional material, MXenes (transition metal carbides/nitrides/carbon nitrides) possess excellent electrical conductivity, large specific surface area and controllable surface functional groups, which shows great application potential in the field of NO3-RR. Herein, this review summarized the structure, properties and synthesis strategies of MXenes to elucidate the possibilities from foundation to application. Then, the latest research progress in applying MXene-based electrocatalysts to NO3-RR was summarized and the applicability of different NH3 detection methods was analyzed. Finally, the present challenges and future prospects of NO3-RR were presented. This review aimed to provide thoughtful insights into the rational design of MXene-based electrocatalysts for sustainable NH3 synthesis.
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