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Catalysts for nitrogen reduction to ammonia

机译:为减少氨氮催化剂

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The production of synthetic ammonia remains dependent on the energy- and capital-intensive Haber-Bosch process. Extensive research in molecular catalysis has demonstrated ammonia production from dinitrogen, albeit at low production rates. Mechanistic understanding of dinitrogen reduction to ammonia continues to be delineated through study of molecular catalyst structure, as well as through understanding the naturally occurring nitrogenase enzyme. The transition to Haber-Bosch alternatives through robust, heterogeneous catalyst surfaces remains an unsolved research challenge. Catalysts for electrochemical reduction of dinitrogen to ammonia are a specific focus of research, due to the potential to compete with the Haber-Bosch process and reduce associated carbon dioxide emissions. However, limited progress has been made to date, as most electrocatalyst surfaces lack specificity towards nitrogen fixation. In this Review, we discuss the progress of the field in developing a mechanistic understanding of nitrogenase-promoted and molecular catalyst-promoted ammonia synthesis and provide a review of the state of the art and scientific needs for heterogeneous electrocatalysts.
机译:合成氨的生产仍然存在依赖于能源和资本密集型。哈勃-博施方法分子催化氨生产从二氮,尽管在低生产速度。二氮氨继续减少通过研究分子催化剂的划定结构,以及通过了解天然固氮酶酶。过渡到Haber-Bosch替代品健壮的、非均相催化剂表面仍然存在一个尚未解决的研究挑战。电化学还原的二氮氨是一种特定的研究的焦点,由于与Haber-Bosch竞争的潜力过程和减少相关的二氧化碳排放。迄今为止,大多数electrocatalyst表面对固氮作用缺乏特异性。本文,我们将讨论该领域的进步在发展中机械的理解nitrogenase-promoted和分子catalyst-promoted氨合成,并提供一个审核状态的艺术和科学异构electrocatalysts需求。

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