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首页> 外文期刊>ChemSusChem >Electrochemical Synthesis of Ammonia from Water and Nitrogen: A Lithium-Mediated Approach Using Lithium-Ion Conducting Glass Ceramics
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Electrochemical Synthesis of Ammonia from Water and Nitrogen: A Lithium-Mediated Approach Using Lithium-Ion Conducting Glass Ceramics

机译:水和氮气氨的电化学合成:锂离子导电玻璃陶瓷锂介导的方法

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Lithium-mediated reduction of dinitrogen is a promising method to evade electron-stealing hydrogen evolution, a critical challenge which limits faradaic efficiency (FE) and thus hinders the success of traditional protic-solvent-based ammonia electro-synthesis. A viable implementation of the lithium-mediated pathway using lithium-ion conducting glass ceramics involves i)lithium deposition, ii)nitridation, and iii)ammonia formation. Ammonia was successfully synthesized from molecular nitrogen and water, yielding a maximum FE of 52.3%. With an ammonia synthesis rate comparable to previously reported approaches, the fairly high FE demonstrates the possibility of using this nitrogen fixation strategy as a substitute for firmly established, yet exceedingly complicated and expensive technology, and in so doing represents a next-generation energy storage system.
机译:锂介导的二煤酸的减少是一种避免电子窃取氢气进化的有希望的方法,这是限制野生效率(Fe)的关键挑战,从而阻碍了传统的质子溶剂基氨电合成的成功。 使用锂离子导电玻璃陶瓷的锂介导途径的可行实施涉及I)锂沉积,II)氮化和III)氨形成。 从分子氮气和水成功地合成氨,产生最多52.3%的Fe。 具有与先前报告的方法相当的氨合成率,相当高的FE证明了使用这种氮固定策略作为牢固建立,但非常复杂和昂贵的技术的替代品,并且在这样做代表下一代能量存储系统 。

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