Green Synthesis of Nitrogen‐to‐Ammonia Fixation: Past, Present, and Future

The nitrogen (N2)‐to‐ammonia (NH3) fixation driven by renewable energy has an attractive prospect to relieve the global warming and reduce the consumption of fossil fuels. Ideally, photocatalytic, electrochemical, and photoelectrochemical approaches are developed as the next‐generation NH3 synthesis...

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Veröffentlicht in:Energy & environmental materials (Hoboken, N.J.) N.J.), 2022-04, Vol.5 (2), p.452-457
Hauptverfasser: Zheng, Jianyun, Jiang, Li, Lyu, Yanhong, Jiang, San Ping, Wang, Shuangyin
Format: Artikel
Sprache:eng
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Zusammenfassung:The nitrogen (N2)‐to‐ammonia (NH3) fixation driven by renewable energy has an attractive prospect to relieve the global warming and reduce the consumption of fossil fuels. Ideally, photocatalytic, electrochemical, and photoelectrochemical approaches are developed as the next‐generation NH3 synthesis technologies to substitute the Haber–Bosch method. However, the NH3 yield rate of nitrogen reduction reaction (NRR) by green approaches is extremely low, resulting in the current dilemma of NRR and contamination issues. Thus, in this mini review, the past advances on the sustainable NRR are briefly summarized in the three aspects as follows: the selectivity and adjustment of various catalysts, the type of electrolyte/solvent system, and the investigation of reaction conditions. Subsequently, the recent critical activities in the area of sustainable NH3 synthesis are analyzed and discussed deeply, and a perspective for rational and healthy development of this area is provided positively. The mini review provides insights into the most important advancements and current dilemma in the green synthesis of nitrogen‐to‐ammonia fixation. Significantly, this review also sheds new light on the sustainable NH3 synthesis and provides a blueprint for further investigations and momentous breakthroughs in the next‐generation green synthesis system.
ISSN:2575-0356
2575-0348
2575-0356
DOI:10.1002/eem2.12192