光催化
尼亚尔
氢氧化物
金属
材料科学
固氮
氮气
层状双氢氧化物
无机化学
催化作用
化学
冶金
有机化学
金属间化合物
合金
作者
Devanshu Sajwan,Manisha Sharma,Sahil Kumar,J. B. Dahiya,Bhagyashree Priyadarshini Mishra,Venkata Krishnan
出处
期刊:Chemcatchem
[Wiley]
日期:2025-06-15
卷期号:17 (14)
被引量:1
标识
DOI:10.1002/cctc.202500415
摘要
Abstract The development of efficient photocatalysts for overall photocatalytic nitrogen fixation to ammonia (NH 3 ) and nitrates (NO 3 − ) has garnered immense attention, addressing various environmental and agricultural needs. Conventionally, NH 3 and NO 3 − are synthesized by high energy‐intensive Haber–Bosch and Ostwald's processes, respectively. Therefore, the production of NH 3 and NO 3 − using photocatalysis is a potential alternative for the conventional approaches. However, contemporary research in this field predominantly overlooks the simultaneous production of NH 3 and NO 3 − . In this context, this work presents the synthesis of defect‐rich NiAl mixed‐metal oxides (MMO) derived from NiAl layered double hydroxide (LDH) via a facile coprecipitation technique followed by hydrothermal and calcination treatment. The photocatalytic activity was tested to produce NH 3 and NO 3 − in visible light using water as a hydrogen source. It was observed that the MMO catalysts showed higher photocatalytic activity as compared to the LDH catalysts, exhibiting eight times higher NH 3 production (C‐NAO catalyst) without any sacrificial agent. Based on detailed catalytic investigations, it was inferred that the photocatalytic reaction followed the associative distal mechanism. The current work broadens the scope of using LDH‐derived MMO catalysts to establish effective photocatalytic reaction protocols for facile NH 3 production, offering a straightforward method for a more sustainable nitrogen economy.
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