化学
原硅酸盐
氢化物
正硅酸乙酯
氨
离子
氮化硅
无机化学
硅
有机化学
氢
氮化硅
作者
Zhujun Zhang,Kazuki Miyashita,Tong Wu,Jun Kujirai,Kiya Ogasawara,Jiang Li,Yihao Jiang,Masayoshi Miyazaki,Satoru Matsuishi,Masato Sasase,Tomofumi Tada,Hideo Hosono,Masaaki Kitano
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2025-02-17
卷期号:17 (5): 679-687
被引量:33
标识
DOI:10.1038/s41557-025-01737-8
摘要
Anion vacancies on metal oxide surfaces have been studied as either active sites or promoting sites in various chemical reactions involving oxidation/reduction processes. However, oxide materials rarely work effectively as catalysts in the absence of transition metal sites. Here we report a Ba-Si orthosilicate oxynitride-hydride as a transition-metal-free catalyst for efficient ammonia synthesis via an anion-vacancy-mediated mechanism. The facile desorption of H- and N3- anions plus the flexibility of the crystal structure can accommodate a high density of electrons at vacancy sites, where N2 can be captured and directly activated to ammonia through hydrogenation processes. The ammonia synthesis rates reach 40.1 mmol g-1 h-1 at 300 °C by loading ruthenium nanoparticles. Although not found to dissociate N2, Ru instead facilitates the formation of anion vacancies at the Ru-support interface. This demonstrates a new route for anion-vacancy-mediated heterogeneous catalysis.
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