Durable Electrocatalytic Reduction of Nitrate to Ammonia over Defective Pseudobrookite Fe 2 TiO 5 Nanofibers with Abundant Oxygen Vacancies

We propose the pseudobrookite Fe 2 TiO 5 nanofiber with abundant oxygen vacancies as a new electrocatalyst to ambiently reduce nitrate to ammonia. Such catalyst achieves a large NH 3 yield of 0.73 mmol h −1  mg −1 cat. and a high Faradaic Efficiency (FE) of 87.6 % in phosphate buffer saline solution...

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Veröffentlicht in:Angewandte Chemie 2023-01, Vol.135 (5)
Hauptverfasser: Du, Hongting, Guo, Haoran, Wang, Kaike, Du, Xiangning, Beshiwork, Bayu Admasu, Sun, Shengjun, Luo, Yongsong, Liu, Qian, Li, Tingshuai, Sun, Xuping
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Sprache:eng
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Zusammenfassung:We propose the pseudobrookite Fe 2 TiO 5 nanofiber with abundant oxygen vacancies as a new electrocatalyst to ambiently reduce nitrate to ammonia. Such catalyst achieves a large NH 3 yield of 0.73 mmol h −1  mg −1 cat. and a high Faradaic Efficiency (FE) of 87.6 % in phosphate buffer saline solution with 0.1 M NaNO 3 , which is lifted to 1.36 mmol h −1  mg −1 cat. and 96.06 % at −0.9 V vs. RHE for nitrite conversion to ammonia in 0.1 M NaNO 2 . It also shows excellent electrochemical durability and structural stability. Theoretical calculation reveals the enhanced conductivity of this catalyst and an extremely low free energy of −0.28 eV for nitrate adsorption at the presence of vacant oxygen.
ISSN:0044-8249
1521-3757
DOI:10.1002/ange.202215782