Electrochemical nitrate reduction to ammonia offers an attractive solution to environmental sustainability and clean energy production but suffers from the sluggish *NO hydrogenation with the spin-state transitions. Herein, we report that the manipulation of oxygen vacancies can contrive spin-polarized Fe(1)-Ti pairs on monolithic titanium electrode that exhibits an attractive NH(3) yield rate of 272,000âμgâh(-1) mg(Fe)(-1) and a high NH(3) Faradic efficiency of 95.2% at -0.4âV vs. RHE, far superior to the counterpart with spin-depressed Fe(1)-Ti pairs (51000âμgâh(-1) mg(Fe)(-1)) and the mostly reported electrocatalysts. The unpaired spin electrons of Fe and Ti atoms can effectively interact with the key intermediates, facilitating the *NO hydrogenation. Coupling a flow-through electrolyzer with a membrane-based NH(3) recovery unit, the simultaneous nitrate reduction and NH(3) recovery was realized. This work offers a pioneering strategy for manipulating spin polarization of electrocatalysts within pair sites for nitrate wastewater treatment.
Spin polarized Fe(1)-Ti pairs for highly efficient electroreduction nitrate to ammonia.
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作者:Dai Jie, Tong Yawen, Zhao Long, Hu Zhiwei, Chen Chien-Te, Kuo Chang-Yang, Zhan Guangming, Wang Jiaxian, Zou Xingyue, Zheng Qian, Hou Wei, Wang Ruizhao, Wang Kaiyuan, Zhao Rui, Gu Xiang-Kui, Yao Yancai, Zhang Lizhi
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2024 | 起止号: | 2024 Jan 2; 15(1):88 |
| doi: | 10.1038/s41467-023-44469-4 | ||
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