脱水
纳米线
乙烯
材料科学
生物燃料
化学工程
纳米技术
光电子学
化学
催化作用
有机化学
生物化学
生物
生态学
工程类
作者
Zhouzhou Wang,Haotian Ye,Yixin Li,Bowen Sheng,Ping Wang,Pengfei Ou,Xiaoyan Li,Tianqi Yu,Zijian Huang,Jinglin Li,Ying Yu,Xinqiang Wang,Zhen Huang,Baowen Zhou
标识
DOI:10.1038/s41467-025-56277-z
摘要
Light-driven bioethanol dehydration offers attractive outlooks for the sustainable production of ethylene. Herein, a surface-hydrogenated CrMnOx is coupled with GaN nanowires (GaN@CMO-H) for light-driven ethanol dehydration to ethylene. Through combined experimental and computational investigations, a surface hydrogen-replenishment mechanism is proposed to disclose the ethanol dehydration pathway over GaN@CMO-H. Moreover, the surface-hydrogenated GaN@CMO-H can significantly lower the reaction energy barrier of the C2H5OH-to-C2H4 conversion by switching the rate-determining reaction step compared to both GaN and GaN@CMO. Consequently, the surface-hydrogenated GaN@CMO-H illustrates a considerable ethylene production activity of 1.78 mol·gcat−1·h−1 with a high turnover number of 94,769 mole ethylene per mole CrMnOx. This work illustrates a new route for sustainable ethylene production with the only use of bioethanol and sunlight beyond fossil fuels. Light-driven bioethanol dehydration presents a promising route for sustainable ethylene production. This study unveils a surface hydrogen-replenishment mechanism facilitating ethanol dehydration on GaN nanowires with surface-hydrogenated CrMnOx, achieving an ethylene production rate of 1.78 mol·gcat−1·h−1.
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