Silica-copper catalyst interfaces enable carbon-carbon coupling towards ethylene electrosynthesis
CO2-to-ethylene conversion using renewable electricity provides a sustainable route to produce valuable chemicals. Here, the authors report high ethylene activity of 215 mA cm−2 and selectivity of 65% made possible by silica clusters in copper.
Enregistré dans:
Auteurs principaux: | Jun Li, Adnan Ozden, Mingyu Wan, Yongfeng Hu, Fengwang Li, Yuhang Wang, Reza R. Zamani, Dan Ren, Ziyun Wang, Yi Xu, Dae-Hyun Nam, Joshua Wicks, Bin Chen, Xue Wang, Mingchuan Luo, Michael Graetzel, Fanglin Che, Edward H. Sargent, David Sinton |
---|---|
Format: | article |
Langue: | EN |
Publié: |
Nature Portfolio
2021
|
Sujets: | |
Accès en ligne: | https://doaj.org/article/126836d713604c1aa03a09a4261d0cdd |
Tags: |
Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
|
Documents similaires
-
Copper-on-nitride enhances the stable electrosynthesis of multi-carbon products from CO2
par: Zhi-Qin Liang, et autres
Publié: (2018) -
Hydroxide promotes carbon dioxide electroreduction to ethanol on copper via tuning of adsorbed hydrogen
par: Mingchuan Luo, et autres
Publié: (2019) -
Enhanced multi-carbon alcohol electroproduction from CO via modulated hydrogen adsorption
par: Jun Li, et autres
Publié: (2020) -
Copper adparticle enabled selective electrosynthesis of n-propanol
par: Jun Li, et autres
Publié: (2018) -
Dopant-tuned stabilization of intermediates promotes electrosynthesis of valuable C3 products
par: Tao-Tao Zhuang, et autres
Publié: (2019)