Semantic Scholar Open Access 2020 350 sitasi

Carbon dioxide electroreduction on single-atom nickel decorated carbon membranes with industry compatible current densities

Hengpan Yang Qing Lin Chaohua Zhang Xinyao Yu Zhong Cheng +6 lainnya

Abstrak

Carbon dioxide electroreduction provides a useful source of carbon monoxide, but comparatively few catalysts could be sustained at current densities of industry level. Herein, we construct a high-yield, flexible and self-supported single-atom nickel-decorated porous carbon membrane catalyst. This membrane possesses interconnected nanofibers and hierarchical pores, affording abundant effective nickel single atoms that participate in carbon dioxide reduction. Moreover, the excellent mechanical strength and well-distributed nickel atoms of this membrane combines gas-diffusion and catalyst layers into one architecture. This integrated membrane could be directly used as a gas diffusion electrode to establish an extremely stable three-phase interface for high-performance carbon dioxide electroreduction, producing carbon monoxide with a 308.4 mA cm−2 partial current density and 88% Faradaic efficiency for up to 120 h. We hope this work will provide guidance for the design and application of carbon dioxide electro-catalysts at the potential industrial scale. Here the authors deploy Ni single atom-decorated carbon membranes as integrated gas diffusion electrodes to construct an extremely stable three-phase interface for CO2 electroreduction, producing CO with a partial current density of 308.4 mA cm–2 and a Faradaic efficiency of 88% for up to 120 h.

Penulis (11)

H

Hengpan Yang

Q

Qing Lin

C

Chaohua Zhang

X

Xinyao Yu

Z

Zhong Cheng

G

Guodong Li

Q

Qi Hu

X

X. Ren

Q

Qianling Zhang

J

Jianhong Liu

C

Chuanxin He

Format Sitasi

Yang, H., Lin, Q., Zhang, C., Yu, X., Cheng, Z., Li, G. et al. (2020). Carbon dioxide electroreduction on single-atom nickel decorated carbon membranes with industry compatible current densities. https://doi.org/10.1038/s41467-020-14402-0

Akses Cepat

Lihat di Sumber doi.org/10.1038/s41467-020-14402-0
Informasi Jurnal
Tahun Terbit
2020
Bahasa
en
Total Sitasi
350×
Sumber Database
Semantic Scholar
DOI
10.1038/s41467-020-14402-0
Akses
Open Access ✓