Cu-Based Bubble and Ion Sieve for Ampere-Level Hydrogen Evolution

21 Pages Posted: 20 Feb 2024

See all articles by Siwei Yan

Siwei Yan

Tianjin University

Chuan-Qi Cheng

Tianjin University

Fei-Fei Zhang

Nankai University

Zeyu Zhang

Tianjin University

Kui Lin

Tianjin University

Pengfei Yin

Tianjin University

Rui Zhang

Tianjin University

Jing Yang

Tianjin University

Cunku Dong

Tianjin University

Jing Mao

Tianjin University

Hui Liu

Tianjin University

Xi-Wen Du

Tianjin University

Abstract

Designing cheap, efficient, and stable electrocatalysts for hydrogen evolution reaction (HER) under ampere-level current density is essential for the industrial water electrolysis technique. However, the large H2 bubbles produced at high current density decrease the activity and stability of the catalyst. Here, a self-supported electrode with porous yolk-shell CuNi@Cu electrocatalyst is obtained via an alternant electrodeposition and replacement reaction during the pulse electrodeposition process. The porous Cu shell can boost electrolyte diffusion and serve as an H2 bubble fining sieve to enhance the activity and stability of alkaline HER at high current density with the low overpotential of 326 mV @1 A cm‑2. The CuNi@Cu electrocatalyst can work steadily for 1000 h at 1 A cm-2 with negligible attenuation. The porous Cu shell can also repel cations in natural seawater owing to the positively charged surface. The spontaneous alternant reaction paves an avenue to design electrocatalysts with porous yolk-shell structures for large-scale industrial applications.

Keywords: fine bubble, porous yolk-shell structure, electrocatalysis, industrial hydrogen evolution reaction

Suggested Citation

Yan, Siwei and Cheng, Chuan-Qi and Zhang, Fei-Fei and Zhang, Zeyu and Lin, Kui and Yin, Pengfei and Zhang, Rui and Yang, Jing and Dong, Cunku and Mao, Jing and Liu, Hui and Du, Xi-Wen, Cu-Based Bubble and Ion Sieve for Ampere-Level Hydrogen Evolution. Available at SSRN: https://ssrn.com/abstract=4732071 or http://dx.doi.org/10.2139/ssrn.4732071

Siwei Yan

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Chuan-Qi Cheng

Tianjin University ( email )

Fei-Fei Zhang

Nankai University ( email )

Zeyu Zhang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Kui Lin

Tianjin University ( email )

Pengfei Yin

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Rui Zhang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Jing Yang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Cunku Dong

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Jing Mao

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Hui Liu (Contact Author)

Tianjin University ( email )

Xi-Wen Du

Tianjin University ( email )

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