TY - JOUR
T1 - Reparation of porous Ti-Cu alloy by one-step sintering method and application of hydrogen evolution reaction
AU - Dong, Shizhi
AU - Li, Yanshuai
AU - Zhao, Zhilong
AU - Hu, Xudong
AU - Li, Ruichuan
AU - Sun, Shiyin
AU - Zhang, Xing
AU - Hu, Hongyu
AU - Guo, Lin
N1 - Publisher Copyright:
© 2022 Elsevier B.V.
PY - 2022/8/1
Y1 - 2022/8/1
N2 - In this paper, Ti-Cu porous alloy electrocatalysts were synthesized by simple mechanical alloying combined with a one-step sintering method, and the positive effects of milling time, sintering temperature, and sintering time on HER were explored. The results show that the Ti2Cu3 porous alloy catalyst after ball milling has excellent electrocatalytic activity. After the introduction of transition metal Mo, the overpotential of ball-milled Mo-Ti2Cu3-600 electrocatalyst is 133 mV, and the corresponding Tafel slope is 97.37 mV·dec−1, second only to commercial Pt/C catalyst. At the same time, the first principle was used to reveal the interaction of electrons in catalysis. The effective mass of the ternary alloy containing Mo is 0.19 m0, and the original alloy catalyst is 0.28 m0. It can be found that the introduction of Mo atoms improves the carrier migration efficiency, which has a high promotion effect on the catalytic performance of the original alloy. The reaction energy barrier is also reduced from 0.584 eV to 0.051 eV, which greatly improves the reaction process. Such a simple one-step sintering method can also obtain excellent electrocatalysts, which provides a new design idea for short-process processing of excellent electrocatalysts and has broad application prospects.
AB - In this paper, Ti-Cu porous alloy electrocatalysts were synthesized by simple mechanical alloying combined with a one-step sintering method, and the positive effects of milling time, sintering temperature, and sintering time on HER were explored. The results show that the Ti2Cu3 porous alloy catalyst after ball milling has excellent electrocatalytic activity. After the introduction of transition metal Mo, the overpotential of ball-milled Mo-Ti2Cu3-600 electrocatalyst is 133 mV, and the corresponding Tafel slope is 97.37 mV·dec−1, second only to commercial Pt/C catalyst. At the same time, the first principle was used to reveal the interaction of electrons in catalysis. The effective mass of the ternary alloy containing Mo is 0.19 m0, and the original alloy catalyst is 0.28 m0. It can be found that the introduction of Mo atoms improves the carrier migration efficiency, which has a high promotion effect on the catalytic performance of the original alloy. The reaction energy barrier is also reduced from 0.584 eV to 0.051 eV, which greatly improves the reaction process. Such a simple one-step sintering method can also obtain excellent electrocatalysts, which provides a new design idea for short-process processing of excellent electrocatalysts and has broad application prospects.
KW - DFT
KW - Hydrogen evolution reaction
KW - Nanoporous alloy
KW - One-step sintering
KW - Transition metal
UR - https://www.scopus.com/pages/publications/85131039149
U2 - 10.1016/j.jelechem.2022.116448
DO - 10.1016/j.jelechem.2022.116448
M3 - 文章
AN - SCOPUS:85131039149
SN - 1572-6657
VL - 918
JO - Journal of Electroanalytical Chemistry
JF - Journal of Electroanalytical Chemistry
M1 - 116448
ER -