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High efficiency N/C foam supported Pd electrode for direct sodium borohydride-hydrogen peroxide fuel cell.

Authors :
Yin, Xianzhi
Zhu, Kai
Ye, Ke
Yan, Jun
Cao, Dianxue
Zhang, Dongming
Yao, Jiaxin
Wang, Guiling
Source :
Journal of Power Sources. Sep2022, Vol. 541, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

A bi-functional electrode material of self-supporting N-doped C foam grown Pd nanoparticles (Pd@N/C-8 foam) for NaBH 4 electrooxidation and H 2 O 2 reduction reaction is successfully prepared. The Pd@N/C-8 foam electrode is fabricated by sacrificial template synthesis of N/C foam followed by 8 repetitive Pd impregnation reduction cycles. The Pd@N/C-8 foam electrode exhibits an extraordinary catalytic performance (642 mA cm−2 at −0.2 V) in 2 mol L−1 NaOH and 0.3 mol L−1 NaBH 4 , which is due to the large electrochemical active surface area, low activation energy (E a = 10.34 kJ mol−1) and 60.83% utilization efficiency of NaBH 4. Besides, its catalytic density for H 2 O 2 electroreduction reaches 648 mA cm−2 at −0.2 V in 2 mol L−1 H 2 SO 4 +1.3 mol L−1 H 2 O 2. The kinetic parameters show that the electrooxidation of BH 4 − and the electroreduction of H 2 O 2 on Pd@N/C-8 foam electrode are first-order reactions, and the number of transferred electrons are 5.8 and 1.56, respectively. Further exploration of Pd@N/C-8 foam electrode on the direct sodium borohydride-hydrogen peroxide fuel cell (DBHPFC) displays the maximum power density of 137 mW cm−2 and a superior stability. In view of the excellent performance, Pd@N/C foam will be a highly efficient electrode material of DBHPFC. • A novel Pd decorated 3D porous N/C foam has been successfully prepared. • Pd@N/C-8 foam can be applied to both anode and cathode of DBHPFC. • Pd@N/C-8 foam can effectively improve the fuel utilization. • DBHPFC presents excellent operation stability. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03787753
Volume :
541
Database :
Academic Search Index
Journal :
Journal of Power Sources
Publication Type :
Academic Journal
Accession number :
157523134
Full Text :
https://doi.org/10.1016/j.jpowsour.2022.231704