2020
DOI: 10.1016/j.apcatb.2019.118296
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Fe-doped Ni2P nanosheets with porous structure for electroreduction of nitrogen to ammonia under ambient conditions

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Cited by 136 publications
(70 citation statements)
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“…[134] Additionally, benefiting from the Fe incorporation promoting the adsorption of N 2 and the weakening of NN bonds, Gao et al revealed that Fe-doped Ni 2 P owned excellent NRR activity. [135] Sun's group first reported that nonmetal boron phosphide nanoparticles can serve as a high-efficiency N 2 -to-NH 3 catalyst with excellent activity and selectivity. DFT calculation inferred that P in boron phosphide can weaken the NN bond while simultaneously strengthening the BN bond, conductive to exposure more active sites for the NRR catalysis.…”
Section: Nrrmentioning
confidence: 99%
“…[134] Additionally, benefiting from the Fe incorporation promoting the adsorption of N 2 and the weakening of NN bonds, Gao et al revealed that Fe-doped Ni 2 P owned excellent NRR activity. [135] Sun's group first reported that nonmetal boron phosphide nanoparticles can serve as a high-efficiency N 2 -to-NH 3 catalyst with excellent activity and selectivity. DFT calculation inferred that P in boron phosphide can weaken the NN bond while simultaneously strengthening the BN bond, conductive to exposure more active sites for the NRR catalysis.…”
Section: Nrrmentioning
confidence: 99%
“…Precious metals [38] and transition metals [39][40][41] are the most widely used pure-metal electrocatalysts for NRR;o wing to their unique d-electrons (8 to 10), noble metalsc an easily adsorb moleculesf or electrochemical reaction and show good adsorption and desorption of new molecules. In addition, noble metal catalysts have excellent chemical durability,c an maintain high catalytic activity,and are more resistant to corrosion in some acid/alkalineelectrolytes.…”
Section: Pure-metalc Atalystsmentioning
confidence: 99%
“…Wei et al proposed Fe doped Ni 2 P nanosheets as efficient electrocatalyst for NRR. [195] On carrying out NRR in 0.1 m HCl, 7.95% efficiency was achieved at −0.3 V by producing NH 3 at 88.51 µg h −1 mg cat −1 rate. Hetero atom doping was acknowledged for high NRR activity as it creates bulk surface defects which in turn simultaneously improves the N 2 selectivity and reduce the N 2 fixation energy barrier.…”
Section: Ni Compoundsmentioning
confidence: 98%