Intermetallic PtSn Nanosheets with p-d Orbital Hybridization for Selective Hydroxylamine Electrosynthesis.
basic_science · Level V
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- Record sourced from PubMed, PMID 40059442.
- Also identified by DOI 10.1021/acsnano.5c00544.
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Abstract
The electrocatalytic nitrate reduction to hydroxylamine (NH<sub>2</sub>OH) is a challenging catalytic process that has gained significant attention. However, its performance is hindered by the low selectivity of the electrocatalysts. Here, intermetallic PtSn nanosheets with p-d orbital hybridization have been synthesized, which significantly enhances the performance of electrocatalytic nitrate reduction to NH<sub>2</sub>OH. The Faradaic efficiency of NH<sub>2</sub>OH reaches a maximum of 82.83 ± 1.55% at -0.10 V versus the reversible hydrogen electrode (vs RHE), and the yield of NH<sub>2</sub>OH achieves 6.15 ± 0.32 mmol h<sup>-1</sup> mg<sub>cat</sub><sup>-1</sup> at -0.25 V vs RHE. Mechanistic studies reveal that p-d orbital hybridization between p-block Sn and d-block Pt effectively enhances nitrate adsorption and NH<sub>2</sub>OH desorption to boost electrochemical NH<sub>2</sub>OH synthesis. Given their excellent performance in the electrochemical synthesis of NH<sub>2</sub>OH, PtSn nanosheets are utilized as the cathode in an alkaline-acid hybrid Zn-NO<sub>3</sub><sup>-</sup> battery to facilitate the production of NH<sub>2</sub>OH, achieving an NH<sub>2</sub>OH FE of 80.42%.