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Molybdenum Phosphide Quantum Dots Encapsulated by P/N-Doped Carbon for Hydrogen Evolution Reaction in Acid and Alkaline Electrolytes. | LitMetric

AI Article Synopsis

  • A new eco-friendly method is introduced to create MoP quantum dots (QDs) with carbon shells, resulting in a composite material called MoP@NPC/CNT, which is effective for electrocatalysis.
  • The synthesis process involves self-assembly of single-source precursors followed by heating at 900 °C, which helps maintain particle stability and improves the performance of active MoP QDs.
  • The MoP@NPC/CNT-900 composite demonstrates outstanding hydrogen evolution reaction (HER) efficiency, featuring low overpotentials and excellent durability in acidic and alkaline conditions due to the combined advantages of MoP quantum dots and the carbon materials' properties.

Article Abstract

A facile and eco-friendly strategy is presented for synthesizing novel nanocomposites, with MoP quantum dots (QDs) as cores and graphitic carbon as shells, these nanoparticles are dispersed in a nitrogen and phosphorus-doped porous carbon and carbon nanotubes (CNTs) substrates (MoP@NPC/CNT). The synthesis involves self-assembling reactions to form single-source precursors (SSPs), followed by pyrolysis at 900 °C in an inert atmosphere to obtain MoP@NPC/CNT-900. The presence of carbon layers on the MoP QDs effectively prevents particle aggregation, enhancing the utilization of active MoP species. The optimized sample, MoP@NPC/CNT-900, exhibits remarkable electrocatalytic activity and durability for the hydrogen evolution reaction (HER). It demonstrates a low overpotential of 155 mV at 10 mA cm , a small Tafel slope of 76 mV dec , and sustained performance over 20 hours in 0.5 M H SO . Furthermore, the catalyst shows excellent activity in 1 M KOH, with a relatively low overpotential of 131 mV and long-term durability under constant current input. The exceptional HER activity can be attributed to several factors: the superior performance of MoP QDs, the large surface area and good conductivity of the carbon substrates, and the synergistic effect between MoP and carbon species.

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Source
http://dx.doi.org/10.1002/cssc.202300479DOI Listing

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