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September 10, 2025Nano Letters42 citations

Three-Site Catalysis of In1–MoB2 to Boost Urea Electrosynthesis

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FWFuzhou WangNanjing Maternity and Child Health Care HospitalJLJiahang LiHuaibei Normal UniversityXXX. K. XingBeijing University of Agriculture

Key Points

  • In1-MoB2 exhibited a Faradaic efficiency of 80.4%, indicating its effectiveness as a catalyst for urea synthesis.
  • Urea yield rate reached 116.5 mmol h-1 g-1, highlighting the high performance of In1-MoB2 in this catalytic process.
  • The study identified a three-site catalysis mechanism involving In1/B and Mo sites, providing insights into urea synthesis.
  • The use of plasma-electrocatalytic methods with air oxidation improves performance, indicating a promising direction for future research.

Abstract

We develop single-atom In on MoB2 (In1-MoB2) as an efficient catalyst for urea synthesis from coelectrolysis of NO3- and CO2. Mechanistic studies reveal a three-site synergistic catalysis mechanism of In1-MoB2, where In1/B sites enable the formation of *CO/*NH2 intermediates and their C-N coupling, while the Mo site facilitates H2O dissociation to provide the ample protons required for the protonation of C/N intermediates toward urea generation. Moreover, by employing a plasma-electrocatalytic route with integrating plasma-driven air oxidation and electrocatalysis, In1-MoB2 exhibits the exceptional Faradaic efficiency of 80.4% and urea yield rate of 116.5 mmol h-1 g-1, ranking in the top performance level.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68c1d03e54b1d3bfb60f706bhttps://doi.org/10.1021/acs.nanolett.5c03072
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