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February 8, 2026Chemical Society Reviews3 citations

Curvature geometry–spin electronics–catalytic dynamics coupling in emerging catalytic engineering

XZXiayan ZhangJLJinrong LuJLJianxing Liu

Key Points

  • This research explores how nanoscale curvature affects spin polarization and electron transfer in catalytic processes.
  • Investigated the effects of nanoscale curvature on spin polarization and electronic properties.
  • Analyzed the coupling between curvature and spin in catalytic environments.
  • Examined the impact of these interactions on energy landscapes and kinetic pathways.
  • Curvature significantly enhances spin polarization, aiding electron transfer.
  • Asymmetric strain alters energy landscapes, making catalysis more efficient.
  • Introduced programmable catalysis through curvature-spin coupling mechanisms.

Abstract

Nanoscale curvature induces asymmetric strain and electronic reconstruction, activating spin polarization and spin-selective electron transfer. Curvature–spin coupling reshapes energy landscapes and kinetic pathways for programmable catalysis.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6988292d0fc35cd7a8849453https://doi.org/10.1039/d5cs01114k
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