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May 23, 2026Carbon NeutralityOpen Access

Engineering porous 2D materials for electrocatalytic small-molecule oxidation in decarbonized energy systems

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Authors

和武和子 武KZKean ZhuRCRuchuan Chen

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Overview

Review evaluates porous 2D materials' efficacy in small-molecule oxidation, highlighting implications for decarbonized energy systems.

Key Points

  • The review aims to systematically understand how porosity and defects in 2D materials affect electrooxidation efficiency for various small molecules.
  • Comprehensive evaluation of porous 2D materials across different types like oxides, hydroxides, sulfides, etc.
  • Assessment of structure-activity relationships and catalytic mechanisms related to electrooxidation.
  • Critical analysis of pore architecture, surface defects, and interlayer interactions.
  • Identified key factors such as pore architecture and interlayer coupling influencing catalytic activity.
  • Highlighted improvements in electrochemical stability through structural enhancements.
  • Established a framework for rationally designing porous 2D electrocatalysts for efficient small-molecule oxidation.

Cite This Study

武 et al. (2026) studied this question.

synapsesocial.com/papers/6a1144f948a409a3a49df024https://doi.org/10.1007/s43979-026-00174-x
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