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November 21, 2023ACS Nano205 citations

Bubble Engineering on Micro-/Nanostructured Electrodes for Water Splitting

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MLMengxuan LiPXPengpeng XieLYLinfeng Yu

Key Points

  • This review aims to explore bubble behaviors' impact on mass transfer and energy efficiency in water splitting using micro-/nanostructured electrodes.
  • Analyzed bubble behaviors in relation to electrode design and performance.
  • Discussed strategies for enhancing bubble detachment and directional transport.
  • Provided insights into the role of gas wettability and electric field intensity on electrode efficiency.
  • Micro-/nanostructured electrodes exhibit lower overpotential and improved electrolyte supply.
  • Faster bubble growth kinetics observed, enhancing overall gas evolution processes.
  • Defined approaches for optimized bubble management to improve water splitting performance.

Abstract

Bubble behaviors play crucial roles in mass transfer and energy efficiency in gas evolution reactions. Combining multiscale structures and surface chemical compositions, micro-/nanostructured electrodes have drawn increasing attention. With the aim to identify the exciting opportunities and rationalize the electrode designs, in this review, we present our current comprehension of bubble engineering on micro-/nanostructured electrodes, focusing on water splitting. We first provide a brief introduction of gas wettability on micro-/nanostructured electrodes. Then we discuss the advantages of micro-/nanostructured electrodes for mass transfer (detailing the lowered overpotential, promoted supply of electrolyte, and faster bubble growth kinetics), localized electric field intensity, and electrode stability. Following that, we outline strategies for promoting bubble detachment and directional transportation. Finally, we offer our perspectives on this emerging field for future research directions.

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Cite This Study

Li et al. (2023) studied this question.

synapsesocial.com/papers/69d77fae3fae90fd6048f7d9https://doi.org/10.1021/acsnano.3c08831
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