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Recent Progress Toward Electrocatalytic Conversion of Nitrobenzene

  • Shaojun Zhu
  • , Zheng-Jun Wang*
  • , Yihuang Chen
  • , Tianrui Lu
  • , Jun Li
  • , Jichang Wang
  • , Huile Jin
  • , Jing-Jing Lv*
  • , Xin Wang*
  • , Shun Wang*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Despite that extensive efforts have been dedicated to the search for advanced catalysts to boost the electrocatalytic nitrobenzene reduction reaction (eNBRR), its progress is severely hampered by the limited understanding of the relationship between catalyst structure and its catalytic performance. Herein, this review aims to bridge such a gap by first analyzing the eNBRR pathway to present the main influential factors, such as electrolyte feature, applied potential, and catalyst structure. Then, the recent advancements in catalyst design for eNBRR are comprehensively summarized, particularly about the impacts of chemical composition, morphology, and crystal facets on regulating the local microenvironment, electron and mass transport for boosting catalytic performance. Finally, the future research of eNBRR is also proposed from the perspectives of performance enhancement, expansion of product scope, in-depth understanding of the reaction mechanism, and acceleration of the industrialization process through the integration of upstream and downstream technologies. © 2023 Wiley-VCH GmbH.
Original languageEnglish
Article number2301307
JournalSmall Methods
Volume8
Issue number8
Online published13 Dec 2023
DOIs
Publication statusPublished - Aug 2024

Research Keywords

  • aniline
  • azobenzene
  • catalyst design
  • electrocatalytic nitrobenzene reduction reaction
  • reaction pathway

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