Structural Engineering of Ultrathin ReS2on Hierarchically Architectured Graphene for Enhanced Oxygen Reduction

Ying Bo Kang, Xiaotong Han, Seunghoon Kim, Haocheng Yuan, Ning Ling, Hyung Chul Ham, Liming Dai, Ho Seok Park

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

Herein, binary heteronanosheets made of ultrathin ReS2 nanosheets and reduced graphene oxide (RGO) with either a two-dimensional (2D) "sheet-on-sheet"architecture (2D ReS2/RGO) or a three-dimensional hierarchical structure (3D ReS2/RGO) are constructed through rational structure-engineering strategies. In the resultant 3D ReS2/RGO heteronanosheets, the ultrathin ReS2 nanosheets are bridged on the RGO surface through Re-O bonds in a vertically oriented manner, which endows the heteronanosheets with open frameworks and a hierarchical porous structure. In sharp contrast to the 2D ReS2/RGO, the 3D ReS2/RGO heteronanosheets are featured with abundant active sites and channels for efficient electrolyte ions transport. This, coupled with the strong affinity toward oxygen-containing intermediates intrinsically associated with the binary ReS2/RGO structure, imparts excellent oxygen reduction performance to the 3D ReS2/RGO heteronanosheets for potential applications in fuel cells and metal-air batteries.

Original languageEnglish
Pages (from-to)5560-5566
Number of pages7
JournalACS Nano
Volume15
Issue number3
DOIs
StatePublished - 23 Mar 2021

Bibliographical note

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Keywords

  • Heteronanosheets
  • electrocatalysis
  • hierarchical structure
  • orientation
  • structural engineering

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