Understanding the Role of Oxygen Vacancy Defects in Iridium-Leveraged MOFs-Type Catalyst

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

3 Scopus Citations
View graph of relations

Author(s)

  • Xuefei Xu
  • Hsiao-Chien Chen
  • Linfeng Li
  • Muhammad Humayun
  • Xia Zhang
  • Huachuan Sun
  • Jinzhi Jia
  • Cailing Xu
  • Mohamed Bououdina
  • Libo Sun
  • Chundong Wang

Related Research Unit(s)

Detail(s)

Original languageEnglish
Article number2408823
Journal / PublicationAdvanced Functional Materials
Volume34
Issue number48
Online published4 Jul 2024
Publication statusPublished - 26 Nov 2024

Abstract

Engineering oxygen vacancies (Vo) in metal–organic framework (MOF) is considered as an effective strategy to improve the hydrazine oxidation reaction (HzOR) performance. However, the role of Vo and the metal sites for HzOR is still not fully understood. Herein, this study reports the synthesis of a well-defined bimetallic VO-rich benzene dicarboxylic acid-based MOF (NiIr0.03-BDC) as a model to clarify the intricate catalytic mechanism. Operando characterizations demonstrate that the Vo-rich environment favors the adsorption of OH on the catalyst surface during the HzOR process, leading to the formation of Ni(OH)x active species. Theoretical calculations reveal that the introduced Ir at metal nodes not only boosts the HzOR activity of the Ni sites by tuning their electronic structure but also serves as the active sites for hydrogen evolution. As a result, the two-electrode electrolyzer with NiIr0.03-BDC || NiIr0.03-BDC configuration achieved 10 mA cm−2 at an ultralow cell voltage of 0.046 V. This work provides new insights into oxygen vacancy defect engineering of MOFs and paves a solid step for low-energy consumption hydrogen production. © 2024 Wiley-VCH GmbH.

Research Area(s)

  • active species, hydrazine oxidation reaction, hydrogen evolution reaction, metal-organic frameworks, oxygen vacancies

Citation Format(s)

Understanding the Role of Oxygen Vacancy Defects in Iridium-Leveraged MOFs-Type Catalyst. / Xu, Xuefei; Chen, Hsiao-Chien; Li, Linfeng et al.
In: Advanced Functional Materials, Vol. 34, No. 48, 2408823, 26.11.2024.

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