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Strain Effect on Oxygen Evolution Reaction Activity of Epitaxial NdNiO 3 Thin Films

  • Le Wang
  • , Kelsey A. Stoerzinger
  • , Lei Chang
  • , Xinmao Yin
  • , Yangyang Li
  • , Chi Sin Tang
  • , Endong Jia
  • , Mark E. Bowden
  • , Zhenzhong Yang
  • , Amr Abdelsamie
  • , Lu You
  • , Rui Guo
  • , Jingsheng Chen
  • , Andrivo Rusydi
  • , Junling Wang
  • , Scott A. Chambers
  • , Yingge Du*
  • *Corresponding author for this work

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

Abstract

Epitaxial strain can cause both lattice distortion and oxygen nonstoichiometry, effects that are strongly coupled at heterojunctions of complex nickelate oxides. Here we decouple these structural and chemical effects on the oxygen evolution reaction (OER) by using a set of coherently strained epitaxial NdNiO 3 films. We show that within the regime where oxygen vacancies (V O ) are negligible, compressive strain is favorable for the OER whereas tensile strain is unfavorable; the former induces orbital splitting, resulting in a higher occupancy in the d 3z orbital and weaker Ni-O chemisorption. However, when the tensile strain is sufficiently large to promote V 2 âr 2 O formation, an increase in the OER is also observed. The partial reduction of Ni 3+ to Ni 2+ due to V O makes the e g occupancy slightly larger than unity, which is thought to account for the increased OER activity. Our work highlights that epitaxial-strain-induced lattice distortion and V O generation can be individually or collectively exploited to tune OER activity, which is important for the predictive synthesis of high-performance electrocatalysts. © 2019 American Chemical Society.
Original languageEnglish
Pages (from-to)12941-12947
JournalACS Applied Materials and Interfaces
Volume11
Issue number13
DOIs
Publication statusPublished - 3 Apr 2019
Externally publishedYes

Bibliographical note

Publication details (e.g. title, author(s), publication statuses and dates) are captured on an “AS IS” and “AS AVAILABLE” basis at the time of record harvesting from the data source. Suggestions for further amendments or supplementary information can be sent to [email protected].

Research Keywords

  • NdNiO 3
  • nickelates
  • orbital polarization
  • oxygen evolution reaction
  • oxygen vacancy
  • strain

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