Login / Signup

Na Substitution Steering RuO 6 Unit in Ruthenium Pyrochlores for Enhanced Oxygen Evolution in Acid.

Fanfan ShangBin WangBei AnHuijie HeYuan ShuiHairui CaiChao LiangShengchun Yang
Published in: Small (Weinheim an der Bergstrasse, Germany) (2023)
Although Ruthenium-based pyrochlore oxides can function as promising catalysts for acidic water oxidation, their limitations in terms of stability and activity still need to be addressed for further application in practical conditions. In this work, the possibility to enhance both oxygen evolution reaction activity and durability of Gd 2 Ru 2 O 7- δ through partial replacement with Na + in Gd 3+ sites is first offered, leading to the electronic and geometric regulation of active center RuO 6 . Na + triggers the emergence of Ru <4+ and the electron rearrangement of active-centered RuO 6 . Specifically, Ru ions with a negative d-band center after Na + doping exhibit weaker adsorption energies of *O and result in the conversion of the rate-limiting step from *O/*OOH to *OH/O*, reducing energy barriers for boosting activities. Therefore, the Na x Gd 2- x Ru 2 O 7- δ requires a low overpotential of 260 mV at 10 mA cm -2 in 0.1 m HClO 4 electrolyte. Moreover, the higher formation energy of Ru vacancy and less distorted RuO6 enable the as-prepared Na x Gd 2- x Ru 2 O 7- δ to operate steadily at 10 mA cm -2 for 300 h and multi-current chronopotentiometry with current densities from 20 to 100 mA cm -2 for 60 h in acidic proton exchange membrane electrolyzer, respectively.
Keyphrases
  • energy transfer
  • ionic liquid
  • quantum dots
  • nitric oxide
  • molecular dynamics