Related Experiment Video
Updated: May 22, 2025

Protocol of Electrochemical Test and Characterization of Aprotic Li-O2 Battery
Published on: July 12, 2016
Electron Itinerancy Mediated by Oxygen Vacancies Breaks the Inert Electron Chain to Boost Lithium-Oxygen Batteries
Yaning Fu1, Chunmei Liu1, Lina Song2
1College of Chemistry, Zhengzhou University, Zhengzhou, 450001, P.R. China.
Abstract:
The synergistic effect of dopants and oxygen vacancies (Vo) in metal oxides is crucial for enhancing the adsorption and electron transfer processes in lithium-oxygen (Li-O2) batteries; however, the underlying mechanisms remain unclear. Herein, Ru single-atom-modified TiO2 nanorod array (Ru1-TiO2- x) electrocatalysts with abundant Vo were fabricated, serving as an efficient catalyst for Li-O2 batteries. Experimental and theoretical investigations have demonstrated that Vo functions as an "electron pump", facilitating electron itinerant behavior, while Ru1 serves as an "electron buffer" to further activate the [Ru-O-Ti] electronic chain. This synergistic interplay endows Li-O2 batteries with a highly active and stable bidirectional self-regulating capability during the process of circulation, exhibiting an ultra-low charge polarization (0.42V) and exceptional cycling stability (1680 h). Vo and Ru1 synergistically modulate the d-band center at the Ti site to establish an adaptively tunable Ru-Ti dual-active site. This adjustment effectively balances the binding strength with the interface oxygen intermediate (*O), thereby significantly reducing the activation barrier. The Hamiltonian layout further revealed the crucial role of remote orbital coupling in maintaining the structural stability. This study not only provides profound insights into Vo-dependent electron transfer kinetics but also proposes new strategies and theoretical guidance for the activation of inert materials.
More Related Videos
Related Concept Videos
Batteries and Fuel Cells
Electrolysis
Voltaic/Galvanic Cells
Spontaneous redox reactions occur abundantly in nature. The chemical reaction occurring in a disposable AA battery powering our remote controls is one such example of a spontaneous redox reaction. Another example is the immersion of coiled copper wire into an aqueous silver nitrate solution. The reaction shows a gradual, visually impressive color change from colorless to bright blue and the formation of a grey precipitate on the copper wire. In this experiment,...
Thermal and Photochemical Electrocyclic Reactions: Overview
Electromotive Force
Electrochemistry: Overview

