Li-rich rocksalt oxides are promising candidates as high-energy density cathode materials for next-generation Li-ion batteries because they present extremely diverse structures and compositions. Most reported materials in this family contain as many cations as anions, a characteristic of the ideal cubic closed-packed rocksalt composition. In this work, a new rocksalt-derived structure type is stabilized by selecting divalent Cu and pentavalent Sb cations to favor the formation of oxygen vacancies during synthesis. The structure and composition of the oxygen-deficient LiCuSbO□ phase is characterized by combining X-ray and neutron diffraction, ICP-OES, XAS, and magnetometry measurements. The ordering of cations and oxygen vacancies is discussed in comparison with the related LiCuO□ and LiSbO□ phases. The electrochemical properties of this material are presented, with only 0.55 Li extracted upon oxidation, corresponding to a limited utilization of cationic and/or anionic redox, whereas more than 2 Li ions can be reversibly inserted upon reduction to 1 V vs Li/Li, a large capacity attributed to a conversion reaction and the reduction of Cu to Cu. Control of the formation of oxygen vacancies in Li-rich rocksalt oxides by selecting appropriate cations and synthesis conditions affords a new route for tuning the electrochemical properties of cathode materials for Li-ion batteries. Furthermore, the development of material models of the required level of detail to predict phase diagrams and electrochemical properties, including oxygen release in Li-rich rocksalt oxides, still relies on the accurate prediction of crystal structures. Experimental identification of new accessible structure types stabilized by oxygen vacancies represents a valuable step forward in the development of predictive models.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8693191PMC
http://dx.doi.org/10.1021/acs.inorgchem.1c02882DOI Listing

Publication Analysis

Top Keywords

oxygen vacancies
20
li-rich rocksalt
12
rocksalt oxides
12
electrochemical properties
12
structure type
8
cathode materials
8
li-ion batteries
8
formation oxygen
8
vacancies
5
structure
5

Similar Publications

Porous Single-Crystalline Rare Earth Phosphates Monolith to Enhance Catalytic Activity and Durability.

Molecules

January 2025

Key Laboratory of Design and Assembly of Functional Nanostructures, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China.

Rare earth phosphate (XPO) is an extremely important rare earth compound. It can exhibit excellent activity and stability in catalytic applications by modifying its inherent properties. Porous single-crystalline (PSC) PrPO and SmPO with a large surface area consist of ordered lattices and disordered interconnected pores, resulting in activity similar to nanocrystals and stability resembling bulk crystals.

View Article and Find Full Text PDF

With growing environmental concerns and the need for sustainable energy, multifunctional materials that can simultaneously address water treatment and clean energy production are in high demand. In this study, we developed a cost-effective method to synthesize zinc oxide (ZnO) nanowires via the anodic oxidation of zinc foil. By carefully controlling the anodization time, we optimized the Zn/ZnO-5 min electrode to achieve impressive dual-function performance in terms of effective photoelectrocatalysis for water splitting and waste water treatment.

View Article and Find Full Text PDF

The influence of Mg doping in α-AlO crystals is investigated in this article by first-principles calculations and formation energies, density of states, and computed absorption spectra. Three models related to Mg substituting for Al doping structures were constructed, as well as spinel structure models with varying aluminum-magnesium ratios. The formation energy calculations confirmed the rationality of the MgV model, which means that Mg substitutional doping incorporating oxygen vacancies is most likely to form in crystals.

View Article and Find Full Text PDF

Microwave Dielectric Properties and Defect Behavior of xTiO-(1-x)SiO Glass.

Materials (Basel)

January 2025

China Building Materials Academy, Beijing 100024, China.

xTiO-(1-x)SiO (x = 2.9~8.2 mol%) glass specimens were synthesized using the flame hydrolysis technique.

View Article and Find Full Text PDF

Annealing Study on Praseodymium-Doped Indium Zinc Oxide Thin-Film Transistors and Fabrication of Flexible Devices.

Micromachines (Basel)

December 2024

Guangdong Basic Research Center of Excellence for Energy & Information Polymer Materials, State Key Laboratory of Luminescent Materials and Devices, School of Materials Sciences and Engineering, South China University of Technology, Guangzhou 510640, China.

The praseodymium-doped indium zinc oxide (PrIZO) thin-film transistor (TFT) is promising for applications in flat-panel displays, due to its high carrier mobility and stability. Nevertheless, there are few studies on the mechanism of annealing on PrIZO films and the fabrication of flexible devices. In this work, we first optimized the annealing-process parameters on the glass substrate.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!