Layered 3d Transition Metal‐Based Oxides for Sodium‐Ion and Lithium‐Ion Batteries: Differences, Links and Beyond

Author:

Shi Yuansheng1ORCID,Hu Erhai1,Sumboja Afriyanti2,Anggraningrum Ivandini T.3,Syahrial Anne Zulfia4,Yan Qingyu15ORCID

Affiliation:

1. School of Materials Science and Engineering Nanyang Technological University 50 Nanyang Avenue Singapore 639798 Singapore

2. Material Science and Engineering Research Group Faculty of Mechanical and Aerospace Engineering Institut Teknologi Bandung Jl. Ganesha 10 Bandung 40132 Indonesia

3. Department of Chemistry University of Indonesia Depok 16424 Indonesia

4. Metallurgical & Materials Engineering Department Fakultas Teknik Universitas Indonesia Kampus UI Depok 16424 Indonesia

5. Institute of Materials Research and Engineering A*STAR 2 Fusionopolis Way, Innovis, #08‐03 Singapore 138634 Singapore

Abstract

AbstractDue to their stable crystal framework, promising energy density, and structural versatility, layered 3d transition metal oxides have emerged as the preferred cathodes for lithium‐ion batteries (LIBs) and sodium‐ion batteries (SIBs). While extensive research has individually addressed the lithium and sodium 3d transition metal layered oxides, the differences and interconnections between the two types of materials have largely been overlooked. Effectively utilizing these summaries is essential for driving innovative structural designs and inspiring new insights into the structure‐property relationships. This review comprehensively bridges this gap by meticulously examining the disparities and links in the behavior of the layered oxides upon Li+ and Na+ storage and transfer. Key aspects, including atomic and electronic structure, phase transition mechanisms, charge compensation mechanisms and electrochemical kinetics, are carefully summarized. The implications of these aspects on the battery cycle life, energy density, and rate capability are thoroughly discussed. Additionally, by leveraging the unique characteristics of each oxide structure, this review explores the interconnection between lithium and sodium layered oxides in depth. Finally, a concise perspective on future targets and direction of 3d layered oxides is deduced and proposed.

Funder

National Research Foundation Singapore

Publisher

Wiley

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