Surface Engineering Based on Element Interdiffusion and Interfacial Reactions to Boost the Performance of Licoo2 Cathode Material

32 Pages Posted: 28 Jul 2023

See all articles by Fanghui Du

Fanghui Du

Liaocheng University

Zhongxu Fan

Soochow University

Lei Ding

Liaocheng University

Yan Wang

Liaocheng University

Wenjing Shi

Liaocheng University

Jie Zhang

Liaocheng University

Hanyu Qu

Liaocheng University

Xiaoxuan Yu

Liaocheng University

Yuling Chen

Soochow University

Junwei Zheng

Soochow University

Abstract

Surface coating has been extensively demonstrated as an effective modification strategy for cathode materials, often involving a heat-treatment step to achieve desirable coatings. However, high-temperature annealing can induceelement interdiffusion and interfacial reactions between the active material and the coating material, complicating the composition coating. Herein, we attempt to uncover the element interdiffusion and interfacial reactions between LiCoO2 and the Ti(SO4)2 coating precursor. Our findings show that Li, present on the surface of LiCoO2, preferentially diffuses into the coating precursor phase and combines with SO42- to form Li2SO4. Co diffuses into the coating precursor and reacts with the Ti-containing species, resulting in the formation of Li2CoTi3O8 coating. The surface structure of LiCoO2 tends to undergo reconstruction, partially transforming into Co3O4. The stable Li2SO4 coating acts as a physical barrier, preventing direct contact between the cathode and electrolyte, while the Li2CoTi3O8 coating not only stabilizes the cathode/electrolyte interface but also promotes efficient lithium-ion transport due to its high lithium-ion conductivity. The small Co3O4 spinel phase serves as a bridge between the Li2CoTi3O8 coating and the LiCoO2 host. Understanding the element interdiffusion and interfacial reactions occurring at the interface is essential for developing effective surface engineering techniques.

Keywords: LiCoO2 cathode, Coating, element interdiffusion, interfacial reactions, lithium-ion battery

Suggested Citation

Du, Fanghui and Fan, Zhongxu and Ding, Lei and Wang, Yan and Shi, Wenjing and Zhang, Jie and Qu, Hanyu and Yu, Xiaoxuan and Chen, Yuling and Zheng, Junwei, Surface Engineering Based on Element Interdiffusion and Interfacial Reactions to Boost the Performance of Licoo2 Cathode Material. Available at SSRN: https://ssrn.com/abstract=4524318 or http://dx.doi.org/10.2139/ssrn.4524318

Fanghui Du (Contact Author)

Liaocheng University ( email )

Liaocheng, 252000
China

Zhongxu Fan

Soochow University ( email )

No. 1 Shizi Street
Taipei, 215006
Taiwan

Lei Ding

Liaocheng University ( email )

Liaocheng, 252000
China

Yan Wang

Liaocheng University ( email )

Liaocheng, 252000
China

Wenjing Shi

Liaocheng University ( email )

Liaocheng, 252000
China

Jie Zhang

Liaocheng University ( email )

Liaocheng, 252000
China

Hanyu Qu

Liaocheng University ( email )

Liaocheng, 252000
China

Xiaoxuan Yu

Liaocheng University ( email )

Liaocheng, 252000
China

Yuling Chen

Soochow University ( email )

No. 1 Shizi Street
Taipei, 215006
Taiwan

Junwei Zheng

Soochow University ( email )

No. 1 Shizi Street
Taipei, 215006
Taiwan

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