Co3V2O8 Composite Carbon Hollow Spheres Bidirectionally Catalyze the Conversion of Lithium Polysulfide to Improve the Capacity of Lithium‐Sulfur Batteries

Author:

Zhang Jiangnan1,Xiao Mingjun12ORCID,Du Wei1,Feng Jiawei1,Xiang Qiang1,Meng Yanshuang12,Zhu Fuliang12

Affiliation:

1. School of Materials Science and Engineering Lanzhou University of Technology Lanzhou 730050 China

2. State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals Lanzhou 730050 China

Abstract

AbstractAlthough lithium‐sulfur batteries have a high theoretical energy density that is higher than lithium‐ion batteries, their development is limited by the slow kinetics of lithium polysulfide conversion. In this research, we utilize the excellent bidirectional catalysis and adsorption of lithium polysulfide by the bimetallic oxide Co3V2O8 composite carbon hollow sphere to address the kinetic obstacle of lithium‐sulfur battery. On the one hand, the carbon hollow sphere substrate provides a cavity that can hold a large amount of sulfur. On the other hand, it can limit the diffusion of lithium polysulfide by van der Waals forces. The combination of the above two points improves the capacity and stability of lithium‐sulfur batteries. It has a specific capacity of 1237.2 mAh g−1 at 0.2 C current density and retains 603 mAh g−1 after 100 cycles. At a high current density of 2 C, the specific capacity is 976.2 mAh g−1. After 1000 cycles, it holds at 338.3 mAh g−1, and the capacity retention rate per cycle is 99.89 %. This work discovers the new potential of Co3V2O8 as an electrocatalyst and proposes a process that can widely prepare carbon materials with complex uniform distribution of electrocatalysts to achieve high specific capacity of lithium‐sulfur batteries.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Lanzhou University of Technology

Publisher

Wiley

Reference48 articles.

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