Abstract
With higher nature abundance and lower production cost of sodium-based materials compared to lithium-based ones, sodium batteries have been arising as one of the most promising energy storage systems serving as complementary power sources to the popular lithium-ion batteries. Replacing conventional liquid electrolytes containing flammable liquid solvents with polymer electrolytes (PEs) empowers sodium batteries with inherently enhanced safety at a low expense of processability. In this contribution, we present a comprehensive overview on the research progresses and advances in the PE-based sodium batteries, including three main categories of PEs, i.e., solid polymer electrolytes (SPEs), composite solid polymer electrolytes (CSPEs), and plasticized/gel polymer electrolytes (PPEs/GPEs). The energy densities of sodium batteries at cell level are estimated and compared with their lithium counterparts. The research development of PE-based sodium batteries is scrutinized and the remaining challenges and possible solutions are intensively discussed. The purpose of the present work is not only to provide a well-balanced status quo of PE-based sodium batteries but also to address the possible remedies for improving their performance and other post lithium battery technologies, in hope of facilitating their large-scale deployment in the market.
Funder
Eusko Jaurlaritza
Chinese Scholarship Council
Publisher
The Electrochemical Society
Subject
Materials Chemistry,Electrochemistry,Surfaces, Coatings and Films,Condensed Matter Physics,Renewable Energy, Sustainability and the Environment,Electronic, Optical and Magnetic Materials
Cited by
111 articles.
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