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A review of lithium and non-lithium based solid state batteries

Conventional lithium-ion liquid-electrolyte batteries are widely used in portable electronic equipment such as laptop computers, cell phones, and electric vehicles; however, they have several drawbacks, including expensive sealing agents and inherent hazards of fire and leakages. All solid state bat...

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Bibliographic Details
Published in:Journal of power sources 2015-05, Vol.282, p.299-322
Main Authors: Kim, Joo Gon, Son, Byungrak, Mukherjee, Santanu, Schuppert, Nicholas, Bates, Alex, Kwon, Osung, Choi, Moon Jong, Chung, Hyun Yeol, Park, Sam
Format: Article
Language:English
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Summary:Conventional lithium-ion liquid-electrolyte batteries are widely used in portable electronic equipment such as laptop computers, cell phones, and electric vehicles; however, they have several drawbacks, including expensive sealing agents and inherent hazards of fire and leakages. All solid state batteries utilize solid state electrolytes to overcome the safety issues of liquid electrolytes. Drawbacks for all-solid state lithium-ion batteries include high resistance at ambient temperatures and design intricacies. This paper is a comprehensive review of all aspects of solid state batteries: their design, the materials used, and a detailed literature review of various important advances made in research. The paper exhaustively studies lithium based solid state batteries, as they are the most prevalent, but also considers non-lithium based systems. Non-lithium based solid state batteries are attaining widespread commercial applications, as are also lithium based polymeric solid state electrolytes. Tabular representations and schematic diagrams are provided to underscore the unique characteristics of solid state batteries and their capacity to occupy a niche in the alternative energy sector. •A comprehensive review of all aspects of solid state batteries: design, materials.•Tabular representations to underscore the characteristics of solid state batteries.•Solid state electrolytes to overcome the safety issues of liquid electrolytes.
ISSN:0378-7753
1873-2755
DOI:10.1016/j.jpowsour.2015.02.054