Recent Advances in Layered Na2Mn3O7 Cathode Materials for Sodium-Ion Batteries
Rakhymbay L. Shugay B. Karlykan M. Namazbay A. Konarov A. Bakenov Z.
2023
Eurasian Journal of Chemistry
2023#109Issue 159 - 67 pp.
There has been an increasing amount of attention paid to the different technologies that are used in energy production and storage in the context of day-to-day operations, which range from small-scale applications to large-scale applications, which are all equally important. As far as energy storage systems are concerned, Li-ion batteries are the market leader due to their high energy and power density, making them one of the most popular choices. Despite this, a significant concern is the scarcity of lithium resources and other metals that are needed for cathode material, such as cobalt and nickel, in the long run. Recent research has focused on alternative energy storage systems to mitigate these concerns. Due to sodiums widespread availability and similar chemistry to lithium-ion batteries (LIBs), sodium-ion batteries (SIBs) are considered the most promising next-generation alternatives. Being competitive in the market today requires the development of cathode materials that are of high performance. Among the studied materials, the Na2Mn3O7 electrode displayed high capacity. In addition, the low price of sodium and manganese makes it even more attractive. In this work, we summarized the recent progress in studying and enhancing the Na2Mn3O7 cathode material.
cathode , high voltage , layered structure , low voltage , oxygen redox , rechargeable batteries , redox reaction , sodium-ion battery
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School of Engineering and Digital Sciences, Nazarbayev University, Kabanbay Batyr Ave., Astana, 53, Kazakhstan
Department of Chemical and Materials Engineering, School of Engineering and Digital Sciences, Nazarbayev University, Kabanbay Batyr Ave., Astana, 53, Kazakhstan
School of Engineering and Digital Sciences
Department of Chemical and Materials Engineering
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