Elemental Composition Calculation for Lithium/Sodium Ion Battery

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The discussion centers on the elemental composition calculation for sodium/lithium-ion battery cathode materials, specifically Na2/3 Ni0.4 Mn0.4 Co0.2 O2. Participants note that while oxidation state calculations and phase diagram elimination are important, there is a lack of substantial evidence regarding the fundamental principles guiding composition choices. Current research continues to explore new cathode materials without clear foundational theories. Background theories mentioned include the Jahn-Teller Effect, Madelung Constant, and Ragone Plot, but no new findings have emerged. The conversation highlights a need for deeper understanding of the principles behind cathode material composition selection.
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What is the funda behind the Elemental Composition Calculation of Cathode Material for Sodium / Lithium Ion Battery (Na2/3 Ni0.4 Mn0.4 Co0.2 O2)/ AMO2? Apart from the Oxidation state calculation, Phase Diagram Elimination of mixtures and Random Compistion, is there any Principle behind it?
 
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I'm sorry you are not generating any responses at the moment. Is there any additional information you can share with us? Any new findings?
 
Hello Mr. Greg... As of now, there ain't any new finding on the Elemental Composition Calculation on the Battery Cathode Material Preparation. But still researchers are synthesising new cathode materials, there was no substantial evidence on what basics they chose there composition. Till now, my search had gave insite on few background theories of Jahn-Teller Effect, Madelung Constant, Ragone Plot... I would like to know, is there any prevailing fundamental on chossing the composition of the Battery Cathode Material.
 
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