The present study demonstrates that the properties of heat-treated electrolytic manganese dioxide (EMD) materials can be linked to the key properties of the precursor EMD used. The investigation holds particular significance for the informed selection of pre-cursor EMD materials that result in superior performing heat treated materials in Li/MnO2 batteries. Kinetic analysis is used to determine the precise heating regime necessary to, theoretically, completely remove structural water from six different EMD sam-ples. It was found that the oxidation of Mn(III) to Mn(IV) occurred to a greater extent for samples with initially high pyrolusite content and a low fraction of cation vacancies after heat treatment at low temperatures. This same Mn(I...
The effect of heating the electrolytic manganese dioxide (EMD) obtained from the Indian ore on the p...
In this study MnO2 preparation by chemical methods is investigated for possible applications in dry ...
The <FONT FACE="Symbol">e</font> phase of electrolytic manganese dioxide (EMD) is the structural for...
The primary capacity of heat treated manganese dioxide in Li/MnO 2 batteries is directly related to ...
The influence of various conditions on the heat treatment step in preparing manganese dioxide for pr...
The influence of various conditions on the heat treatment step in preparing manganese dioxide for pr...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
Kinetic analysis is used to determine the required isothermal heating time at various temperatures t...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
In this work the discharge mechanism for heat treated electrolytic manganese dioxide (HT-EMD) in a p...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
In this work, the influence of the structure, composition and morphology on the amount of mass lost ...
In this work the discharge mechanism for heat treated electrolytic manganese dioxide (HT-EMD) in a p...
The Electrochemical Society, find out moreThermal Lithiation of Manganese Dioxide: Effect of Low Lit...
Electrolytic manganese dioxide (EMD) is made in aqueous sulfuric acid and neutralized or ion exchang...
The effect of heating the electrolytic manganese dioxide (EMD) obtained from the Indian ore on the p...
In this study MnO2 preparation by chemical methods is investigated for possible applications in dry ...
The <FONT FACE="Symbol">e</font> phase of electrolytic manganese dioxide (EMD) is the structural for...
The primary capacity of heat treated manganese dioxide in Li/MnO 2 batteries is directly related to ...
The influence of various conditions on the heat treatment step in preparing manganese dioxide for pr...
The influence of various conditions on the heat treatment step in preparing manganese dioxide for pr...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
Kinetic analysis is used to determine the required isothermal heating time at various temperatures t...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
In this work the discharge mechanism for heat treated electrolytic manganese dioxide (HT-EMD) in a p...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
In this work, the influence of the structure, composition and morphology on the amount of mass lost ...
In this work the discharge mechanism for heat treated electrolytic manganese dioxide (HT-EMD) in a p...
The Electrochemical Society, find out moreThermal Lithiation of Manganese Dioxide: Effect of Low Lit...
Electrolytic manganese dioxide (EMD) is made in aqueous sulfuric acid and neutralized or ion exchang...
The effect of heating the electrolytic manganese dioxide (EMD) obtained from the Indian ore on the p...
In this study MnO2 preparation by chemical methods is investigated for possible applications in dry ...
The <FONT FACE="Symbol">e</font> phase of electrolytic manganese dioxide (EMD) is the structural for...