The effect of lithium concentration on LixMnO2 (x ≤ 0.3) materials prepared by co-precipitation/heating is investigated. Lithium concentration determines the phase formed, with three different phases identified in the concentration range. Low levels of lithiation (x = 0.08) leads to the formation of a γ/β type MnO2 material. As the lithium concentration is increased to x = 0.15, a lithiated γ−MnO2 like phase is formed. Finally, at x = 0.28 tunnel structured monoclinic MnO2 is obtained. Increasing the concentration of lithium inhibits the formation of the undesired inactive Mn2O3 phase, which is formed upon heat-treatment of MnO2. At a 5 mA/g charge/discharge rate the monoclinic Li0.28MnO2 material gave the best performance, while at 30 mA/g...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...
The effect of lithium concentration on Li xMnO 2 (x ≤ 0.3) materials prepared by co-precipitationhea...
The Electrochemical Society, find out moreThermal Lithiation of Manganese Dioxide: Effect of Low Lit...
The Electrochemical Society, find out moreThermal Lithiation of Manganese Dioxide: Effect of Low Lit...
The Electrochemical Society, find out more Thermal Lithiation of Manganese Dioxide: Effect ...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
X-ray diffraction studies (XRD) were carried out for the investigation of the synthesis and electroc...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...
The effect of lithium concentration on Li xMnO 2 (x ≤ 0.3) materials prepared by co-precipitationhea...
The Electrochemical Society, find out moreThermal Lithiation of Manganese Dioxide: Effect of Low Lit...
The Electrochemical Society, find out moreThermal Lithiation of Manganese Dioxide: Effect of Low Lit...
The Electrochemical Society, find out more Thermal Lithiation of Manganese Dioxide: Effect ...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
X-ray diffraction studies (XRD) were carried out for the investigation of the synthesis and electroc...
The electrochemical performance of heat treated manganese dioxide in lithium batteries is for the fi...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
Heat treated manganese dioxide is partially lithiated using butyl-lithium to determine the changes i...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...