A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reaction. Two Mn crystallographic positions, Mn(1) and Mn(2), were determined by X-ray diffraction analysis. The [Mn(2)O6] octahedron had a lower symmetrical degree than that of [Mn(1)O6], which was attributed to the geometrical effects of the non-symmetrical environment around Mn(2). Li0.33MnO2 delivered a reversible discharge capacity not, vert, similar140 mA h g−1. In situ synchrotron diffraction clearly showed a reversible phase transition of Li0.33MnO2 during electrochemical process. The analysis of X-ray absorption near edge spectroscopy observed the conversion of Mn4+ to Mn3+ with Li+ intercalation into Li0.33MnO2, accompanied by the formatio...
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...
Structure of Li2MnO3 during charge and discharge is studied by x-ray diffraction, Raman spectroscopy...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...
X-ray diffraction studies (XRD) were carried out for the investigation of the synthesis and electroc...
Increasingly there is demand for clean energy sources and suitable batteries to store this energy. M...
Increasingly there is demand for clean energy sources and suitable batteries to store this energy. M...
The effect of lithium concentration on LixMnO2 (x ≤ 0.3) materials prepared by co-precipitation/heat...
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 effect of lithium concentration on Li xMnO 2 (x ≤ 0.3) materials prepared by co-precipitationhea...
Afin de mieux comprendre les évolutions structurales mises en évidence dans les oxydes lamellaires d...
Afin de mieux comprendre les évolutions structurales mises en évidence dans les oxydes lamellaires d...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
Lithium-rich manganese-based cathode materials has been attracted enormous interests as one of the m...
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...
Structure of Li2MnO3 during charge and discharge is studied by x-ray diffraction, Raman spectroscopy...
A 3 V cathode material for lithium ion batteries, Li0.33MnO2, was synthesized by solid-state reactio...
X-ray diffraction studies (XRD) were carried out for the investigation of the synthesis and electroc...
Increasingly there is demand for clean energy sources and suitable batteries to store this energy. M...
Increasingly there is demand for clean energy sources and suitable batteries to store this energy. M...
The effect of lithium concentration on LixMnO2 (x ≤ 0.3) materials prepared by co-precipitation/heat...
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 effect of lithium concentration on Li xMnO 2 (x ≤ 0.3) materials prepared by co-precipitationhea...
Afin de mieux comprendre les évolutions structurales mises en évidence dans les oxydes lamellaires d...
Afin de mieux comprendre les évolutions structurales mises en évidence dans les oxydes lamellaires d...
The preparation of LixMnO2 materials via a novel reduction and lithiation method is reported. The ef...
Lithium-rich manganese-based cathode materials has been attracted enormous interests as one of the m...
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...
Structure of Li2MnO3 during charge and discharge is studied by x-ray diffraction, Raman spectroscopy...