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Publications by Kazutaka HORIKO
Li Content Dependence of Crystal Structure and Electronic Structure for Chemical Delithiation of LixMn2-yMyO4 (M = Mg, Al, Cr, Mn, Co, Zn, Ni) as a Cathode Active Material for Li Secondary Battery
Electrochemistry
Electrochemistry
Thermodynamic Stability and Crystal Structure Dependence of Li Content for LixMn2-yMyO4 (M = Mg, Al, Cr, Mn) as a Cathode Active Material for Li Secondary Battery
Electrochemistry
Electrochemistry
Related publications
Dependence of Properties, Crystal Structure and Electrode Characteristics on Li Content for LixCo1/3Ni1/3Mn1/3O2+.DELTA. As a Cathode Active Material for Li Secondary Battery
Electrochemistry
Electrochemistry
Electronic States of LiyMn2−xMxO4 (M = Mn, Mg, Ni, Co) as a Cathode Active Material for Li Secondary Battery by First-Principles Calculation Using DV-Xα Method
Electrochemistry
Electrochemistry
Dependence of Thermodynamic Stability, Crystal and Electronic Structures and Battery Characteristic on Synthetic Condition and Li Content for LixMn0.5Ni0.5O2 as a Cathode Active Material of Li-Ion Battery
Electrochemistry
Electrochemistry
Relation Between Crystal Structure, Electronic Structures and Electrode Performances of LiMn2-xZnxO4 (X=0.05, 0.10) as a Cathode Active Material for Li Secondary Battery
Electrochemistry
Electrochemistry
Nanostructured LiMPO4(M = Fe, Mn, Co, Ni) – Carbon Composites as Cathode Materials for Li-Ion Battery
EPJ Web of Conferences
Astronomy
Physics
Effect of Li Content on Electronic Structure by First-Principle Calculation for Li1+xNi0.5Mn0.5O2 Cathode Active Material of Lithium-Ion Battery
Electrochemistry
Electrochemistry
Electrochemistry and Structure of the Cobalt-Free Li1+xMO2 (M = Li, Ni, Mn, Fe) Composite Cathode
Physical Chemistry Chemical Physics
Theoretical Chemistry
Astronomy
Physics
Physical
Dependence of Li Content on Crystal Structure During the Charge-Discharge Process of LiMn1.5Ni0.5O4 as a CathodeMaterial for 5 v Class Lithium Secondary Battery
Electrochemistry
Electrochemistry