Li1+xMn2xO4 is one of the most promising candidates as high performance cathode for lithium ion batteries. The stoichiometric compound is known to undergo a phase transition around room temperature, which has been widely studied and attributed either to Jahn\u2013Teller effect or to charge ordering. For the applications it is important to suppress this phase transition, which lowers the electrochemical performances of the material. DSC measurements, which have been largely used in the literature to study the occurrence of the transformation, can detect a phase transition accompanied by latent heat only for x < 0.04. This fact has been generally accepted as a proof that the transformation is suppressed by doping. However, by using a techniqu...
The link between room temperature (RT) cycling failure for Li1Mn2O4-type spinels and elevated temper...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
For ordered high-voltage spinel LiMn<sub>1.5</sub>Ni<sub>0.5</sub>O<sub>4</sub> (LMNO) with the <i>P...
A comparative study of Li1+xMn2 12xO4 (0 64x 640.08) by means of anelastic spectroscopy and differen...
Stoichiometric LiMn2O4 undergoes a structural phase transition around room temperature from cubic to...
We studied the charge order transition of LiMn2O4 by means of anelastic spectroscopy, measuring the ...
Understanding the kinetic implication of solid-solution vs. biphasic reaction pathways is critical f...
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compo...
The important electrode material $LiMn_2O_4$undergoes a first order structural phase transition near...
International audienceIn situ X-ray diffraction has been carried out to study the structural changes...
An increasing interest has developed around Li-Mn-O spinels due to their potential use as positive e...
For ordered high-voltage spinel LiMn1.5Ni0.5O4 (LMNO) with the P4321 symmetry, the two consecutive t...
Understanding the reaction pathway and kinetics of solid-state phase transformation is critical in d...
Stoichiometric and excess-lithium spinels, Li(LiMn2_)O4 (x = 0.0, 0.1, 0.2), were treated with dilut...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
The link between room temperature (RT) cycling failure for Li1Mn2O4-type spinels and elevated temper...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
For ordered high-voltage spinel LiMn<sub>1.5</sub>Ni<sub>0.5</sub>O<sub>4</sub> (LMNO) with the <i>P...
A comparative study of Li1+xMn2 12xO4 (0 64x 640.08) by means of anelastic spectroscopy and differen...
Stoichiometric LiMn2O4 undergoes a structural phase transition around room temperature from cubic to...
We studied the charge order transition of LiMn2O4 by means of anelastic spectroscopy, measuring the ...
Understanding the kinetic implication of solid-solution vs. biphasic reaction pathways is critical f...
The phase stability of Li1-xMnPO4 (0 <= x <= 1) is investigated in this study for different Li compo...
The important electrode material $LiMn_2O_4$undergoes a first order structural phase transition near...
International audienceIn situ X-ray diffraction has been carried out to study the structural changes...
An increasing interest has developed around Li-Mn-O spinels due to their potential use as positive e...
For ordered high-voltage spinel LiMn1.5Ni0.5O4 (LMNO) with the P4321 symmetry, the two consecutive t...
Understanding the reaction pathway and kinetics of solid-state phase transformation is critical in d...
Stoichiometric and excess-lithium spinels, Li(LiMn2_)O4 (x = 0.0, 0.1, 0.2), were treated with dilut...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
The link between room temperature (RT) cycling failure for Li1Mn2O4-type spinels and elevated temper...
Since the discovery of the reversible intercalation of lithium-ion materials associated with promisi...
For ordered high-voltage spinel LiMn<sub>1.5</sub>Ni<sub>0.5</sub>O<sub>4</sub> (LMNO) with the <i>P...