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Journal ArticleDOI

Electrochemical and In Situ X‐Ray Diffraction Studies of Lithium Intercalation in Li x CoO2

Jan N. Reimers, +1 more
- 01 Aug 1992 - 
- Vol. 139, Iss: 8, pp 2091-2097
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TLDR
In this article, high precision voltage measurements and in situ x-ray diffraction indicate a sequence of three distinct phase transitions as varies from 1 to 0.4, two of which are situated slightly above and below and are caused by an order/disorder transition of the lithium ions.
Abstract
Electrochemical properties of are studied as Li is deintercalated from . High precision voltage measurements and in situ x‐ray diffraction indicate a sequence of three distinct phase transitions as varies from 1 to 0.4. Two of the transitions are situated slightly above and below and are caused by an order/disorder transition of the lithium ions. The order/disorder transition is studied as a function of temperature allowing the determination of an order/disorder phase diagram. In situ x‐ray diffraction measurements facilitate a direct observation of the effects of deintercalation on the host lattice crystal structure. The other phase transition is shown to be first order (coexisting phases are observed for ) involving a significant expansion of the parameter of the hexagonal unit cell. We report the variation of the lattice constants of with and show that the phase transition to the lithium ordered phase near is accompanied by a lattice distortion to a monoclinic unit cell with , , and . Finally we report an overall phase diagram for and .

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Journal ArticleDOI

Enhanced electrochemical and thermal stability of surface-modified LiCoO2 cathode by CeO2 coating

TL;DR: CeO2-coated LiCoO2 particles were successfully synthesized by a sol-gel coating of CeO2 on the surface of the LiO2 powder and subsequent heat treatment at 700°C for 5h as mentioned in this paper.
Journal ArticleDOI

Lithium-ion transfer on a LixCoO2 thin film electrode prepared by pulsed laser deposition—Effect of orientation-

TL;DR: LiCoO2 thin films with different orientations were fabricated by pulsed laser deposition, and Li-ion transfer at the interface between the electrolyte and a LiCo2 thin film electrode was investigated as discussed by the authors.
Journal ArticleDOI

Synthesis and electrochemical performance of Li(Ni0.8Co0.15Al0.05)0.8(Ni0.5Mn0.5)0.2O2 with core–shell structure as cathode material for Li-ion batteries

TL;DR: In this paper, LiNi 0.8 Co 0.15 Al 0.05 O 2 (LNCAO) was synthesized via a co-precipitation method.
Journal ArticleDOI

Raman Spectra of LiCo1−yNiyO2

TL;DR: In this article, the Raman spectra of LiCoO2 (LiCo1−yNiyO2) were studied by factor group analysis, and two Raman-active modes were assigned as A1g + Eg, and their atomic displacements were speculated.
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Vacancy Ordering in O3-Type Layered Metal Oxide Sodium-Ion Battery Cathodes

TL;DR: Toumar et al. as discussed by the authors proposed a method to combine the properties of nanomaterials and their properties in order to improve the performance of nanoelectric materials.
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