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Cited 86 time in webofscience Cited 91 time in scopus
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Composition-Tailored Synthesis of Gradient Transition Metal Precursor Particles for Lithium-Ion Battery Cathode Materials

Authors
Koenig, Gary M., Jr.Belharouak, IliasDeng, HaixaiSun, Yang KookAmine, Khalil
Issue Date
Apr-2011
Publisher
American Chemical Society
Keywords
gradient materials; cathode; tailored synthesis; transition metal oxide; lithium-ion battery
Citation
Chemistry of Materials, v.23, no.7, pp 1954 - 1963
Pages
10
Indexed
SCI
SCIE
SCOPUS
Journal Title
Chemistry of Materials
Volume
23
Number
7
Start Page
1954
End Page
1963
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/28160
DOI
10.1021/cm200058c
ISSN
0897-4756
1520-5002
Abstract
We report the tailored synthesis of particles with internal gradients in transition metal composition aided by the use of a general process model. Tailored synthesis of transition metal particles was achieved using a coprecipitation reaction with tunable control over the process conditions. Gradients in the internal composition of the pas-tides was monitored and confirmed experimentally by analysis of particles collected during regularly timed intervals. Particles collected from the reactor at the end of the process were used as the precursor material for the solid-state synthesis of Li-1.2-(Mn0.62Ni0.(38))(0.8)O-2, which was electrochemically evaluated as the active cathode material in a lithium battery. The Li-1.2(Mn0.62Ni0.38)(0.8)O-2 material was the first example of a structurally integrated multiphase material with a tailored internal gradient in relative transition metal composition as the active cathode material in a lithium-ion battery. We believe our general synthesis strategy may be applied to produce a variety of new cathode materials with tunable interior, surface, and overall relative transition metal compositions.
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