Cathode Material with Nanorod Structure-An Application for Advanced High-Energy and Safe Lithium Batteries

Citations

WEB OF SCIENCE

162
Citations

SCOPUS

169

초록

We have developed a novel cathode material based on lithium-nickel-manganese-cobalt oxide, where the manganese concentration remains constant throughout the particle, while the nickel concentration decreases linearly and the cobalt concentration increases from the center to the outer surface of the particle. This full concentration gradient material with a fixed manganese composition (FCG-Mn-F) has an average composition of Li[Ni0.60Co0.15Mn0.25]O-2 and is composed of rod-shaped primary particles whose length reaches 2.5 mu m, growing in the radial direction. In cell tests, the FCG-Mn-F material delivered a high capacity of 206 mAh g(-1) with excellent capacity retention of 70.3% after 1000 cycles at 55 degrees C. This cathode material also exhibited outstanding rate capability, good low-temperature performance, and excellent safety, compared to a conventional cathode having the same composition (Li[Ni0.60Co0.15Mn0.25]O-2), where the concentration of the metals is constant across the particles.

키워드

coprecipitationnanorodconcentration gradientcathodelithium batteriesLI-ION BATTERIESELEVATED-TEMPERATUREPERFORMANCECELLSCHALLENGESMN
제목
Cathode Material with Nanorod Structure-An Application for Advanced High-Energy and Safe Lithium Batteries
저자
Noh, Hyung-JooChen, ZonghaiYoon, Chong SeungLu, JunAmine, KhalilSun, Yang Kook
DOI
10.1021/cm4006772
발행일
2013-05
유형
Article
저널명
Chemistry of Materials
25
10
페이지
2109 ~ 2115