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Autor:
Jordi Cabana, Olaf J. Borkiewicz, Kamila M. Wiaderek, Jan L. Allen, T.R. Jow, Jacob G. Lapping
Publikováno v:
ACS Applied Materials & Interfaces. 12:20570-20578
In an effort to improve the cycle life and rate capability of olivine LiCoPO4, Cr, Fe, and Si were added to produce nominal Li1.025Co0.84Fe0.10Cr0.05Si0.01(PO4)1.025. This cathode material has an e...
Autor:
Wanjun Cao, J. S. Zheng, T.R. Jow, M. Hagen, Annadanesh Shellikeri, Jeffrey Read, S. R. Yturriaga, Jim P. Zheng
Publikováno v:
Journal of Power Sources. 392:285-295
Energy storage devices, which can combine the advantages of lithium-ion battery with that of electric double layer capacitor, are of prime interest. Recently, composite cathodes, which combine a battery material with capacitor material, have shown pr
Autor:
T.R. Jow, Cho Myunghun, Wen Zhu, Jan L. Allen, Dongqiang Liu, Chisu Kim, Karim Zaghib, Samuel A. Delp, Abdelbast Guerfi
Publikováno v:
Journal of Power Sources. 388:52-56
Cr, Fe and Si were added to improve the performance of olivine LiCoPO4 in cathodes for lithium-ion batteries. A substituted-LiCoPO4 in a half cell delivered a reversible capacity of 125 mAh/g at C/3 rate, with no capacity loss after over 100 cycles a
Autor:
Annadanesh Shellikeri, T.R. Jow, Daniel Lawrence Adams, M. Hagen, Wanjun Cao, Jim P. Zheng, Qiang Wu, Xujie Chen, S. R. Yturriaga, W. Brandt, Jeffrey Read
Publikováno v:
Journal of Power Sources. 379:212-218
In this work, we investigated the performance impact of LiNi0.5Co0.2Mn0.3O2 (NMC) as an additive to activated carbon (AC) electrodes within a high-performance Li-ion capacitor (LIC) fabricated with activated carbon positive electrodes (PEs) and hard
Autor:
Annadanesh Shellikeri, Daniel Lawrence Adams, Jeffrey Read, J. S. Zheng, Egwu E. Kalu, T.R. Jow, Jim P. Zheng, Venroy George Watson
Publikováno v:
Journal of The Electrochemical Society. 164:A3914-A3924
Autor:
T.R. Jow, Heeman Choe, Hyungyung Jo, Travis Thompson, Jeff Wolfenstine, Jeff Sakamoto, Jan L. Allen
Publikováno v:
Ceramics International. 40:13673-13677
LiCoPO 4 is a promising cathode material for use in high voltage Li-ion batteries. One of the problems with LiCoPO 4 is limited cycle life. One possible cause for the limited cycle life of LiCoPO 4 is mechanical degradation. As a consequence, the mec
Autor:
T. Du, Junsheng Zheng, Jeffrey Read, Annadanesh Shellikeri, T.R. Jow, Wanjun Cao, M. Hagen, Xujie Chen, Jin Yan
Publikováno v:
Journal of Power Sources. 433:126689
As the energy demand around the world grows so does the need for devices that can be tailored to fit a specific design's parameters. Often, this can lead to a device that falls between the two traditional groups of lithium-ion battery (LIB) and lithi
Publikováno v:
IEEE Transactions on Dielectrics and Electrical Insulation. 19:990-995
Although biaxially-oriented polypropylene thin film is a common dielectric for many high voltage pulsed power capacitor applications, the electrical conductivity under high field at elevated temperature is mostly unknown. Such knowledge is valuable n
Publikováno v:
Journal of Power Sources. 196:8656-8661
Fe-substituted LiCoPO4 exhibits greatly improved cycle life relative to LiCoPO4. Whereas, pure LiCoPO4 loses more than half of its discharge capacity at the 10th cycle, the Fe-substituted LiCoPO4 retains about 100% of its discharge capacity at the 10