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Lithium ion capacitor

JME 09] Jm Energy Corporation, Front runner of lithium ion capacitor, available at http //www.jmenergy.co.jp/en/, 2009. [Pg.87]

Qu, W. H., R Han, A. H. Lu, C. Xing, M. Qiao, and W. C. Li. 2014. Combination of a SnOj-C hybrid anode and a tubular mesoporous carbon cathode in a high energy density non-aqueous lithium ion capacitor Preparation and characterisation. Journal of Materials Chemistry A 2 6549-6557. [Pg.221]

Kaiyappan, K., S. Amaresh, and Y. S. Lee. 2014. LiMnBOj nanobeads as an innovative anode material for high power lithium ion capacitor applications. ACS Applied Materials Interfaces 6 11357-11367. [Pg.221]

Aravindan, V., J. Sundaramurthy, A. Jain et al. 2014. Unveiling TiNbjO, as an insertion anode for lithium ion capacitors with high energy and power density. ChemSusChem 7 1858-1863. [Pg.221]

Schroeder, M., S. Menne, J. Segalini et al. 2014. Considerations about the influence of the structural and electrochemical properties of carbonaceous materials on the behavior of lithium-ion capacitors. Journal of Power Sources 266 250-258. [Pg.223]

Smith, P. H., T. N. Tran, T. L. Jiang, and J. Chung. 2013. Lithium-ion capacitors Electrochemical performance and thermal behavior. ToMmoZo/PowerSoMme 243 982-992. [Pg.223]

Zhang, J., Z. Q. Shi, and C. Y. Wang. 2014. Effect of pre-lithiation degrees of mesocar-bon microbeads anode on the electrochemical performance of lithium-ion capacitors. Electrochimica Acta 125 22-28. [Pg.223]

A Lithium-Ion Capacitor (LlC) is a hybrid type of capacitor. Activated carbon is used as cathode. The anode of the LlC consists of carbon material which is pre-doped with lithium ion. This pre-doping process lowers the potential of the anode and allows a high output voltage and higher energy density. [Pg.94]

Among high-energy hybrid capacitors comprising non-aqueous redox materials, a hybrid system called lithium-ion capacitor (abbreviated as LIC) has particularly attracted the attention in these days [10, 31]. The LIC is a hybrid... [Pg.100]

Fig. 4.20 Performances of lithium-ion capacitor (LlC) and nanohybrid capacitor (NHC) in Ragone plot... Fig. 4.20 Performances of lithium-ion capacitor (LlC) and nanohybrid capacitor (NHC) in Ragone plot...
Hatozaki O (2008) Lithium ion capacitor electrode materials and cell performance. In Proceedings advanced capacitor world summit 2008, San Diego (2008)... [Pg.114]

To achieve higher energy density and higher voltage operation than aqueous ECs utilizing the bromide system, nonaqueous electrolyte systems have also been proposed such as an ionic liquid electrolyte-based EC system [47] and lithium-ion capacitor system [48]. [Pg.1783]

Electrochemical double-layer capacitors with activated carbon electrodes are commercially available from several companies. In the case of hybrid capacitors, lithium-ion capacitors which consist of the anode of a lithium-ion battery and a cathode of activated carbon are commercially available, as mentioned above. These super capacitors show great promise as next generation power sources for electric devices and electric vehicles. More innovation is needed before pseudo capacitors are suitable for commercialization. [Pg.2068]

Hybrid electricity storage device the LIC (Lithium Ion Capacitor)... [Pg.238]

R D is currently under way to develop hybrid components for electrical energy storage. These hybrid devices need to combine a high energy density, a high power density and a long lifetime. The most advanced components at preserrt are Lithium Ion Capacitors (LICs). The elementary stracture of an LIC is composed of... [Pg.238]


See other pages where Lithium ion capacitor is mentioned: [Pg.6]    [Pg.6]    [Pg.89]    [Pg.264]    [Pg.331]    [Pg.94]    [Pg.100]    [Pg.101]    [Pg.1015]    [Pg.1015]    [Pg.1015]    [Pg.2066]    [Pg.239]   
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