Nippon Chemi-con Corporation has developed Nano-hybrid capacitor using a nano-sized Li
4Ti
5O
12/carbon nanofiber (CNF) composite as a negative electrode material.
Characteristic of the Nano-hybrid capacitor is as follows:
- Energy density of ca. 30 Wh L-1, which is almost three times as higher than conventional EDLC
- Power density comparable with conventional EDLC
- High safety due to no Li dendrite
- High performance at low temperature which is ca. 80 % of capacitance retention at -30 oC
The Characteristics meet demands for automotive applications such as relatively high energy density, high safety, and rapid charging/discharging at low temperatures.
Some of the high performances are attributed to the unique structure of the Li
4Ti
5O
12/CNF composite prepared by our nano-hybrid technique. The Li
4Ti
5O
12 particles in the composite have diameters ranging from ca. 5 to 20 nm and are grafted onto the outer and inner surfaces of the CNFs.
This nano-structure can overcome inherent problems of poor Li
+ diffusivity and low electric conductivity in Li
4Ti
5O
12 material. Moreover, electrochemical reaction at low temperature can be also facilitated due to the reduced activation energy in electrochemical reaction by nano-sizing of Li
4Ti
5O
12.
Furthermore, we have prepared Li
4Ti
5O
12 based composite using single walled carbon nanotube (SWCNT) instead of CNF. The Li
4Ti
5O
12/SWCNT composite showed even higher rate capability than the Li4Ti5O12/CNF composite. This remarkably high rate capability is attributed to further down-sizing of Li
4Ti
5O
12 that enhance Li
+ diffusivity and mesopore network of the SWCNT that allows an entanglement effect of the Li
4Ti
5O
12 and SWCNT.
Our nano-hybrid technique which uniformly complex nano-sized Li
4Ti
5O
12 and nanocarbon make it possible to create various metallic oxide based composites. Therefore, it enables to apply many other electrochemical energy storage devices. We will also focus on development of lithium ion battery (LIB) materials such as SnO
2, LiFePO
4 and so on. The LIB materials prepared by our nano-hybrid technique can be expected to offer additional value such as high rate capability and cycle ability as well as Li
4Ti
5O
12/nanocarbon composite.
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