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Recently, Toshiba exhibited a lithium battery
with purple tungsten oxide as an anode material at the 2018 Yokohama Human-Vehicle Technology Exhibition, which can realize ultra-fast charging.
This battery has obvious advantages in a wide range of applications, from automobiles, micro/mild hybrid trains, elevators, uninterruptible power supply UPS to high-current power supplies
.
It is understood that tungsten oxide powder developed by Toshiba Materials is used as an electrode material for new battery equipment, because tungsten oxide helps electronic conductivity and lithium ion diffusion to achieve ultra-fast charging and discharging
.
This material can build battery devices with high power density, enabling smaller, lighter devices
.
As a pioneer in the field of lithium-ion battery technology, new battery materials are likely to officially enter commercial use, which may further expand the demand market for tungsten oxide
.
Purple tungsten oxide is a kind of tungsten oxide, its appearance is purple fine crushed crystalline powder, is China's tungsten oxide products developed in recent years, its phase composition is W18O49, because it has the largest mesoporous volume, the smallest microporous volume, the narrowest pore size distribution, the smallest fractional dimension, the largest average pore size and specific surface area, is the preparation of ultrafine tungsten powder or nano tungsten powder, photocatalytic materials, petroleum catalysts, microelectronic integrated circuit boards of the preferred material
.
The battery is characterized by the fact that both power density and energy density can be increased to 2 to 3 times
that of double-layer capacitors.
Energy density has also been improved
compared to lithium-ion capacitors designed to increase the energy density of EDLCs.
In the field of capacitors, Li-ion secondary batteries are not suitable for high-output applications due to insufficient output power and difficult development, and the development of this battery will make it possible
to use batteries in high-output power applications.
As a technology leader in the lithium battery industry, Toshiba Corporation exhibited its newly developed sample battery at the exhibition, and hoped to supply the new results as battery materials to other battery manufacturers, and the commercial potential is very large
.
If promoted, tungsten materials will no longer be just a bystander
in the field of lithium battery manufacturing.
Recently, Toshiba exhibited a lithium battery
with purple tungsten oxide as an anode material at the 2018 Yokohama Human-Vehicle Technology Exhibition, which can realize ultra-fast charging.
This battery has obvious advantages in a wide range of applications, from automobiles, micro/mild hybrid trains, elevators, uninterruptible power supply UPS to high-current power supplies
.
It is understood that tungsten oxide powder developed by Toshiba Materials is used as an electrode material for new battery equipment, because tungsten oxide helps electronic conductivity and lithium ion diffusion to achieve ultra-fast charging and discharging
.
This material can build battery devices with high power density, enabling smaller, lighter devices
.
As a pioneer in the field of lithium-ion battery technology, new battery materials are likely to officially enter commercial use, which may further expand the demand market for tungsten oxide
.
Purple tungsten oxide is a kind of tungsten oxide, its appearance is purple fine crushed crystalline powder, is China's tungsten oxide products developed in recent years, its phase composition is W18O49, because it has the largest mesoporous volume, the smallest microporous volume, the narrowest pore size distribution, the smallest fractional dimension, the largest average pore size and specific surface area, is the preparation of ultrafine tungsten powder or nano tungsten powder, photocatalytic materials, petroleum catalysts, microelectronic integrated circuit boards of the preferred material
.
The battery is characterized by the fact that both power density and energy density can be increased to 2 to 3 times
that of double-layer capacitors.
Energy density has also been improved
compared to lithium-ion capacitors designed to increase the energy density of EDLCs.
In the field of capacitors, Li-ion secondary batteries are not suitable for high-output applications due to insufficient output power and difficult development, and the development of this battery will make it possible
to use batteries in high-output power applications.
As a technology leader in the lithium battery industry, Toshiba Corporation exhibited its newly developed sample battery at the exhibition, and hoped to supply the new results as battery materials to other battery manufacturers, and the commercial potential is very large
.
If promoted, tungsten materials will no longer be just a bystander
in the field of lithium battery manufacturing.