The Next Generation of Battery Technology to Survive 20 Years

Needs a battery that can last a very long time for this moment multimedia device is needed to improve device performance, and it seems it will be fulfilled in the near future. The company in Japan are developing a type of Lithium battery that can last up to 20 years old, although used for any extreme situation. Research and development company named Eamex this claim would create a battery with 10 endurance charge thousand times, which can survive very long. The researchers in this Eamex been successfully using several techniques such as the stabilization process of the battery electrode.
This puts pressure on the lead in the battery decreases, thus making a good bond with the particles to slow down the damage. The process of making Lithium battery types will be preserved, even up to 20 years old. The researchers promises they make a battery capable of producing lasting battery lifetimes up to 10 times longer than the latest battery. The next generation of battery technology to survive 20 years but unfortunately technology is designed for battery Eamex who perform heavy tasks, such as those used in electric cars. But it is not impossible can be used for things like smaller phones, laptops and MP3 players.
Next Generation Technology of Sheet-Shaped Battery

Battery with a large size, heavy, and thick in everyday life is very useful to give energy to a variety of electronic items seem to be immediately trashed. Scientists in England create the next generation technology of thin battery that was created is shaped like a plastic sheet that can store and release electrical energy. Next generation technology of this battery will change the way we use cell phones, driving a car, or maybe it could also change the way we dress.
Next generation technology from a variety of gadgets that we use may be as thin as a credit card. Such further technology also brings us into the computer age with flexible screens that can be folded, rolled, and easy to carry like a sheet of thin paper. It is not possible anyway, the plastic material of energy storage can be used to make electric clothing that can recharge gadgets energy needs for the traveling person.
"Actually, the developed material is not material for the battery, but a super capacitor materials," said Dr Emile Greenhalgh from Imperial College London. Greenhalgh developed prototype square with five-inch size and stacked to resemble a very thin wafers. It takes five seconds while recharging the energy required to light the LED for 20 minutes.
Greenhalgh was then working with the Volvo car company, to use the batteries in electric cars Volvo. "We think the car in the future could fill the energy from the roof of the house or even the door, thanks to this thin batteries," said Greenhalgh. Applications of next-generation technology of these batteries do not just stop there. According to Greenhalgh, findings allow people to more easily travel anywhere, because no longer need to carry large, heavy and thick.
"It could be a laptop to get energy from the casing itself so that could be more durable. No one had ever created such material. Within the next decade, conventional battery technology will be replaced with the next generation of batteries like this," said Greenhalgh.
Next Generation Technology of Nano Fibers for Clothing Energy

Scientists in California promise, clothing energy power to recharge various gadgets will soon materialize. The team from the University of California, Berkeley, developed a nano fiber material energy storage can be converted into clothing and textile materials. Next-generation technology of nano fibers can change the energy of mechanical pressure into electrical current. In the near future, this material will soon be realized in the form of ready-made clothing to recharge the gadgets.
The next technology of nano fiber has a property piezoelectric which allows transformed into electrical energy through mechanical pressure, for example when the fabric stretched or squeezed. "This technology allows the realization of the end 'smart clothing' that could provide power for electronic goods through normal body movements," said Liwei Lin of the University of California, Berkeley, who developed this material. Because the next generation technology of nano fibers made of polyvinylidene fluoride organic, so this material is very flexible and relatively easy and inexpensive to produce.
