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New Development Of 12V Lead Acid Battery Technology

New development of 12V Lead Acid Battery technology

In recent years, the rapid development of mobile electronic device technology has been impressive, with more powerful processors, graphics CARDS, ultra-clear and even flexible screens. Unfortunately, the breakthrough in battery technology is slow, and we still have to endure a day or so of endurance. Although we have been focusing on the development of new material batteries, the most likely breakthrough in the near future is the 12V Lead Acid Battery technology. Now, let's look at the next generation of battery technology.

We basically use mobile devices now are all 12 v lead acid battery or lithium ion battery, 12V Lead Acid Battery is to use lithium metal or clutch gold as anode materials, nonaqueous electrolyte solution battery, relative to the nimh batteries have a greater capacity, better stability and can be repeatedly features, after years of development has quite mature, now almost all the consumption level of 12 v lead-acid batteries are made of the anode graphite. As for disadvantages, often through fire and explosion of news reports, and we already know, 12 v lead-acid batteries in the event of a short circuit, overheat case, very easy to bang out of control, and that's why we advocate the user use original battery, charger, data line, to prevent the 12V Lead Acid Battery short circuit.

The improvement of the 12V Lead Acid Battery in the form of diversification, but the direction is basically established in better security, charging speed, flexible form and performance, etc., take a look at several is expected to get breakthrough new technology.

1. Faster charging speed

The Nangyang university of technology research and development team has developed a new type of 12V Lead Acid Battery that, unlike other technologies, does not increase capacity but rather the charging time. In just two minutes, you can charge up to 70 percent of your battery and charge more than 10,000 times. The technology USES titanium dioxide rather than graphite as an anode material, while qualcomm also USES better control chips to achieve a more stable charging effect. The technology is characterized by low cost and well suited to mobile products and the electronics industry.

2. Non-flammable components

First, the safety of the 12V Lead Acid Battery is people want to solve the problem, the scientists found an organic solvent called PFPE more stable and can reduce the influence of crystallization of electrodes, and improve security and extend battery life. Although the technology will still take some time to test, it is expected soon that the non-flammable 12V Lead Acid Battery will go public.

3. Flexible 12V Lead Acid Battery

We are all looking forward to the emergence of fully flexible electronic devices, but even if the flexible screen has made a lot of progress, the battery is still a problem. LG recently showed off a fully crimped OLED screen with a flexible screen, circuit and battery, which is the closest we've seen to a flexible electronic device in science fiction.

In addition, a Chinese Taiwanese company has recently announced that it will begin production of flexible ceramics with 12V lead-acid batteries, which have extremely safe properties. While battery capacity may not be ideal, it is perfect for wearables and is expected to launch in the market this year.

4. Lithium sulfur and lithium air battery

Two other promising new types, 12V lead-acid batteries, are lithium-sulphur and lithium-air batteries. The characteristics of the former are not high volatile solvents, which greatly reduce the fire hazard, even if it is subjected to a large impact. The latter theoretically has a higher energy density and is suitable for products such as electric cars, but the challenge is to require a new type of electrode and electrolyte. At present, lithium-sulfur batteries have the advantages of large capacity, low cost and high security, which are likely to be the first mainstream.

5. Lithium anode

Scientists at Stanford university recently published a paper in which they found that the ultrathin carbon clusters allow lithium metal to be used as an anode, which is 10 times higher than the current graphite anode. For now, however, it will be only 96 per cent efficient, and it will take time to get into the mass-market consumer market.

6. Magnesium battery

Magnesium is also a metal element that is expected to be applied in the battery, with magnesium ions capable of carrying twice as much energy as lithium ions, with shorter charging times and stable performance. Magnesium batteries have been commercially available a few years ago, so they are expected to appear more quickly in the consumer sector than other new battery materials.


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