-(4)The Final Evolution of Lithium Sulfur Batteries

(4)The Final Evolution of Lithium Sulfur Batteries
author:enerbyte source:本站 click257 Release date: 2023-07-11 14:18:08
abstract:
In order to produce a binder free, independent cathode platform to improve battery performance, Kalras laboratory has developed a rapid sulfur deposition technology that can add sulfur to its substrate in just five seconds.This program melts sulfur into a nanofiber pad and operates in a mild pressur...

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In order to produce a binder free, independent cathode platform to improve battery performance, Kalras laboratory has developed a rapid sulfur deposition technology that can add sulfur to its substrate in just five seconds.

This program melts sulfur into a nanofiber pad and operates in a mild pressure environment of 140 degrees Celsius - without the need for time-consuming processing or the use of mixed toxic chemicals, while improving the effectiveness of the cathode after prolonged use. Our Li-S electrode supplies the correct structure, "Kalra said." Minimizing capacity decay during battery cycling is the most important obstacle to the commercialization of Li-S batteries

Our research shows that the sustained effective capacity of these electrodes is four times that of current lithium-ion batteries. Our novel and low-cost method can produce a sulfide cathode in just a few seconds, which eliminates significant manufacturing obstacles

The development of laptops, mobile phones, and electric vehicles all depends on the steady improvement of battery performance. Technology can only move forward with the permission of batteries, and lithium-ion batteries - currently considered the best in the market - are reaching the limit of improvement.

Since the record breaking flight of Zephyr-6s solar powered aircraft in 2008, many companies have invested in the development of Li-S batteries, hoping to increase the range of various electric vehicles, allowing mobile devices to last longer between charges, and even helping the entire energy network adapt to the intermittency of wind and solar energy. Kalras' work now provides a development path for this battery technology that can break a series of obstacles.

The team will continue to develop its Li-S cathode, with the goal of further improving cycle life, reducing the formation of Polysulfide and reducing costs.

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