-LeydenJar from the Netherlands has developed a prototype of a bag type lithium battery that can increase storage capacity by 50%

LeydenJar from the Netherlands has developed a prototype of a bag type lithium battery that can increase storage capacity by 50%
author:enerbyte source:本站 click217 Release date: 2023-09-26 11:17:44
abstract:
Recently, LeydenJar, a subsidiary of the Dutch Energy Research Center (ECN), has produced a prototype of a bag type lithium battery using pure silicon anode technology. ECN stated that this technology can increase the storage capacity of rechargeable lithium batteries by 50%....

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Recently, LeydenJar, a subsidiary of the Dutch Energy Research Center (ECN), has produced a prototype of a bag type lithium battery using pure silicon anode technology. ECN stated that this technology can increase the storage capacity of rechargeable lithium batteries by 50%.

The nanostructured silicon anode has a porous structure of silicon columns that can achieve mechanical stability. The prototype battery achieved 100 charging and discharging cycles with a constant specific capacity of 1.000mAh/g. LeydenJar will continue to develop high-capacity lithium batteries with a specific capacity of 1.000-2.000mAh/g, which can achieve over 400 cycles.

LeydenJar stands out in using 100% silicon anodes, depositing directly on copper foil through a machine, resulting in excellent anode capacity. Its advantage is to use pure silicon instead of graphite anode, which can have a significant impact on the energy density of electrochemical lithium batteries.

The one-stop electrode production process being developed by LeydenJar is very similar to the production process of solar cells, originating from a roll to roll plasma chemical vapor deposition (PECVD) method of ECN. The changes to PECVD machines can be directly applied to the copper foil of anode collectors in the battery industry, controlling the morphology and porosity of nanostructured silicon columns. The biggest advantage of this technology is that it can be easily integrated into existing battery production lines, thereby reducing manufacturers' investment costs.

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