A staff of engineers and supplies scientists at LG Chem, Korea’s largest chemical firm, has developed a fabric that they declare may tremendously scale back the chance of thermal runaway and ensuing fires in batteries. Of their paper printed within the journal Nature Communications, the group describes how they developed the fabric and the way nicely it has labored throughout testing.
Over the previous a number of years, shoppers have witnessed or have heard about batteries in smartphones or automobiles catching on hearth. These fires, it has been discovered, consequence from thermal runaway, which is the place the anode and cathode inside a battery come too shut collectively, or worse, really contact.
The result’s a brief, which generates warmth, and outcomes quickly thereafter in a fireplace. On this new effort, the staff at LG has developed a skinny materials that, when positioned between the cathode and collector, prevents thermal runaway.
The concept behind the brand new materials is to cease the stream of electrical energy contained in the battery if it begins to overheat. Including digital sensors can be too cumbersome and will undergo warmth failure earlier than shutting down electrical stream.
A greater concept, the analysis staff suggests, is inserting a skinny piece of conductive materials between the anode and collector, by way of which present within the battery flows—one which routinely stops being conductive at a sure temperature.
The brand new materials is a metallic composite the staff at LG refers to because the Security Reinforcement Layer (SRL). They made a tiny sheet of the fabric only one micrometer thick and positioned it in a conventional battery after which examined its performance.
They discovered that past regular circumstances, the place temperatures ranged from 90°C to 130°C, the SRL served as a conductor, permitting present to stream usually. However as temperatures have been elevated, resistance elevated by 5,000 ohms per diploma C, leading to reductions in present. The staff additionally discovered that the reverse was true—when temperatures have been decreased, resistance decreased.
The researchers examined their improved battery in actual world circumstances as nicely. In a single such take a look at, they hammered a nail into it, a transfer that just about at all times makes batteries catch hearth, and located that with the SRL in place, both no hearth occurred, or a small hearth began which was routinely extinguished in a short time. The staff additionally tried squashing the battery with a heavy weight, one other surefire technique to get a battery to ignite, they usually obtained the identical outcomes.
The staff plans to proceed security testing the SRLs in numerous sizes and forms of batteries with the aim of promoting them to battery-makers within the close to future.
Extra data:
In Taek Tune et al, Thermal runaway prevention by way of scalable fabrication of security bolstered layer in sensible Li-ion batteries, Nature Communications (2024). DOI: 10.1038/s41467-024-52766-9
LG: www.lgchem.com/firm/informa … -9535?lang=en_GLOBAL
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